US20190142747A1 - Pharmaceutical Composition Comprising a GLP-1-Agonist and Methionine - Google Patents

Pharmaceutical Composition Comprising a GLP-1-Agonist and Methionine Download PDF

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US20190142747A1
US20190142747A1 US16/013,617 US201916013617A US2019142747A1 US 20190142747 A1 US20190142747 A1 US 20190142747A1 US 201916013617 A US201916013617 A US 201916013617A US 2019142747 A1 US2019142747 A1 US 2019142747A1
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composition
exendin
methionine
glp
approximately
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US16/013,617
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Anette Brunner-Schwarz
Werner Mueller
Verena Siefke-Henzler
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Sanofi Aventis Deutschland GmbH
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Sanofi Aventis Deutschland GmbH
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Priority claimed from DE102010011919A external-priority patent/DE102010011919A1/en
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K9/00Medicinal preparations characterised by special physical form
    • A61K9/08Solutions
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K38/00Medicinal preparations containing peptides
    • A61K38/16Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof
    • A61K38/17Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans
    • A61K38/22Hormones
    • A61K38/26Glucagons
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K38/00Medicinal preparations containing peptides
    • A61K38/16Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof
    • A61K38/17Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof from animals; from humans
    • A61K38/22Hormones
    • A61K38/2278Vasoactive intestinal peptide [VIP]; Related peptides (e.g. Exendin)
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/06Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
    • A61K47/08Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing oxygen, e.g. ethers, acetals, ketones, quinones, aldehydes, peroxides
    • A61K47/10Alcohols; Phenols; Salts thereof, e.g. glycerol; Polyethylene glycols [PEG]; Poloxamers; PEG/POE alkyl ethers
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/06Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
    • A61K47/16Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing nitrogen, e.g. nitro-, nitroso-, azo-compounds, nitriles, cyanates
    • A61K47/18Amines; Amides; Ureas; Quaternary ammonium compounds; Amino acids; Oligopeptides having up to five amino acids
    • A61K47/183Amino acids, e.g. glycine, EDTA or aspartame
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/06Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
    • A61K47/20Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing sulfur, e.g. dimethyl sulfoxide [DMSO], docusate, sodium lauryl sulfate or aminosulfonic acids
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K9/00Medicinal preparations characterised by special physical form
    • A61K9/0012Galenical forms characterised by the site of application
    • A61K9/0019Injectable compositions; Intramuscular, intravenous, arterial, subcutaneous administration; Compositions to be administered through the skin in an invasive manner
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P3/00Drugs for disorders of the metabolism
    • A61P3/08Drugs for disorders of the metabolism for glucose homeostasis
    • A61P3/10Drugs for disorders of the metabolism for glucose homeostasis for hyperglycaemia, e.g. antidiabetics

Definitions

  • the present application relates to a liquid composition
  • a liquid composition comprising a GLP-1 agonist or/and a pharmacologically tolerable salt thereof and, optionally, at least one pharmaceutically acceptable excipient, wherein the composition comprises methionine.
  • the present application further relates to the composition according to the present invention for treating diabetes mellitus.
  • the present application further relates to the use of a composition according to the present invention in the manufacture of a pharmaceutical for treating diabetes mellitus.
  • the present application further relates to a method for manufacturing a composition according to the present invention, comprising formulating a GLP-1 agonist or/and a pharmacologically tolerable salt thereof with methionine and, optionally, at least one pharmaceutically acceptable excipient.
  • the present application further relates to a method for treating a patient with a composition according to the present invention, comprising administering the composition to the patient.
  • Customary compositions of GLP-1 compounds comprise a tonicity modifier, a buffer for adjusting the pH, and a preservative.
  • WO2001/04156 discloses a liquid composition of Ser 39 -exendin-4(1-39)-NH 2 ), sodium dihydrogenphosphate, and preservatives.
  • WO 2004/035623 discloses a liquid composition comprising a stabilized exendin, 50 mM histidine, 100 to 200 mM sucrose, mannitol or other acceptable sugar, 20 mM methionine, 20 mM asparagine-glutamine or Asp, at a pH of 5.3. Stabilization is effected by certain modifications of the amino acid building blocks of exendin-4(1-39), for example, at positions Gln13, Met14, Trp25, or Asn28.
  • WO 2005/021022 discloses a liquid composition comprising acetylated GLP-1, phenol as a preservative, mannitol and glycerol as a tonicity modifier, and, optionally, a buffer.
  • WO 2006/051110 discloses liquid compositions comprising liraglutide (GLP-1 compound), poloxamer 188 or poloxamer 407 (Pluronic F-127) as a surface-active substance, phenol, propylene glycol, and sodium phosphate (pH 7.7). Addition of poloxamer-188 or poloxamer-407 led to stabilization.
  • Exendins are a group of peptides which can lower blood glucose concentrations. Exendins have a certain similarity to the sequence of GLP-1(7-36) (53%, Goke et al. J. Biol Chem 268, 19650-55). Exendin-3 and exendin-4 stimulate an increase in cellular cAMP production in the acinar cells of the guinea pig pancreas by interacting with exendin receptors (Raufman, 1996, Reg. Peptides 61:1-18). Exendin-3, in contrast to exendin-4, effects an increase in the release of amylase in the acinar cells of the pancreas. Exendins act as GLP-1 agonists.
  • GLP-1 Glucagon-like peptide 1
  • GLP-1 is an endocrine hormone which enhances the insulin response following oral intake of glucose or fat.
  • GLP-1 lowers glucagon concentrations, slows gastric emptying, stimulates (pro)insulin synthesis, enhances sensitivity to insulin, and stimulates insulin-independent glycogen synthesis (Hoist (1999), Curr. Med. Chem 6:1005, Nauck et al. (1997) Exp Clin Endocrinol Diabetes 105: 187, Lopez-Delgado et al. (1998) Endocrinology 139:2811).
  • Human GLP-1 has 37 amino acid residues (Heinrich et al., Endocrinol. 115:2176 (1984), Uttenthal et al., J Clin Endocrinol Metabol (1985) 61:472). Active fragments of GLP-1 include GLP-1 (7-36) and GLP-1(7-37).
  • Exendin-3, exendin-4 and exendin agonists have been proposed for treating diabetes mellitus and preventing hyperglycemia, by reducing gastric motility and gastric emptying (U.S. Pat. No. 5,424,286 and WO98/05351).
  • Exendin analogs can be characterized by amino acid substitutions and/or C-terminal truncation of the native exendin-4 sequence. Such exendin analogs are described in WO 99/07404, WO 99/25727, and WO 99/25728.
  • AVE0010 Solid-phase synthesis of AVE0010 is described in WO 01/04156 A1.
  • AVE0010 has the sequence: desPro 36 exendin-4(1-39)-Lys 6 -NH 2 . This substance is published as SEQ ID NO:93 in WO 01/04156:
  • Exendin-4 (39 AS) has the sequence:
  • Exendin-3 has the sequence (J. Bio. Chem., 267, 1992, 7402-7405):
  • GLP-1 has the sequence:
  • methionine is able to increase the storage stability of a composition comprising a GLP-1 agonist such as AVE0010. Methionine does not affect the physical integrity of these compositions.
  • methionine is able to improve the storage stability of a composition according to the present invention by reducing the proportion of oxidation products of methionine, of proteins of high molecular weight, and of total impurities. These parameters are, individually or together, a measure of the chemical integrity of the compositions.
  • compositions according to the present invention is increased by the addition of methionine.
  • the stability of pharmaceutically active polypeptides can be impaired by various mechanisms. These include pH, temperature, light, and the effects of certain constituents.
  • a range of customary constituents of formulations of GLP-1 agonists can be disadvantageous for the chemical or/and physical integrity and the storage stability of formulations which comprise a GLP-1 agonist.
  • These are, for example, polysorbate 20, polysorbate 80, poloxamer 188, benzalkonium chloride, and lysine.
  • the compositions according to the present invention are therefore preferably free of these constituents.
  • the present invention accordingly provides for a liquid composition
  • a liquid composition comprising a GLP-1 agonist or/and a pharmacologically tolerable salt thereof and, optionally, at least one pharmaceutically acceptable excipient, wherein the composition comprises methionine.
  • composition according to the present invention preferably comprises methionine in an amount ranging from 0.5 mg/mL to 20 mg/mL, more preferably in an amount ranging from 1 mg/mL to 5 mg/mL.
  • Methionine in the D-form can be used.
  • methionine in the L-form can be used.
  • mixtures of the D-form and the L-form in any desired proportions can be used.
  • the composition according to the present invention is free of surfactants, such as polyols and partial and fatty acid esters and ethers of polyhydric alcohols such as those of glycerol and sorbitol.
  • the compositions according to the present invention are more particularly free of partial and fatty acid esters and ethers of glycerol and sorbitol selected from the group consisting of Span®, Tween®, Myrj®, Brij®, Cremophor®.
  • the compositions according to the present invention are more particularly free of polyols selected from the group consisting of polypropylene glycols, polyethylene glycols, poloxamers, Pluronics, Tetronics. More particularly, the composition according to the present invention is free of at least one substance selected from the group consisting of polysorbate, polysorbate and poloxamer.
  • composition according to the present invention is substantially free, preferably free, of polysorbate, such as, for example, polysorbate 20.
  • composition according to the present invention is substantially free, preferably free, of polysorbate 80.
  • composition according to the present invention is substantially free, preferably free, of poloxamer, such as, for example, poloxamer 188.
  • composition according to the present invention is substantially free, preferably free, of benzalkonium chloride.
  • composition according to the present invention is substantially free, preferably free, of histidine.
  • composition according to the present invention is substantially free, preferably free, of EDTA, more particularly sodium EDTA.
  • composition according to the present invention can comprise one or more substances which are customarily used to buffer the pH (buffer substances).
  • buffer substances are acetate, citrate, and phosphate, for example, in amounts of up to 5 mg/ml, up to 4 mg/ml, up to 3 mg/ml, or up to 2 mg/ml.
  • composition according to the present invention can, likewise, be substantially free of buffer substances. Likewise, the composition according to the present invention can be free of buffer substances.
  • composition according to the present invention can be substantially free of citrate, acetate, and/or phosphate, or else free of citrate, acetate, and/or phosphate.
  • composition according to the present invention is substantially free, preferably free, of histidine and sodium EDTA.
  • the pharmaceutical composition of the present invention can have an acidic or physiological pH.
  • An acidic pH range is preferably in the range of pH 1-6.8, pH 3.5-6.8, or pH 3.5-5.
  • a physiological pH is preferably in the range of pH 2.5-8.5, more preferably pH 4.0 to 8.5, even more preferably pH 4.0 to 6.0.
  • Especially preferred is a pH of approximately 4.5.
  • physiologically safe dilute acids typically HCl
  • alkalis typically NaOH
  • composition according to the present invention can comprise a suitable preservative.
  • suitable preservatives are, for example, phenol, m-cresol, benzyl alcohol, and/or p-hydroxybenzoate esters, m-Cresol is preferred.
  • composition according to the present invention can comprise suitable tonicity modifiers.
  • suitable tonicity modifiers are, for example, glycerol, dextrose, lactose, sorbitol, mannitol, glucose, NaCl, calcium or magnesium compounds such as CaCl 2 etc.
  • concentrations of glycerol, dextrose, lactose, sorbitol, mannitol, and glucose are customarily in the range of 100-250 mM, NaCl in a concentration of up to 150 mM. Glycerol is preferred.
  • composition is intended for parenteral administration.
  • the composition according to the present invention is preferably an injectable composition, more preferably for subcutaneous injection. More particularly, the composition of the present invention is suitable for injection once a day.
  • the formulation according to the present invention has, after storage for 1 month, 2 months, 4 months, or 6 months at a temperature of +5° C. or 25° C., an activity of at least 80%, at least 90%, at least 95%, or at least 98% of the activity at the start of storage.
  • “activity” means the activity of the GLP-1 agonist which is used in the formulation according to the present invention.
  • Methods for determining the activity of a GLP-1 agonist are known to a person skilled in the art.
  • the composition according to the present invention has a biological activity of GLP-1 agonist of at least 89% or at least 90% after storage for 6 months at 25° C.
  • the composition according to the present invention preferably has a biological activity of GLP-1 agonist of at least 45% or at least 50% after storage for 6 months at 40° C.
  • the formulation according to the present invention exhibits chemical integrity after storage for 1 month, 2 months, 3 months, 4 months, or 6 months.
  • Chemical integrity means, more particularly, that after storage at a temperature of +5° C., 25° C., or 40° C. the formulation comprises at least 80%, at least 90%, at least 95%, or at least 98% of the active substance, compared with the start of storage, in a substantially chemically unchanged form.
  • Chemical integrity can mean the chemical integrity of the GLP-1 agonist.
  • GLP-1 agonists may comprise a methionine residue (e.g. position 14 in AVE0010).
  • Chemical integrity of the GLP-1 agonist means, more particularly, that oxidation of the methionine residue is prevented.
  • chemical integrity means, more particularly, that the proportion of oxidized methionine with respect to the entire methionine content of the GLP-1 agonist after storage for 1, 2, 3, 4, or 6 months is below 0.7%, below 0.6%, below 0.5%, below 0.4%, or below 0.3%.
  • Storage can be effected, for example, at 5° C., 25° C., or 40° C. Storage for 6 months at 5° C.
  • oxidized methionine is below 0.3%.
  • storage for 6 months at 25° C. is preferred, in which case the proportion of oxidized methionine is below 0.7%, below 0.6%, below 0.5%, below 0.4%, or below 0.3%.
  • storage for 6 months at 40° C. is preferred, in which case the proportion of oxidized methionine is below 1%, below 0.7%, below 0.6%, below 0.5%, below 0.4%, or below 0.3%.
  • Chemical integrity can mean a very low proportion of total impurities in the formulation according to the present invention.
  • the proportion of total impurities with respect to the entire mass of the GLP-1 agonist present in the formulation after storage for 6 months at 40° C. is more particularly below 50%, below 10% after storage at 25° C., or/and below 1.8% after storage at 5° C.
  • Chemical integrity can mean a very low proportion of proteins of high molecular weight in the formulation according to the present invention.
  • the proportion of proteins of high molecular weight with respect to the entire mass of the GLP-1 agonist present in the formulation after storage for 6 months at 40° C. is more particularly below 5%, below 4%, below 3%, or below 2%.
  • the proportion of proteins of high molecular weight with respect to the entire mass of the GLP-1 agonist present in the formulation is more particularly below 0.8%, below 0.7%, or below 0.6%.
  • the formulation according to the present invention exhibits physical integrity after storage for 1 month, 2 months, 4 months, or 6 months.
  • Physical integrity means, more particularly, that after storage at a temperature of +5° C., 25° C., or 40° C. the formulation comprises at least 80%, at least 90%, at least 95%, or at least 98% of the active substance, compared with the start of storage, in a substantially physically unchanged form.
  • Physical integrity can mean the integrity of the GLP-1 agonist. Physical integrity means, more particularly, that the GLP-1 agonist does not form aggregates, such as, for example, fibrils.
  • the GLP-1 agonist is preferably selected from the group consisting of exendin-3 and analogs and derivates thereof, exendin-4 and analogs and derivates thereof, and in which case the GLP-1 agonist is more preferably selected from the group consisting of AVE0010 and exendin-4.
  • Exendin-3, analogs and derivates of exendin-3, exendin-4, and analogs and derivates of exendin-4 can be found in WO 01/04156, WO 98/30231, U.S. Pat. No. 5,424,286, EP application 99 610043.4, and WO 2004/005342. These documents are incorporated herein by reference. The exendin-3, exendin-4, and analogs and derivates thereof described in these documents can be synthesized by means of the methods described therein, after which modifications are optionally carried out.
  • sequences of AVE0010 (SEQ ID NO:1), exendin-4 (SEQ ID NO:2), and exendin-3 (SEQ ID NO:3) show a high degree of similarity.
  • the sequences of AVE0010 and exendin-4 are identical at positions 1-37.
  • Sequence 1-39 from exendin-4 is at 37 of the 39 positions (94%) identical to the exendin-3 sequence at positions 48-86.
  • a person skilled in the art can readily convert the positions specified herein, which relate to a particular sequence (e.g. to the sequence of AVE0010 or exendin-4), to other sequences.
  • Analogs and derivates of exendin-3 or/and exendin-4 contain more particularly a modified amino acid sequence.
  • single amino acids can be deleted (e.g. desPro36, desPro37, desAsp28, desMet(O)14 in exendin-4 and the corresponding positions in exendin-3).
  • single positions can be substituted (e.g.
  • the C-terminus or/and the N-terminus can be modified, for example, by an additional sequence such as -(Lys)-, -(Lys) 2 -, -(Lys) 3 -, -(Lys) 4 -, -(Lys) 5 -, -(Lys) 6 -, -Asn-(Glu) 5 -, in which case -(Lys) 4 -, -(Lys) 5 -, -(Lys) 6 -, -Asn-(Glu) 5 - are preferred.
  • the carboxyl group at the C-terminus is preferably modified to an amide group (—NH 2 ).
  • modification of the C-terminus or/and of the N-terminus is carried out as a further step after completion of synthesis.
  • Pharmaceutically tolerable salts can be manufactured in a further step after completion of the synthesis cycles of the method according to the present invention.
  • the manufacture of pharmaceutically tolerable salts of peptides is known to a person skilled in the art.
  • a preferred pharmaceutically tolerable salt is acetate.
  • the GLP-1 agonist is preferably selected from the group consisting of exendin-4, analogs and derivates of exendin-4, and pharmacologically tolerable salts thereof.
  • a further preferred GLP-1 agonist is an analog of exendin-4 selected from the group consisting of:
  • a further preferred GLP-1 agonist is an analog of exendin-4 selected from the group consisting of:
  • a further preferred GLP-1 agonist is an analog of exendin-4 selected from a group as described in the previous paragraph, wherein the peptide -Lys 6 -NH 2 is attached to the C-termini of the analogs of exendin-4.
  • a further preferred GLP-1 agonist is an analog of exendin-4 selected from the group consisting of:
  • the GLP-1 agonist can be selected from the group consisting of GLP-1 and analogs and derivates of GLP-1.
  • a further preferred GLP-1 agonist is selected from the group consisting of Arg 34 ,Lys 26 (N ⁇ ( ⁇ -glutamyl(N ⁇ -hexadecanoyl)))GLP-1(7-37) [liraglutide] and a pharmacologically tolerable salt thereof.
  • a further preferred GLP-1 agonist is AVE0010.
  • AVE0010 has the sequence desPro 36 exendin-4(1-39)-Lys 6 -NH 2 (SEQ ID NO:1).
  • pharmacologically tolerable salts of AVE0010 are preferred.
  • the GLP-1 agonist for example AVE0010, is more particularly used in an amount ranging from 0.01 mg/ml to 0.5 mg/ml or 0.05 mg/ml to 1.5 mg/ml.
  • the formulation according to the present invention comprises the following constituents:
  • the formulation according to the present invention consists of the constituents mentioned in (a) to (h).
  • “approximately” means that the constituents can be present, for example, within the ranges of ⁇ 10, ⁇ 20, or ⁇ 30% around the specified values in the compositions according to the present invention.
  • composition according to the present invention comprises more than one GLP-1 agonist, then these GLP-1 agonists are selected independently of one another.
  • Suitable packaging for the composition according to the present invention is, for example, a syringe or a glass vessel with a suitable closure, from which individual therapeutically effective doses can be withdrawn as needed.
  • injection pens for administering doses comprise a container (e.g. a cartridge) which contains a pharmaceutical composition according to the present invention.
  • the present invention further provides for a method for treating a patient with a composition according to the present invention, comprising administering the composition to the patient.
  • the composition according to the present invention is intended more particularly for treating diabetes mellitus, more particularly for treating type I or type II diabetes mellitus. Further possible indications are symptoms which are associated with diabetes mellitus.
  • the composition according to the present invention is used to control the fasting, postprandial, or/and postabsorptive plasma glucose concentration, to improve glucose tolerance, to prevent hypoglycemia, to prevent functional loss of the ⁇ -cells of the pancreas, to effect weight loss, or/and to prevent weight gain.
  • the present invention further provides for the use of a composition according to the present invention in the manufacture of a pharmaceutical for treating diabetes mellitus, more particularly type I or type II, or/and the symptoms associated with it, as described herein.
  • the present invention further provides a method for manufacturing a composition according to the present invention, comprising formulating a GLP-1 agonist or/and a pharmacologically tolerable salt thereof with methionine and, optionally, at least one pharmaceutically acceptable excipient.
  • the present invention further provides for the use of the composition according to the present invention together with the administration of metformin, sulfonylurea, or glitazones, a long-acting insulin/insulin derivate, and/or a combination thereof, more particularly as an add-on therapy in the administration of metformin.
  • the present invention further provides for the use of the composition according to the present invention in patients whose blood sugar levels cannot be controlled sufficiently by the administration of metformin, sulfonylurea, or glitazones, a long-acting insulin/insulin derivate, and/or a combination thereof.
  • the present invention further provides for the use of the composition according to the present invention in patients with type II diabetes as a supplement to a diet in order to improve blood sugar control.
  • composition comprises desPro 36 exendin-4(1-39)-Lys 6 -NH 2 (AVE0010), liraglutide and/or a pharmacologically tolerable salt together with methionine and/or a pharmacologically tolerable salt.
  • Lantus®, N ⁇ B29 -tetradecanoyl des (B30) human insulin, or Insuman® is useful as a long-acting insulin derivative.
  • the add-on therapy involves more particularly the treatment of type II diabetes with metformin and AVE0010.
  • Metformin and AVE0010 can be administered in a time interval of 24 hours.
  • Metformin and AVE0010 can each be administered in a once-a-day dosage.
  • Metformin and AVE0010 can be administered by means of different routes of administration.
  • Metformin can be administered orally, AVE0010 subcutaneously.
  • Patients treated with the add-on therapy according to the present invention can have an HbA1c value in the range of 7% to 10%. They are preferably in the age range of 18 to 50 years.
  • the use in the add-on therapy according to the present invention is more particularly applicable to patients in whom type II diabetes cannot be sufficiently controlled with metformin alone.
  • metformin is administered as follows: at least 1.0 g/day, preferably at least 1.5 g/day for 3 months.
  • FIGS. 1 and 2 show the percentage content of oxidized methionine Met(ox) with respect to the entire methionine content of AVE0010 after storage at different temperatures.
  • 1 start of storage t0. 2: storage for 1 month. 3: storage for 3 months. 3: storage for 6 months.
  • FIG. 1 batch 894.
  • FIG. 2 batch 897.
  • FIGS. 3 and 4 show the percentage content of protein impurities of high molecular weight (with respect to AVE0010) after storage at different temperatures.
  • FIG. 3 batch 894.
  • FIG. 4 batch 897.
  • FIGS. 5 and 6 show the percentage content of all impurities (with respect to AVE0010) after storage at different temperatures. 1: start of storage t0. 2: storage for 1 month. 3: storage for 3 months. 3: storage for 6 months. FIG. 5 : batch 894.
  • FIG. 6 batch 897.
  • Liquid Composition Comprising AVE0010 and Methionine
  • the purpose of the study is the evaluation of the chemical or/and physical stability of formulations of AVE0010 (solution for injection, 0.1 mg/ml) with and without methionine, when the product is stored in cartridges under long-term conditions and accelerated conditions for up to 6 months.
  • Composition A (2 parallel batches: AVE0010_09_894_A and AVE0010_09_897_A)
  • Composition B (2 parallel batches: AVE0010_09_894_B and AVE0010_09_897_B)
  • the formulations are stored in units which are intended for clinical studies and for sales and distribution.
  • Test interval (months) 0 1 3 6 Long-term storage +5 ⁇ 3° C. x x x x x Accelerated conditions (temperature, humidity) +25 ⁇ 2° C./60 ⁇ 5% RH x x x +40 ⁇ 2° C./75 ⁇ 5% RH x x x x
  • the formulations are stored horizontally. RH means relative humidity.
  • Time point 0 is the start of storage. The measurements at time point 0 are used as a reference for all conditions tested. During the tests, the samples are stored at +5 ⁇ 3° C.
  • compositions according to the present invention have improved stability or/and chemical integrity.
  • the proportion of oxidized methionine, of total impurities, and of proteins of high molecular weight is lower in the compositions according to the present invention than in the comparative compositions.
  • the composition according to the present invention (batches 894_B and 897_B) and the comparative compositions (batches 894_A and 897_A) differ in the presence/absence of methionine. Therefore, improved stability or/and chemical integrity can be ascribed to the methionine constituent in the compositions according to the present invention.
  • Composition B (as in Example 1)
  • rabbits were treated with composition B or C or a saline solution subcutaneously (s.c.) or intramuscularly (i.m.). In each case, half the rabbits were sacrificed after 24 hours or 120 hours in order to determine the acute or subacute effects of the administration histologically. Also, it was determined whether repair/regeneration of any changes occurred.
  • composition C Following subcutaneous injection of composition C, the animals showed after 24 hours, in contrast to the saline control, a light to moderate inflammatory reaction in the subcutaneous connective tissue. After subcutaneous injection 120 hours earlier, a clear trend was observable for the observed changes to repair by a fibroblastic reaction. Thus, compatibility could still be rated as moderate (instead of as incompatible).
  • composition B the animals showed after subcutaneous injection no or minimal differences to the saline control (good compatibility).
  • composition C After intramuscular injection of composition C, the animals exhibited muscular necrosis (multifocal or disseminated), clearly differing from the saline controls, in which only the site of injection was visible as a clearly circumscribed necrotic area. With composition C, mineralization of the necrotic muscular tissue was observed after 120 hours, visible even in a necropsy of the animals. Although small or focal mineralization at various sites in rabbits is not unusual, the mineralization after injection of composition C was clearly associated with the necrotic areas. Thus, the reversibility of the lesions caused by the injection is more than questionable. Based on these findings, composition C after intramuscular injection in rabbits was rated as incompatible.
  • Composition B after intramuscular injection showed good compatibility (no or minimal differences to the saline control).
  • composition B compared to composition C, had an improved compatibility in intramuscular or subcutaneous administration.
  • Subcutaneous injection is the preferred route of administration for the compositions comprising a GLP-1 agonist, more particularly AVE0010, described in this application.
  • compositions according to the present invention which comprise a GLP-1 agonist, more particularly AVE0010, can be free of EDTA or/and histidine.
  • compositions according to the present invention can be substantially free of EDTA and histidine.

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Abstract

A liquid composition comprising a GLP-1 agonist or/and a pharmacologically tolerable salt thereof and, optionally, at least one pharmaceutically acceptable excipient, wherein the composition comprises methionine, as add-on therapy with metformin and/or with long-acting insulin/insulin derivates where appropriate.

Description

  • The present application relates to a liquid composition comprising a GLP-1 agonist or/and a pharmacologically tolerable salt thereof and, optionally, at least one pharmaceutically acceptable excipient, wherein the composition comprises methionine.
  • The present application further relates to the composition according to the present invention for treating diabetes mellitus. The present application further relates to the use of a composition according to the present invention in the manufacture of a pharmaceutical for treating diabetes mellitus. The present application further relates to a method for manufacturing a composition according to the present invention, comprising formulating a GLP-1 agonist or/and a pharmacologically tolerable salt thereof with methionine and, optionally, at least one pharmaceutically acceptable excipient. The present application further relates to a method for treating a patient with a composition according to the present invention, comprising administering the composition to the patient.
  • Customary compositions of GLP-1 compounds comprise a tonicity modifier, a buffer for adjusting the pH, and a preservative.
  • WO2001/04156 (Zealand Pharmaceuticals) discloses a liquid composition of Ser39-exendin-4(1-39)-NH2), sodium dihydrogenphosphate, and preservatives.
  • WO 2004/035623 (Zealand Pharmaceuticals) discloses a liquid composition comprising a stabilized exendin, 50 mM histidine, 100 to 200 mM sucrose, mannitol or other acceptable sugar, 20 mM methionine, 20 mM asparagine-glutamine or Asp, at a pH of 5.3. Stabilization is effected by certain modifications of the amino acid building blocks of exendin-4(1-39), for example, at positions Gln13, Met14, Trp25, or Asn28.
  • WO 2005/021022 (Novo Nordisk) discloses a liquid composition comprising acetylated GLP-1, phenol as a preservative, mannitol and glycerol as a tonicity modifier, and, optionally, a buffer.
  • WO 2006/051110 (Novo Nordisk) discloses liquid compositions comprising liraglutide (GLP-1 compound), poloxamer 188 or poloxamer 407 (Pluronic F-127) as a surface-active substance, phenol, propylene glycol, and sodium phosphate (pH 7.7). Addition of poloxamer-188 or poloxamer-407 led to stabilization.
  • Exendins are a group of peptides which can lower blood glucose concentrations. Exendins have a certain similarity to the sequence of GLP-1(7-36) (53%, Goke et al. J. Biol Chem 268, 19650-55). Exendin-3 and exendin-4 stimulate an increase in cellular cAMP production in the acinar cells of the guinea pig pancreas by interacting with exendin receptors (Raufman, 1996, Reg. Peptides 61:1-18). Exendin-3, in contrast to exendin-4, effects an increase in the release of amylase in the acinar cells of the pancreas. Exendins act as GLP-1 agonists.
  • Glucagon-like peptide 1 (GLP-1) is an endocrine hormone which enhances the insulin response following oral intake of glucose or fat. In general, GLP-1 lowers glucagon concentrations, slows gastric emptying, stimulates (pro)insulin synthesis, enhances sensitivity to insulin, and stimulates insulin-independent glycogen synthesis (Hoist (1999), Curr. Med. Chem 6:1005, Nauck et al. (1997) Exp Clin Endocrinol Diabetes 105: 187, Lopez-Delgado et al. (1998) Endocrinology 139:2811). Human GLP-1 has 37 amino acid residues (Heinrich et al., Endocrinol. 115:2176 (1984), Uttenthal et al., J Clin Endocrinol Metabol (1985) 61:472). Active fragments of GLP-1 include GLP-1 (7-36) and GLP-1(7-37).
  • Exendin-3, exendin-4 and exendin agonists have been proposed for treating diabetes mellitus and preventing hyperglycemia, by reducing gastric motility and gastric emptying (U.S. Pat. No. 5,424,286 and WO98/05351).
  • Exendin analogs can be characterized by amino acid substitutions and/or C-terminal truncation of the native exendin-4 sequence. Such exendin analogs are described in WO 99/07404, WO 99/25727, and WO 99/25728.
  • Solid-phase synthesis of AVE0010 is described in WO 01/04156 A1. AVE0010 has the sequence: desPro36exendin-4(1-39)-Lys6-NH2. This substance is published as SEQ ID NO:93 in WO 01/04156:
  • (SEQ ID NO: 1)
    H-G-E-G-T-F-T-S-D-L-S-K-Q-M-E-E-E-A-V-R-L-F-I-E-W-
    L-K-N-G-G-P-S-S-G-A-P-P-S-K-K-K-K-K-K-NH2
  • Exendin-4 (39 AS) has the sequence:
  • (SEQ ID NO: 2)
    H-G-E-G-T-F-T-S-D-L-S-K-Q-M-E-E-E-A-V-R-L-F-I-E-W-
    L-K-N-G-G-P-S-S-G-A-P-P-P-S-NH2
  • Exendin-3 has the sequence (J. Bio. Chem., 267, 1992, 7402-7405):
  • (SEQ ID NO: 3)
    H-His-Ser-Asp-Gly-Thr-Phe-Thr-Ser-Asp-Leu-Ser-Lys-
    Gln-Met-Glu-Glu-Glu-Ala-Val-Arg-Leu-Phe-Ile-Glu-
    Trp-Leu-Lys-Asn-Gly-Gly-Pro-Ser-Ser-Gly-Ala-Pro-
    Pro-Pro-Ser-NH2
  • GLP-1 has the sequence:
  • (SEQ ID NO: 4)
    H-A-E-G-T-F-T-S-D-V-S-S-Y-L-E-G-Q-A-A-K-E-F-I-A-W-
    L-V-K-G-R-NH2
  • It is an object of the present invention to increase the stability of liquid formulations comprising a GLP-1 agonist. More particularly, it is an object of the present invention to improve physical and chemical integrity. We have found that this object is achieved by formulating the GLP-1 agonist with methionine.
  • It was found that methionine is able to increase the storage stability of a composition comprising a GLP-1 agonist such as AVE0010. Methionine does not affect the physical integrity of these compositions.
  • It was found that, surprisingly, the addition of methionine is able to improve the storage stability of a composition according to the present invention by reducing the proportion of oxidation products of methionine, of proteins of high molecular weight, and of total impurities. These parameters are, individually or together, a measure of the chemical integrity of the compositions.
  • It was further found that, surprisingly, the biological activity of the compositions according to the present invention is increased by the addition of methionine.
  • The stability of pharmaceutically active polypeptides can be impaired by various mechanisms. These include pH, temperature, light, and the effects of certain constituents.
  • A range of customary constituents of formulations of GLP-1 agonists can be disadvantageous for the chemical or/and physical integrity and the storage stability of formulations which comprise a GLP-1 agonist. These are, for example, polysorbate 20, polysorbate 80, poloxamer 188, benzalkonium chloride, and lysine. The compositions according to the present invention are therefore preferably free of these constituents.
  • The present invention accordingly provides for a liquid composition comprising a GLP-1 agonist or/and a pharmacologically tolerable salt thereof and, optionally, at least one pharmaceutically acceptable excipient, wherein the composition comprises methionine.
  • The composition according to the present invention preferably comprises methionine in an amount ranging from 0.5 mg/mL to 20 mg/mL, more preferably in an amount ranging from 1 mg/mL to 5 mg/mL. Methionine in the D-form can be used. Likewise, methionine in the L-form can be used. Likewise, mixtures of the D-form and the L-form in any desired proportions can be used.
  • More particularly, the composition according to the present invention is free of surfactants, such as polyols and partial and fatty acid esters and ethers of polyhydric alcohols such as those of glycerol and sorbitol. The compositions according to the present invention are more particularly free of partial and fatty acid esters and ethers of glycerol and sorbitol selected from the group consisting of Span®, Tween®, Myrj®, Brij®, Cremophor®. Furthermore, the compositions according to the present invention are more particularly free of polyols selected from the group consisting of polypropylene glycols, polyethylene glycols, poloxamers, Pluronics, Tetronics. More particularly, the composition according to the present invention is free of at least one substance selected from the group consisting of polysorbate, polysorbate and poloxamer.
  • More particularly, the composition according to the present invention is substantially free, preferably free, of polysorbate, such as, for example, polysorbate 20.
  • More particularly, the composition according to the present invention is substantially free, preferably free, of polysorbate 80.
  • More particularly, the composition according to the present invention is substantially free, preferably free, of poloxamer, such as, for example, poloxamer 188.
  • More particularly, the composition according to the present invention is substantially free, preferably free, of benzalkonium chloride.
  • More particularly, the composition according to the present invention is substantially free, preferably free, of histidine.
  • More particularly, the composition according to the present invention is substantially free, preferably free, of EDTA, more particularly sodium EDTA.
  • The composition according to the present invention can comprise one or more substances which are customarily used to buffer the pH (buffer substances).
  • Examples of such buffer substances are acetate, citrate, and phosphate, for example, in amounts of up to 5 mg/ml, up to 4 mg/ml, up to 3 mg/ml, or up to 2 mg/ml.
  • The composition according to the present invention can, likewise, be substantially free of buffer substances. Likewise, the composition according to the present invention can be free of buffer substances.
  • The composition according to the present invention can be substantially free of citrate, acetate, and/or phosphate, or else free of citrate, acetate, and/or phosphate.
  • More particularly, the composition according to the present invention is substantially free, preferably free, of histidine and sodium EDTA.
  • More particularly, no insulin is present in the composition according to the present invention.
  • The pharmaceutical composition of the present invention can have an acidic or physiological pH. An acidic pH range is preferably in the range of pH 1-6.8, pH 3.5-6.8, or pH 3.5-5. A physiological pH is preferably in the range of pH 2.5-8.5, more preferably pH 4.0 to 8.5, even more preferably pH 4.0 to 6.0. Especially preferred is a pH of approximately 4.5. For pH adjustment, physiologically safe dilute acids (typically HCl) and alkalis (typically NaOH) are suitable.
  • The composition according to the present invention can comprise a suitable preservative. Suitable preservatives are, for example, phenol, m-cresol, benzyl alcohol, and/or p-hydroxybenzoate esters, m-Cresol is preferred.
  • Furthermore, the composition according to the present invention can comprise suitable tonicity modifiers. Suitable tonicity modifiers are, for example, glycerol, dextrose, lactose, sorbitol, mannitol, glucose, NaCl, calcium or magnesium compounds such as CaCl2 etc. The concentrations of glycerol, dextrose, lactose, sorbitol, mannitol, and glucose are customarily in the range of 100-250 mM, NaCl in a concentration of up to 150 mM. Glycerol is preferred.
  • More particularly, the composition is intended for parenteral administration. The composition according to the present invention is preferably an injectable composition, more preferably for subcutaneous injection. More particularly, the composition of the present invention is suitable for injection once a day.
  • More particularly, the formulation according to the present invention has, after storage for 1 month, 2 months, 4 months, or 6 months at a temperature of +5° C. or 25° C., an activity of at least 80%, at least 90%, at least 95%, or at least 98% of the activity at the start of storage.
  • In the present application, “activity” means the activity of the GLP-1 agonist which is used in the formulation according to the present invention. Methods for determining the activity of a GLP-1 agonist are known to a person skilled in the art.
  • Preferably, the composition according to the present invention has a biological activity of GLP-1 agonist of at least 89% or at least 90% after storage for 6 months at 25° C. The composition according to the present invention preferably has a biological activity of GLP-1 agonist of at least 45% or at least 50% after storage for 6 months at 40° C.
  • More particularly, the formulation according to the present invention exhibits chemical integrity after storage for 1 month, 2 months, 3 months, 4 months, or 6 months. Chemical integrity means, more particularly, that after storage at a temperature of +5° C., 25° C., or 40° C. the formulation comprises at least 80%, at least 90%, at least 95%, or at least 98% of the active substance, compared with the start of storage, in a substantially chemically unchanged form.
  • Chemical integrity can mean the chemical integrity of the GLP-1 agonist. GLP-1 agonists may comprise a methionine residue (e.g. position 14 in AVE0010). Chemical integrity of the GLP-1 agonist means, more particularly, that oxidation of the methionine residue is prevented. Here, chemical integrity means, more particularly, that the proportion of oxidized methionine with respect to the entire methionine content of the GLP-1 agonist after storage for 1, 2, 3, 4, or 6 months is below 0.7%, below 0.6%, below 0.5%, below 0.4%, or below 0.3%. Storage can be effected, for example, at 5° C., 25° C., or 40° C. Storage for 6 months at 5° C. is preferred, in which case the proportion of oxidized methionine is below 0.3%. Likewise, storage for 6 months at 25° C. is preferred, in which case the proportion of oxidized methionine is below 0.7%, below 0.6%, below 0.5%, below 0.4%, or below 0.3%. Likewise, storage for 6 months at 40° C. is preferred, in which case the proportion of oxidized methionine is below 1%, below 0.7%, below 0.6%, below 0.5%, below 0.4%, or below 0.3%.
  • Chemical integrity can mean a very low proportion of total impurities in the formulation according to the present invention. The proportion of total impurities with respect to the entire mass of the GLP-1 agonist present in the formulation after storage for 6 months at 40° C. is more particularly below 50%, below 10% after storage at 25° C., or/and below 1.8% after storage at 5° C.
  • Chemical integrity can mean a very low proportion of proteins of high molecular weight in the formulation according to the present invention. The proportion of proteins of high molecular weight with respect to the entire mass of the GLP-1 agonist present in the formulation after storage for 6 months at 40° C. is more particularly below 5%, below 4%, below 3%, or below 2%. After storage for 6 months at 25° C., the proportion of proteins of high molecular weight with respect to the entire mass of the GLP-1 agonist present in the formulation is more particularly below 0.8%, below 0.7%, or below 0.6%.
  • More particularly, the formulation according to the present invention exhibits physical integrity after storage for 1 month, 2 months, 4 months, or 6 months. Physical integrity means, more particularly, that after storage at a temperature of +5° C., 25° C., or 40° C. the formulation comprises at least 80%, at least 90%, at least 95%, or at least 98% of the active substance, compared with the start of storage, in a substantially physically unchanged form.
  • Physical integrity can mean the integrity of the GLP-1 agonist. Physical integrity means, more particularly, that the GLP-1 agonist does not form aggregates, such as, for example, fibrils.
  • The GLP-1 agonist is preferably selected from the group consisting of exendin-3 and analogs and derivates thereof, exendin-4 and analogs and derivates thereof, and in which case the GLP-1 agonist is more preferably selected from the group consisting of AVE0010 and exendin-4.
  • Exendin-3, analogs and derivates of exendin-3, exendin-4, and analogs and derivates of exendin-4 can be found in WO 01/04156, WO 98/30231, U.S. Pat. No. 5,424,286, EP application 99 610043.4, and WO 2004/005342. These documents are incorporated herein by reference. The exendin-3, exendin-4, and analogs and derivates thereof described in these documents can be synthesized by means of the methods described therein, after which modifications are optionally carried out.
  • The sequences of AVE0010 (SEQ ID NO:1), exendin-4 (SEQ ID NO:2), and exendin-3 (SEQ ID NO:3) show a high degree of similarity. The sequences of AVE0010 and exendin-4 are identical at positions 1-37. Sequence 1-39 from exendin-4 is at 37 of the 39 positions (94%) identical to the exendin-3 sequence at positions 48-86. With reference to the sequences, a person skilled in the art can readily convert the positions specified herein, which relate to a particular sequence (e.g. to the sequence of AVE0010 or exendin-4), to other sequences.
  • Analogs and derivates of exendin-3 or/and exendin-4 contain more particularly a modified amino acid sequence. For example, single amino acids can be deleted (e.g. desPro36, desPro37, desAsp28, desMet(O)14 in exendin-4 and the corresponding positions in exendin-3). Likewise, single positions can be substituted (e.g. Met(O)14, Trp(O2)25, IsoAsp28, Asp28 Pro38 in exendin-4 and the corresponding positions in exendin-3), in which case unnatural amino acids such as Met(O) (methionine sulfoxide or methionine sulfone), Trp(O2) (N-formylkynurenine), or/and IsoAsp (β-aspartate or isoaspartate) can also be used. Unnatural amino acids can be readily inserted, in the form of corresponding amino acid building blocks, into the sequence.
  • Furthermore, the C-terminus or/and the N-terminus can be modified, for example, by an additional sequence such as -(Lys)-, -(Lys)2-, -(Lys)3-, -(Lys)4-, -(Lys)5-, -(Lys)6-, -Asn-(Glu)5-, in which case -(Lys)4-, -(Lys)5-, -(Lys)6-, -Asn-(Glu)5- are preferred. The carboxyl group at the C-terminus is preferably modified to an amide group (—NH2). Optionally, modification of the C-terminus or/and of the N-terminus is carried out as a further step after completion of synthesis.
  • Pharmaceutically tolerable salts can be manufactured in a further step after completion of the synthesis cycles of the method according to the present invention. The manufacture of pharmaceutically tolerable salts of peptides is known to a person skilled in the art. A preferred pharmaceutically tolerable salt is acetate.
  • The GLP-1 agonist is preferably selected from the group consisting of exendin-4, analogs and derivates of exendin-4, and pharmacologically tolerable salts thereof.
  • A further preferred GLP-1 agonist is an analog of exendin-4 selected from the group consisting of:
  • H-desPro36-exendin-4-Lys6-NH2,
  • H-des(Pro36,37)-exendin-4-Lys4-NH2,
  • H-des(Pro36,37)-exendin-4-Lys5-NH2 and pharmacologically tolerable salts thereof.
  • A further preferred GLP-1 agonist is an analog of exendin-4 selected from the group consisting of:
  • desPro36[Asp28]exendin-4 (1-39),
  • desPro36[IsoAsp28]exendin-4 (1-39),
  • desPro36[Met(O)14,Asp28]exendin-4 (1-39),
  • desPro36[Met(O)14,IsoAsp28]exendin-4 (1-39),
  • desPro36[Trp(O2)25,Asp28]exendin-2 (1-39),
  • desPro36[Trp(O2)25,IsoAsp28]exendin-2 (1-39),
  • desPro36[Met(O)14Trp (O2)25,Asp28]exendin-4 (1-39), desPro36[Met(O)14Trp(O2)25,IsoAsp28]exendin-4(1-39) and pharmacologically tolerable salts thereof.
  • A further preferred GLP-1 agonist is an analog of exendin-4 selected from a group as described in the previous paragraph, wherein the peptide -Lys6-NH2 is attached to the C-termini of the analogs of exendin-4.
  • A further preferred GLP-1 agonist is an analog of exendin-4 selected from the group consisting of:
  • H-(Lys)6-desPro[Asp28]exendin-4(1-39)-Lys6-NH2,
  • desAsp28Pro36,Pro37,Pro38exendin-4(1-39)-NH2,
  • H-(Lys)6-desPro36,Pro37,Pro38[Asp28]exendin-4(1-39)-NH2,
  • H-Asn-(Glu)5-desPro36,Pro37,Pro38[Asp28]exendin-4(1-39)-NH2,
  • desPro36,Pro37,Pro38[Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-(Lys)6-desPro36,Pro37,Pro38[Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-Asn-(Glu)5-desPro36,Pro37,Pro38[Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-(Lys)6-desPro36[Trp(O2)25,Asp28]exendin-4(1-39)-Lys6-NH2,
  • H-desAsp28 Pro36,Pro37,Pro38[Trp(O2)25]exendin-4(1-39)-NH2,
  • H-(Lys)6-desPro36,Pro37,Pro38[Trp(O2)25,Asp28]exendin-4(1-39)-NH2,
  • H-Asn-(Glu)5-desPro36,Pro37,Pro38[Trp(O2)25,Asp28]exendin-4(1-39)-NH2,
  • desPro36,Pro37,Pro38[Trp(O2)25,Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-(Lys)6-desPro36,Pro37,Pro38[Trp(O2)25,Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-Asn-(Glu)5-desPro36, Pro37, Pro38[Trp(O2)25,Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-(Lys)6-desPro36[Met(O)14, Asp28]exendin-4(1-39)-Lys6-NH2,
  • desMet(O)14 Asp28 Pro36,Pro37,Pro38exendin-4(1-39)-NH2,
  • H-(Lys)6-desPro36,Pro37,Pro38[Met(O)14,Asp28]exendin-4(1-39)-NH2,
  • H-Asn-(Glu)5-desPro36,Pro37,Pro38[Met(O)14,Asp28]exendin-4(1-39)-NH2,
  • desPro36,Pro37,Pro38[Met(O)14,Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-(Lys)6-desPro36,Pro37,Pro38[Met(O)14,Asp28]exendin-4(1-39)-Lys6-NH2,
  • H-Asn-(Glu)5-desPro36,Pro37,Pro38[Met(O)14,Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-(Lys)6-desPro36[Met(O)14, Trp(O2)28,Asp28]exendin-4(1-39)-Lys6-NH2,
  • desAsp28Pro36,Pro37,Pro38[Met(O)14, Trp(O2)25]exendin-4(1-39)-NH2,
  • H-(Lys)6-desPro36,Pro37,Pro38[Met(O)14, Trp(O2)26,Asp28]exendin-4(1-39)-NH2,
  • H-Asn-(Glu)5-desPro36,Pro37,Pro38[Met(O)14,Asp28]exendin-4(1-39)-NH2,
  • desPro36,Pro37,Pro38[Met(O)14, Trp(O2)25,Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-(Lys)6-desPro36,Pro37,Pro38[Met(O)14,Trp(O2)25,Asp28]exendin-4(1-39)-(Lys)6-NH2,
  • H-Asn-(Glu)5-desPro36,Pro37,Pro38[Met(O)14,Trp(O2)26,Asp28]exendin-4(1-39)-(Lys)6-NH2 and pharmacologically tolerable salts thereof.
  • Likewise, the GLP-1 agonist can be selected from the group consisting of GLP-1 and analogs and derivates of GLP-1. A further preferred GLP-1 agonist is selected from the group consisting of Arg34,Lys26(Nε(γ-glutamyl(Nα-hexadecanoyl)))GLP-1(7-37) [liraglutide] and a pharmacologically tolerable salt thereof.
  • A further preferred GLP-1 agonist is AVE0010. AVE0010 has the sequence desPro36exendin-4(1-39)-Lys6-NH2 (SEQ ID NO:1). Likewise, pharmacologically tolerable salts of AVE0010 are preferred.
  • The GLP-1 agonist, for example AVE0010, is more particularly used in an amount ranging from 0.01 mg/ml to 0.5 mg/ml or 0.05 mg/ml to 1.5 mg/ml.
  • In a particular embodiment, the formulation according to the present invention comprises the following constituents:
    • (a) desPro36exendin-4(1-39)-Lys6-NH2 (e.g. approximately 0.1 mg/mL),
    • (b) sodium acetate trihydrate (approximately 3.5 mg/mL),
    • (c) m-cresol (approximately 2.7 mg/mL),
    • (d) L-methionine (approximately 3 mg/mL),
    • (e) 85% glycerol (approximately 18 mg/mL),
    • (f) approximately 0.1 N hydrochloric acid, if adjustment to a pH of approximately 4.5 is required,
    • (g) approximately 0.1 N NaOH solution, if adjustment to a pH of approximately 4.5 is required, and
    • (h) water.
  • More particularly, the formulation according to the present invention consists of the constituents mentioned in (a) to (h).
  • In the present application, “approximately” means that the constituents can be present, for example, within the ranges of ±10, ±20, or ±30% around the specified values in the compositions according to the present invention.
  • If the composition according to the present invention comprises more than one GLP-1 agonist, then these GLP-1 agonists are selected independently of one another.
  • Suitable packaging for the composition according to the present invention is, for example, a syringe or a glass vessel with a suitable closure, from which individual therapeutically effective doses can be withdrawn as needed. Equally suitable are injection pens for administering doses; such pens comprise a container (e.g. a cartridge) which contains a pharmaceutical composition according to the present invention.
  • The present invention further provides for a method for treating a patient with a composition according to the present invention, comprising administering the composition to the patient.
  • The composition according to the present invention is intended more particularly for treating diabetes mellitus, more particularly for treating type I or type II diabetes mellitus. Further possible indications are symptoms which are associated with diabetes mellitus. Preferably, the composition according to the present invention is used to control the fasting, postprandial, or/and postabsorptive plasma glucose concentration, to improve glucose tolerance, to prevent hypoglycemia, to prevent functional loss of the β-cells of the pancreas, to effect weight loss, or/and to prevent weight gain.
  • The present invention further provides for the use of a composition according to the present invention in the manufacture of a pharmaceutical for treating diabetes mellitus, more particularly type I or type II, or/and the symptoms associated with it, as described herein.
  • The present invention further provides a method for manufacturing a composition according to the present invention, comprising formulating a GLP-1 agonist or/and a pharmacologically tolerable salt thereof with methionine and, optionally, at least one pharmaceutically acceptable excipient.
  • The present invention further provides for the use of the composition according to the present invention together with the administration of metformin, sulfonylurea, or glitazones, a long-acting insulin/insulin derivate, and/or a combination thereof, more particularly as an add-on therapy in the administration of metformin.
  • The present invention further provides for the use of the composition according to the present invention in patients whose blood sugar levels cannot be controlled sufficiently by the administration of metformin, sulfonylurea, or glitazones, a long-acting insulin/insulin derivate, and/or a combination thereof.
  • The present invention further provides for the use of the composition according to the present invention in patients with type II diabetes as a supplement to a diet in order to improve blood sugar control.
  • More particularly, the composition comprises desPro36 exendin-4(1-39)-Lys6-NH2 (AVE0010), liraglutide and/or a pharmacologically tolerable salt together with methionine and/or a pharmacologically tolerable salt.
  • More particularly, Lantus®, NεB29-tetradecanoyl des (B30) human insulin, or Insuman® is useful as a long-acting insulin derivative.
  • Especially preferred is the add-on therapy with metformin and/or a long-acting insulin/insulin derivate and/or a pharmacologically tolerable salt thereof for treating type II diabetes and/or obesity, more particularly in patients who are younger than 50 years and/or have a body mass index of at least 30.
  • In the present invention, the add-on therapy involves more particularly the treatment of type II diabetes with metformin and AVE0010. Metformin and AVE0010 can be administered in a time interval of 24 hours. Metformin and AVE0010 can each be administered in a once-a-day dosage. Metformin and AVE0010 can be administered by means of different routes of administration. Metformin can be administered orally, AVE0010 subcutaneously.
  • Patients treated with the add-on therapy according to the present invention can have an HbA1c value in the range of 7% to 10%. They are preferably in the age range of 18 to 50 years.
  • The use in the add-on therapy according to the present invention is more particularly applicable to patients in whom type II diabetes cannot be sufficiently controlled with metformin alone.
  • More particularly, metformin is administered as follows: at least 1.0 g/day, preferably at least 1.5 g/day for 3 months.
  • The invention is further elucidated by the following examples and figures.
  • LEGENDS
  • FIGS. 1 and 2 show the percentage content of oxidized methionine Met(ox) with respect to the entire methionine content of AVE0010 after storage at different temperatures. 1: start of storage t0. 2: storage for 1 month. 3: storage for 3 months. 3: storage for 6 months. FIG. 1: batch 894. FIG. 2: batch 897.
  • FIGS. 3 and 4 show the percentage content of protein impurities of high molecular weight (with respect to AVE0010) after storage at different temperatures. 1: start of storage t0. 2: storage for 1 month. 3: storage for 3 months. 3: storage for 6 months.
  • FIG. 3: batch 894. FIG. 4: batch 897.
  • FIGS. 5 and 6 show the percentage content of all impurities (with respect to AVE0010) after storage at different temperatures. 1: start of storage t0. 2: storage for 1 month. 3: storage for 3 months. 3: storage for 6 months. FIG. 5: batch 894.
  • FIG. 6: batch 897.
  • EXAMPLE 1
  • Liquid Composition Comprising AVE0010 and Methionine
  • The purpose of the study is the evaluation of the chemical or/and physical stability of formulations of AVE0010 (solution for injection, 0.1 mg/ml) with and without methionine, when the product is stored in cartridges under long-term conditions and accelerated conditions for up to 6 months.
  • The following compositions are tested:
  • Composition A (2 parallel batches: AVE0010_09_894_A and AVE0010_09_897_A)
  • Specification according to
    Substance pharmacopeia Amount per unit
    AVE0010 Sanofi-Aventis 0.10 mg
    Sodium acetate trihydrate Ph. Eur./USP 3.50 mg
    m-Cresol Ph. Eur./USP 2.70 mg
    85% Glycerol Ph. Eur./USP 18.00 mg
    0.1N Hydrochloric acid Ph. Eur./USP ad pH 4.5
    0.1N NaOH solution Ph. Eur./USP ad pH 4.5
    Water for injection (Wfl) Ph. Eur./USP ad 1.0 ml
  • Composition B (2 parallel batches: AVE0010_09_894_B and AVE0010_09_897_B)
  • Specification according to
    Substance pharmacopeia Amount per unit
    AVE0010 Sanofi-Aventis 0.10 mg
    Sodium acetate trihydrate Ph. Eur./USP 3.50 mg
    m-Cresol Ph. Eur./USP 2.70 mg
    L-Methionine Ph. Eur./USP 3.00 mg
    85% Glycerol Ph. Eur./USP 18.00 mg
    0.1N Hydrochloric acid Ph. Eur./USP ad pH 4.5
    0.1N NaOH solution Ph. Eur./USP ad pH 4.5
    Water for injection (Wfl) Ph. Eur./USP ad 1.0 ml
  • The formulations are stored in units which are intended for clinical studies and for sales and distribution.
  • Term Description
    Cartridge for Cartridge, 3 ml colorless, type I glass (Ph. Eur.),
    injection pen SAP number 100922
    Crimped lid and 7.5 mm
    inserted within a Crimped lid: aluminum
    gray sealing disk Sealing disk (exterior): isoprene rubber, material
    number 7773/35
    Sealing disk (interior): bromobutyl rubber, material
    number 4780/40
    Type I closure (Ph. Eur./USP)
    SAP number 164571
    Plunger 9.2 × 11 mm
    Bromobutyl rubber, black
    SAP number 120521
  • Storage times, storage conditions, time points are summarized in the following table.
  • Test interval
    (months)
    Condition 0 1 3 6
    Long-term storage
    +5 ± 3° C. x x x x
    Accelerated conditions (temperature,
    humidity)
    +25 ± 2° C./60 ± 5% RH x x x
    +40 ± 2° C./75 ± 5% RH x x x
  • The formulations are stored horizontally. RH means relative humidity. Time point 0 is the start of storage. The measurements at time point 0 are used as a reference for all conditions tested. During the tests, the samples are stored at +5±3° C.
  • The physical and chemical stability of the stored formulations is determined with the help of the following tests:
      • Description
      • Clarity of the solution and color thereof
      • pH
      • Chemical stability (purity and impurities, determined by HPLC, more particularly the proportion of oxidation products and of total impurities)
      • Proteins of high molecular weight, determined by HPSEC
      • Visible particles
      • Biological activity of the formulations
  • Results
  • The formulations were studied separately for the parallel batches (894 and 897) with regard to the following parameters:
      • Biological activity of AVE0010. At 5° C. and 25° C., activity after 6 months was at least 96% of initial activity. The activities of the compositions according to the present invention were greater than the activities of the comparative compositions. At 40° C., activity after 6 months in the absence of methionine was approximately 43%. In the presence of methionine, activity was approximately 51% and thus clearly greater than in the absence of methionine.
      • Oxidation products. Measurements were carried out on an HPLC instrument (model: alliance) from Water Systems, using the 100% peak area method. For separation, a gradient of 0.1% TFA and acetonitrile as the mobile phase and a C18 reversed-phase column (Jupiter) as the stationary phase were used. At 5° C., the proportion of oxidized methionine Met(ox) in AVE0010 in the absence of methionine was 0.3%. At 25° C., the proportion was in the range of 0.6-0.8%, at 40° C. 1.3%. When the formulation comprised methionine, the proportion of oxidized methionine was distinctly lower. It was never more than 0.2% under all conditions tested. At 25° C., the proportion was thus approximately only ¼ to ⅓ of the content in the absence of methionine, even at 40° C. approximately only ⅙ (see FIGS. 1 and 2).
      • Proteins of high molecular weight. At 5° C., the proportion was between 0.1 and 0.3% and remained substantially unchanged during the entire storage time. At 25° C., the proportion rose in the absence of methionine to 0.9 and 1.3%, respectively. In the presence of methionine, the proportion was 0.4 to 0.5% and thus less than half as high. At 40° C., the proportion was in the absence of methionine 5.4% and 6.2%, respectively, while it was in the presence of methionine only 1.6 and 1.7%, respectively, and thus clearly lower (see FIGS. 3 and 4).
      • Total impurities. At 5° C., total impurities rose over the storage time of 6 months slightly from 1.2 to 1.8 or 1.9% (absence of methionine). When methionine was present, the rise was a little lower. At 25° C., a rise to 10.6% and 11.8%, respectively, was observed. In the presence of methionine, the values were below 10%. At 40° C., the proportion rose up to 54% (without methionine). When methionine was present, the proportion was approximately only 47% (see FIGS. 5 and 6).
      • The percentage values are the content values (percentage values of impurities) of the oxidation products, of total impurities, and of high-molecular-weight proteins (HMWP).
      • All values were determined by HPLC with the so-called 100% method. Here, in particular, it involves reversed-phase HPLC (C 18 column), in which a gradient method was used for the mobile phase:
      • a) 0.1% TFA, 15% ACN and b) 0.1% TFA, 75% ACN.
      • Detection at 215 nm (UV).
      • The high-molecular-weight proteins (HMWP) were detected by HPSEC, described in European Pharmacopeia 6.0 for injectable insulin preparations.
  • The data are summarized in the following tables:
  • Mean values: AVE0010_09_894_A + B
    AVE0010_09_894_A AVE0010_09_894_B
    t
    0 1 Mon. 3 Mon. 6 Mon. t 0 1 Mon. 3 Mon. 6 Mon.
    5° C.
    Total impurities 1.2 1.5 2.1 1.8 1.1 1.3 1.5 1.7
    AVE0010 Test 101.5 99.6 98.0 97.8 101.1 100.5 99.4 98.6
    Proteins of high molecular weight 0.3 0.3 0.4 0.3 0.2 0.2 0.2 0.3
    Oxidation products 0.3 0.4 0.4 0.3 0.1 0.2 0.1 0.1
    25° C.
    Total impurities 1.2 3.0 6.4 11.8 1.1 2.5 5.7 9.8
    AVE0010 Test 101.5 97.9 94.0 88.6 101.1 98.7 94.8 90.9
    Proteins of high molecular weight 0.3 0.4 0.6 1.3 0.2 0.3 0.3 0.5
    Oxidation products 0.3 0.4 0.5 0.8 0.1 0.2 0.2 0.2
    40° C.
    Total impurities 1.2 13.4 34.3 54.1 1.1 12.1 30.4 46.8
    AVE0010 Test 101.5 87.1 66.6 42.5 101.1 88.8 70.8 50.9
    Proteins of high molecular weight 0.3 1.0 2.6 6.2 0.2 0.5 0.9 1.7
    Oxidation products 0.3 0.6 0.9 1.3 0.1 0.2 0.2 0.2
  • Mean values: AVE0010_09_897_A + B
    AVE0010_09_897_A AVE0010_09_897_B
    t
    0 1 Mon. 3 Mon. 6 Mon. t 0 1 Mon. 3 Mon. 6 Mon.
    5° C.
    Total impurities 1.2 1.6 1.8 1.9 1.0 1.3 1.5 1.7
    AVE0010 Test 99.2 98.2 97.5 96.7 99.5 99.2 98.0 97.1
    Proteins of high molecular weight 0.1 0.1 0.1 0.2 0.1 0.1 0.1 0.1
    Oxidation products 0.3 0.3 0.3 0.3 0.1 0.1 0.1 0.1
    25° C.
    Total impurities 1.2 3.3 6.7 10.6 1.0 2.7 5.8 9.1
    AVE0010 Test 99.2 96.6 92.8 87.4 99.5 97.8 93.6 90.0
    Proteins of high molecular weight 0.1 0.2 0.5 0.9 0.1 0.1 0.2 0.4
    Oxidation products 0.3 0.4 0.5 0.6 0.1 0.1 0.2 0.2
    40° C.
    Total impurities 1.2 13.1 33.5 53.9 1.0 11.8 29.8 47.0
    AVE0010 Test 99.2 86.8 66.5 42.6 99.5 88.0 70.7 51.0
    Proteins of high molecular weight 0.1 0.8 2.2 5.4 0.1 0.4 0.9 1.6
    Oxidation products 0.3 0.5 0.8 1.3 0.1 0.1 0.2 0.2
  • CONCLUSION
  • The proportion of oxidation products, of proteins of high molecular weight, and of total impurities are, individually or together, a measure of the chemical integrity of the compositions. From the results described above with the example compositions, it follows that the liquid compositions according to the present invention comprising
      • a GLP-1 agonist or/and a pharmacologically tolerable salt thereof (more particularly AVE0010 or/and a pharmacologically tolerable salt thereof),
      • optionally at least one pharmaceutically acceptable excipient,
      • and methionine
  • have improved stability or/and chemical integrity. The proportion of oxidized methionine, of total impurities, and of proteins of high molecular weight is lower in the compositions according to the present invention than in the comparative compositions. The composition according to the present invention (batches 894_B and 897_B) and the comparative compositions (batches 894_A and 897_A) differ in the presence/absence of methionine. Therefore, improved stability or/and chemical integrity can be ascribed to the methionine constituent in the compositions according to the present invention.
  • EXAMPLE 2
  • In a further experiment, it was studied how sodium EDTA and histidine have an effect in a composition according to the present invention.
  • Composition B (as in Example 1)
  • Specification according to
    Substance pharmacopeia Amount per unit
    AVE0010 Sanofi-Aventis 0.10 mg
    Sodium acetate trihydrate Ph. Eur./USP 3.50 mg
    m-Cresol Ph. Eur./USP 2.70 mg
    L-Methionine Ph. Eur./USP 3.00 mg
    85% Glycerol Ph. Eur./USP 18.00 mg
    0.1N Hydrochloric acid Ph. Eur./USP ad pH 4.5
    0.1N NaOH solution Ph. Eur./USP ad pH 4.5
    Water for injection (Wfl) Ph. Eur./USP ad 1.0 ml
  • Composition C
  • Specification according to
    Substance pharmacopeia Amount per unit
    AVE0010 Sanofi-Aventis 0.10 mg
    Sodium acetate trihydrate Ph. Eur./USP 3.50 mg
    Sodium EDTA Ph. Eur./USP 1.00 mg
    m-Cresol Ph. Eur./USP 2.70 mg
    L-Methionine Ph. Eur./USP 3.00 mg
    L-Histidine Ph. Eur./USP 3.10 mg
    85% Glycerol Ph. Eur./USP 18.00 mg
    0.1N Hydrochloric acid Ph. Eur./USP ad pH 4.5
    0.1N NaOH solution Ph. Eur./USP ad pH 4.5
    Water for injection (Wfl) Ph. Eur./USP ad 1.0 ml
  • In a standard experimental design, rabbits were treated with composition B or C or a saline solution subcutaneously (s.c.) or intramuscularly (i.m.). In each case, half the rabbits were sacrificed after 24 hours or 120 hours in order to determine the acute or subacute effects of the administration histologically. Also, it was determined whether repair/regeneration of any changes occurred.
  • Following subcutaneous injection of composition C, the animals showed after 24 hours, in contrast to the saline control, a light to moderate inflammatory reaction in the subcutaneous connective tissue. After subcutaneous injection 120 hours earlier, a clear trend was observable for the observed changes to repair by a fibroblastic reaction. Thus, compatibility could still be rated as moderate (instead of as incompatible).
  • With composition B, the animals showed after subcutaneous injection no or minimal differences to the saline control (good compatibility).
  • After intramuscular injection of composition C, the animals exhibited muscular necrosis (multifocal or disseminated), clearly differing from the saline controls, in which only the site of injection was visible as a clearly circumscribed necrotic area. With composition C, mineralization of the necrotic muscular tissue was observed after 120 hours, visible even in a necropsy of the animals. Although small or focal mineralization at various sites in rabbits is not unusual, the mineralization after injection of composition C was clearly associated with the necrotic areas. Thus, the reversibility of the lesions caused by the injection is more than questionable. Based on these findings, composition C after intramuscular injection in rabbits was rated as incompatible.
  • Composition B after intramuscular injection showed good compatibility (no or minimal differences to the saline control).
  • From these data, it follows that composition B, compared to composition C, had an improved compatibility in intramuscular or subcutaneous administration. Subcutaneous injection is the preferred route of administration for the compositions comprising a GLP-1 agonist, more particularly AVE0010, described in this application.
  • Thus, the compositions according to the present invention, which comprise a GLP-1 agonist, more particularly AVE0010, can be free of EDTA or/and histidine. Likewise, the compositions according to the present invention can be substantially free of EDTA and histidine.

Claims (8)

1. An aqueous liquid composition consisting essentially of:
(a) desPro36exendin-4(1-39)-Lys6-NH2 (“AVE0010”) or a pharmacologically tolerable salt thereof at a concentration of about 0.025 mg/mL to about 0.1 mg/mL;
(b) insulin glargine or a pharmacologically tolerable salt thereof at a concentration of about 3.64 mg/mL;
(c) L-methionine; and
(d) water.
2. The aqueous liquid composition of claim 1, wherein the composition exhibits chemical integrity after storage for 6 months at a temperature of +25° C.
3. The aqueous liquid composition of claim 2, wherein at least 80% of the liquid composition's active substance is in a substantially chemically unchanged form after storage for 6 months at a temperature of +25° C.
4. The aqueous liquid composition of claim 2, wherein the percentage of oxidized methionine with respect to the entire methionine content of the GLP-1 agonist after storage for 6 months at a temperature of +25° C. is below 0.7%.
5. The aqueous liquid composition of claim 2, wherein the proportion of total impurities with respect to the entire mass of the GLP-1 agonist present in the composition after storage for 6 months at +25° C. is below 10%.
6. The aqueous liquid composition of claim 2, wherein the proportion of proteins of high molecular weight with respect to the entire mass of the GLP-1 agonist in the composition after storage for 6 months at +25° C. is below 0.8%.
7. An aqueous liquid pharmaceutical composition comprising the following constituents per 1 mL volume of the composition:
(a) approximately 50 μg desPro36exendin-4(1-39)-Lys6-NH2 (“AVE0010”) or a pharmacologically tolerable salt thereof;
(b) approximately 3.5 mg sodium acetate trihydrate;
(c) approximately 2.7 mg m-cresol;
(d) approximately 3.0 mg L-methionine;
(e) approximately 18.0 mg glycerol; and
(f) water,
wherein the composition has improved stability and chemical integrity; and
wherein the composition has improved compatibility in intramuscular or subcutaneous administration.
8. An aqueous liquid pharmaceutical composition comprising the following constituents per 1 mL volume of the composition:
(a) approximately 100 μg desPro36exendin-4(1-39)-Lys6-NH2 (“AVE0010”) or a pharmacologically tolerable salt thereof;
(b) approximately 3.5 mg sodium acetate trihydrate;
(c) approximately 2.7 mg m-cresol;
(d) approximately 3.0 mg L-methionine;
(e) approximately 18.0 mg glycerol; and
(f) water,
wherein the composition has improved stability and chemical integrity; and
wherein the composition has improved compatibility in intramuscular or subcutaneous administration.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180200370A1 (en) * 2009-11-13 2018-07-19 Sanofi-Aventis Deutschland Gmbh Pharmaceutical Composition Comprising a GLP-1 Agonist, an Insulin and Methionine

Families Citing this family (42)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102007143B (en) 2008-01-09 2015-08-26 塞诺菲-安万特德国有限公司 There is the novel insulin derivates of super delayed aging feature
RS56632B1 (en) 2008-10-17 2018-03-30 Sanofi Aventis Deutschland Combination of an insulin and a glp-1 agonist
KR101852328B1 (en) * 2009-07-06 2018-04-26 사노피-아벤티스 도이칠란트 게엠베하 Aqueous insulin preparations containing methionine
PT3345593T (en) 2009-11-13 2023-11-27 Sanofi Aventis Deutschland Pharmaceutical composition comprising despro36exendin-4(1-39)-lys6-nh2 and methionine
AU2011202239C1 (en) 2010-05-19 2017-03-16 Sanofi Long-acting formulations of insulins
HUE031181T2 (en) 2010-08-30 2017-06-28 Sanofi Aventis Deutschland Use of ave0010 for the manufacture of a medicament for the treatment of diabetes mellitus type 2
CN103458919A (en) * 2011-02-02 2013-12-18 赛诺菲-安万特德国有限公司 Prevention of hypoglycaemia in diabetes mellitus type 2 patients
EP2679270B1 (en) * 2011-02-24 2016-11-09 Hisamitsu Pharmaceutical Co., Inc. Glp-1 analogue composition for microneedle devices
US9821032B2 (en) 2011-05-13 2017-11-21 Sanofi-Aventis Deutschland Gmbh Pharmaceutical combination for improving glycemic control as add-on therapy to basal insulin
CN103917241A (en) 2011-08-29 2014-07-09 赛诺菲-安万特德国有限公司 Pharmaceutical combination for use in glycemic control in diabetes type 2 patients
AR087744A1 (en) 2011-09-01 2014-04-16 Sanofi Aventis Deutschland PHARMACEUTICAL COMPOSITION FOR USE IN THE TREATMENT OF A NEURODEGENERATIVE DISEASE
AR092862A1 (en) * 2012-07-25 2015-05-06 Hanmi Pharm Ind Co Ltd LIQUID FORMULATION OF PROLONGED ACTION INSULIN AND AN INSULINOTROPIC PEPTIDE AND PREPARATION METHOD
UA116217C2 (en) 2012-10-09 2018-02-26 Санофі Exendin-4 derivatives as dual glp1/glucagon agonists
CN104902919B (en) 2012-12-21 2018-11-20 赛诺菲 GLP1/GIP dual agonists or the triple agonists of GLP1/GIP/ glucagon
CN103893744B (en) * 2012-12-24 2017-12-19 杭州九源基因工程有限公司 A kind of pharmaceutical preparation for treating diabetes and preparation method thereof
TWI780236B (en) 2013-02-04 2022-10-11 法商賽諾菲公司 Stabilized pharmaceutical formulations of insulin analogues and/or insulin derivatives
MX369511B (en) 2013-04-03 2019-11-11 Sanofi Sa Treatment of diabetes mellitus by long-acting formulations of insulins.
TW201609799A (en) 2013-12-13 2016-03-16 賽諾菲公司 Dual GLP-1/GIP receptor agonists
TW201609797A (en) 2013-12-13 2016-03-16 賽諾菲公司 Dual GLP-1/glucagon receptor agonists
EP3080150B1 (en) 2013-12-13 2018-08-01 Sanofi Exendin-4 peptide analogues as dual glp-1/gip receptor agonists
EP3080152A1 (en) 2013-12-13 2016-10-19 Sanofi Non-acylated exendin-4 peptide analogues
EP3091964A1 (en) 2014-01-09 2016-11-16 Sanofi Stabilized pharmaceutical formulations of insulin aspart
US9839692B2 (en) 2014-01-09 2017-12-12 Sanofi Stabilized pharmaceutical formulations of insulin analogues and/or insulin derivatives
BR112016013832A2 (en) 2014-01-09 2017-08-08 Sanofi Sa USE OF INSULIN ANALOG AND/OR DERIVATIVE, PHARMACEUTICAL FORMULATION AND PROCESS FOR THE PREPARATION OF THE SAME, KIT AND MEDICAL DEVICE
TW201625668A (en) 2014-04-07 2016-07-16 賽諾菲公司 Exendin-4 derivatives as peptidic dual GLP-1/glucagon receptor agonists
TW201625669A (en) 2014-04-07 2016-07-16 賽諾菲公司 Peptidic dual GLP-1/glucagon receptor agonists derived from Exendin-4
TW201625670A (en) 2014-04-07 2016-07-16 賽諾菲公司 Dual GLP-1/glucagon receptor agonists derived from EXENDIN-4
US9932381B2 (en) 2014-06-18 2018-04-03 Sanofi Exendin-4 derivatives as selective glucagon receptor agonists
JP6970615B2 (en) 2014-12-12 2021-11-24 サノフィ−アベンティス・ドイチュラント・ゲゼルシャフト・ミット・ベシュレンクテル・ハフツング Insulin glargine / lixisenatide fixed ratio prescription
TWI748945B (en) 2015-03-13 2021-12-11 德商賽諾菲阿凡提斯德意志有限公司 Treatment type 2 diabetes mellitus patients
TW201705975A (en) 2015-03-18 2017-02-16 賽諾菲阿凡提斯德意志有限公司 Treatment of type 2 diabetes mellitus patients
AR105319A1 (en) 2015-06-05 2017-09-27 Sanofi Sa PROPHARMS THAT INCLUDE A DUAL AGONIST GLU-1 / GLUCAGON CONJUGATE HIALURONIC ACID CONNECTOR
TW201706291A (en) 2015-07-10 2017-02-16 賽諾菲公司 New EXENDIN-4 derivatives as selective peptidic dual GLP-1/glucagon receptor agonists
US20200164083A1 (en) * 2016-03-16 2020-05-28 Prolynx Llc Extended release conjugates of exenatide analogs
TW201821434A (en) 2016-10-10 2018-06-16 法商賽諾菲公司 Method of preparing peptides comprising a lipophilically modified lysine side chain
US20190374613A1 (en) * 2016-11-22 2019-12-12 Biocon Research Limited Pharmaceutical compositions of glp-1 analogues
TW201832783A (en) 2016-12-02 2018-09-16 法商賽諾菲公司 Conjugates comprising an glp-1/glucagon dual agonist, a linker and hyaluronic acid
AR114162A1 (en) 2017-12-21 2020-07-29 Sanofi Sa LIQUID PHARMACEUTICAL COMPOSITION
TWI829687B (en) 2018-05-07 2024-01-21 丹麥商諾佛 儂迪克股份有限公司 Solid compositions comprising a glp-1 agonist and a salt of n-(8-(2-hydroxybenzoyl)amino)caprylic acid
US11471512B2 (en) * 2019-03-01 2022-10-18 Merck Sharp & Dohme Llc Pharmaceutical compositions of a peptide
WO2020208541A1 (en) * 2019-04-08 2020-10-15 Enzene Biosciences Limited Composition comprising glp-1 analogue
AU2020337093A1 (en) * 2019-08-30 2022-04-21 Kashiv Biosciences, Llc Novel formulation of highly concentrated pharmacologically active antibody

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5358708A (en) * 1993-01-29 1994-10-25 Schering Corporation Stabilization of protein formulations
WO2010043566A2 (en) * 2008-10-17 2010-04-22 Sanofi-Aventis Deutschland Gmbh Combination of an insulin and a glp-1 agonist

Family Cites Families (391)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB835638A (en) 1956-12-01 1960-05-25 Novo Terapeutisk Labor As Insulin crystal suspensions having a protracted effect
GB840870A (en) 1957-08-03 1960-07-13 Novo Terapeutisk Labor As Improvements in or relating to insulin preparations
US3758683A (en) 1971-04-30 1973-09-11 R Jackson Insulin product
US3868358A (en) 1971-04-30 1975-02-25 Lilly Co Eli Protamine-insulin product
US3984696A (en) 1974-12-11 1976-10-05 Medi-Ray, Inc. Radiation guard for X-ray table
US4153689A (en) 1975-06-13 1979-05-08 Takeda Chemical Industries, Ltd. Stable insulin preparation for nasal administration
GB1554157A (en) 1975-06-13 1979-10-17 Takeda Chemical Industries Ltd Stable insulin preparation for intra nasal administration
GB1527605A (en) 1975-08-20 1978-10-04 Takeda Chemical Industries Ltd Insulin preparation for intranasal administration
JPS6033474B2 (en) 1978-05-11 1985-08-02 藤沢薬品工業株式会社 Novel hyaluronidase BMP-8231 and its production method
US4783441A (en) 1979-04-30 1988-11-08 Hoechst Aktiengesellschaft Aqueous protein solutions stable to denaturation
EP0018609B1 (en) 1979-04-30 1983-09-21 Hoechst Aktiengesellschaft Aqueous solutions of proteins stable against denaturization, process for their manufacture, and their utilization
JPS55153712A (en) 1979-05-18 1980-11-29 Kao Corp Insulin pharmaceutical preparation and its production
DE3033127A1 (en) 1980-09-03 1982-04-08 Hoechst Ag, 6000 Frankfurt NEW INSULIN ANALOG
US4367737A (en) 1981-04-06 1983-01-11 George Kozam Multiple barrel syringe
AU558474B2 (en) 1981-07-17 1987-01-29 Nordisk Insulinlaboratorium A stable aqueous, therapeutic insulin preparation and a process for preparing it
NL193099C (en) 1981-10-30 1998-11-03 Novo Industri As Stabilized insulin solution.
DE3316363A1 (en) 1983-05-05 1984-11-08 Deutsche Babcock Anlagen Ag, 4200 Oberhausen ROLLER GRID FOR WASTE COMBUSTION PLANTS
DE3326472A1 (en) 1983-07-22 1985-02-14 Hoechst Ag, 6230 Frankfurt NEW INSULIN DERIVATIVES, METHOD FOR THE PRODUCTION AND USE THEREOF AND PHARMACEUTICAL AGENTS FOR TREATING THE DIABETES MELLITUS
DE3326473A1 (en) 1983-07-22 1985-01-31 Hoechst Ag, 6230 Frankfurt PHARMACEUTICAL AGENT FOR TREATING THE DIABETES MELLITUS
DE3327709A1 (en) 1983-07-29 1985-02-07 Hoechst Ag, 6230 Frankfurt INSULIN DERIVATIVE CRYSTAL SUSPENSIONS, METHOD FOR THE PRODUCTION AND USE THEREOF
DE3333640A1 (en) 1983-09-17 1985-04-25 Hoechst Ag, 6230 Frankfurt METHOD FOR THE PRODUCTION OF INSULIN DERIVATIVES, THE B-CHAIN C-TERMINAL EXTENDED, NEW BASICALLY MODIFIED INSULIN DERIVATIVES, THE MEANS CONTAINING THEM AND THEIR USE
DE3345434A1 (en) 1983-12-15 1985-06-27 Siemens AG, 1000 Berlin und 8000 München X-RAY EXAMINATION TABLE
US4839341A (en) 1984-05-29 1989-06-13 Eli Lilly And Company Stabilized insulin formulations
CA1244347A (en) 1984-05-29 1988-11-08 Eddie H. Massey Stabilized insulin formulations
DE3576120D1 (en) 1984-06-09 1990-04-05 Hoechst Ag INSULIN PREPARATIONS, METHOD FOR THE PRODUCTION AND USE THEREOF.
DE3440988A1 (en) 1984-11-09 1986-07-10 Hoechst Ag, 6230 Frankfurt METHOD FOR CLEAVING PEPTIDES AND PROTEINS ON THE METHIONYL BOND
DK113585D0 (en) 1985-03-12 1985-03-12 Novo Industri As NEW PEPTIDES
US5008241A (en) 1985-03-12 1991-04-16 Novo Nordisk A/S Novel insulin peptides
DK347086D0 (en) 1986-07-21 1986-07-21 Novo Industri As NOVEL PEPTIDES
CA1274774A (en) 1985-04-15 1990-10-02 Kenneth S. Su Method for administering insulin
US4689042A (en) 1985-05-20 1987-08-25 Survival Technology, Inc. Automatic medicament ingredient mixing and injecting apparatus
DE3526995A1 (en) 1985-07-27 1987-02-05 Hoechst Ag FUSION PROTEINS, METHOD FOR THEIR PRODUCTION AND THEIR USE
US4837316A (en) 1985-08-29 1989-06-06 Fujirebio Kabushiki Kaisha Alkylamide derivatives with H2 -receptor antagonistic and cytoprotective action
PH25772A (en) 1985-08-30 1991-10-18 Novo Industri As Insulin analogues, process for their preparation
US4960702A (en) 1985-09-06 1990-10-02 Codon Methods for recovery of tissue plasminogen activator
DE3636903A1 (en) 1985-12-21 1987-07-02 Hoechst Ag FUSION PROTEINS WITH EUKARYOTIC BALLASTES
US5496924A (en) 1985-11-27 1996-03-05 Hoechst Aktiengesellschaft Fusion protein comprising an interleukin-2 fragment ballast portion
DE3541856A1 (en) 1985-11-27 1987-06-04 Hoechst Ag EUKARYOTIC FUSION PROTEINS, THEIR PRODUCTION AND USE, AND MEANS FOR CARRYING OUT THE PROCESS
CA1275922C (en) 1985-11-28 1990-11-06 Harunobu Amagase Treatment of cancer
DE3544295A1 (en) 1985-12-14 1987-06-19 Bayer Ag THERMOPLASTIC MOLDS WITH HIGH CROSS-CURRENT RESISTANCE
US5614492A (en) 1986-05-05 1997-03-25 The General Hospital Corporation Insulinotropic hormone GLP-1 (7-36) and uses thereof
PH23446A (en) 1986-10-20 1989-08-07 Novo Industri As Peptide preparations
DE10075034I1 (en) 1987-02-25 2001-05-23 Novo Nordisk As Insulin derivatives
US5034415A (en) 1987-08-07 1991-07-23 Century Laboratories, Inc. Treatment of diabetes mellitus
DE3726655A1 (en) 1987-08-11 1989-02-23 Hoechst Ag METHOD FOR ISOLATING BASIC PROTEINS FROM PROTEIN MIXTURES CONTAINING SUCH BASIC PROTEINS
DK257988D0 (en) 1988-05-11 1988-05-11 Novo Industri As NEW PEPTIDES
US6875589B1 (en) 1988-06-23 2005-04-05 Hoechst Aktiengesellschaft Mini-proinsulin, its preparation and use
DE3827533A1 (en) 1988-08-13 1990-02-15 Hoechst Ag PHARMACEUTICAL PREPARATION FOR TREATING THE DIABETES MELLITUS
US4923162A (en) 1988-09-19 1990-05-08 Fleming Matthew C Radiation shield swivel mount
DE3837825A1 (en) 1988-11-08 1990-05-10 Hoechst Ag NEW INSULIN DERIVATIVES, THEIR USE AND A PHARMACEUTICAL PREPARATION CONTAINING THEM
US5225323A (en) 1988-11-21 1993-07-06 Baylor College Of Medicine Human high-affinity neurotransmitter uptake system
HUT56857A (en) 1988-12-23 1991-10-28 Novo Nordisk As Human insulin analogues
US4994439A (en) 1989-01-19 1991-02-19 California Biotechnology Inc. Transmembrane formulations for drug administration
PT93057B (en) 1989-02-09 1995-12-29 Lilly Co Eli PROCESS FOR THE PREPARATION OF INSULIN ANALOGS
US5514646A (en) 1989-02-09 1996-05-07 Chance; Ronald E. Insulin analogs modified at position 29 of the B chain
DK134189D0 (en) 1989-03-20 1989-03-20 Nordisk Gentofte INSULIN COMPOUNDS
ES2084698T5 (en) 1989-05-04 2005-03-01 Southern Research Institute ENCAPSULATION PROCEDURE.
US5006718A (en) 1989-07-21 1991-04-09 Lenhart Mark J X-ray shield for X-ray examination table
GR1005153B (en) 1989-08-29 2006-03-13 The General Hospital Corporation Fusion proteins their preparation and use
US5358857A (en) 1989-08-29 1994-10-25 The General Hospital Corp. Method of preparing fusion proteins
US5227293A (en) 1989-08-29 1993-07-13 The General Hospital Corporation Fusion proteins, their preparation and use
US5545618A (en) 1990-01-24 1996-08-13 Buckley; Douglas I. GLP-1 analogs useful for diabetes treatment
CN1020944C (en) 1990-01-30 1993-05-26 阿图尔-费希尔股份公司费希尔厂 Fastening element
US5397771A (en) 1990-05-10 1995-03-14 Bechgaard International Research And Development A/S Pharmaceutical preparation
DK0532546T3 (en) 1990-05-10 1998-12-28 Nycomed Pharma As Pharmaceutical preparation containing N-glycofurols and N-ethylene glycols
DK155690D0 (en) 1990-06-28 1990-06-28 Novo Nordisk As NEW PEPTIDES
DK10191D0 (en) 1991-01-22 1991-01-22 Novo Nordisk As HIS UNKNOWN PEPTIDES
US5272135A (en) * 1991-03-01 1993-12-21 Chiron Ophthalmics, Inc. Method for the stabilization of methionine-containing polypeptides
CA2038597A1 (en) 1991-03-19 1992-09-20 Jose P. Garzaran A method and a pharmaceutical preparation for treating pain
US6468959B1 (en) 1991-12-05 2002-10-22 Alfatec-Pharm Gmbh Peroral dosage form for peptide containing medicaments, in particular insulin
US5614219A (en) 1991-12-05 1997-03-25 Alfatec-Pharma Gmbh Oral administration form for peptide pharmaceutical substances, in particular insulin
CH682806A5 (en) 1992-02-21 1993-11-30 Medimpex Ets Injection device.
CH682805A5 (en) 1992-02-24 1993-11-30 Medimpex Ets Display device for an injection device.
DK36392D0 (en) 1992-03-19 1992-03-19 Novo Nordisk As USE OF CHEMICAL COMPOUND
DK39892D0 (en) 1992-03-25 1992-03-25 Bernard Thorens PEPTIDE
US5846747A (en) 1992-03-25 1998-12-08 Novo Nordisk A/S Method for detecting glucagon-like peptide-1 antagonists and agonists
US5253785A (en) 1992-04-02 1993-10-19 Habley Medical Technology Corp. Variable proportion dispenser
ES2097426T3 (en) 1992-12-02 1997-04-01 Hoechst Ag PROCEDURE FOR OBTAINING PROINSULIN WITH CORRECTLY UNITED CYSTINE BRIDGES.
HUT71583A (en) 1992-12-18 1995-12-28 Lilly Co Eli Insulin-analogs
US5478323A (en) 1993-04-02 1995-12-26 Eli Lilly And Company Manifold for injection apparatus
US5424286A (en) 1993-05-24 1995-06-13 Eng; John Exendin-3 and exendin-4 polypeptides, and pharmaceutical compositions comprising same
JP2837956B2 (en) 1993-06-21 1998-12-16 ノボ ノルディスク アクティーゼルスカブ Asp ▲ B28 ▼ Insulin crystal
US5506203C1 (en) 1993-06-24 2001-02-06 Astra Ab Systemic administration of a therapeutic preparation
US5534488A (en) 1993-08-13 1996-07-09 Eli Lilly And Company Insulin formulation
EP2283821A1 (en) 1993-11-19 2011-02-16 Alkermes, Inc. Preparation of biodegradable microparticles containing a biologically active agent
US5705483A (en) 1993-12-09 1998-01-06 Eli Lilly And Company Glucagon-like insulinotropic peptides, compositions and methods
IT1265271B1 (en) 1993-12-14 1996-10-31 Alcatel Italia BASEBAND PREDISTRITORTION SYSTEM FOR THE ADAPTIVE LINEARIZATION OF POWER AMPLIFIERS
US5595756A (en) 1993-12-22 1997-01-21 Inex Pharmaceuticals Corporation Liposomal compositions for enhanced retention of bioactive agents
DE4405179A1 (en) 1994-02-18 1995-08-24 Hoechst Ag Method of obtaining insulin with correctly connected cystine bridges
DE4405388A1 (en) 1994-02-19 1995-08-24 Hoechst Ag Process for the preparation of polyalkyl-1-oxa-diazaspirodecane compounds
WO1995024183A1 (en) 1994-03-07 1995-09-14 Inhale Therapeutic Systems Methods and compositions for pulmonary delivery of insulin
US5474978A (en) 1994-06-16 1995-12-12 Eli Lilly And Company Insulin analog formulations
US5559094A (en) 1994-08-02 1996-09-24 Eli Lilly And Company AspB1 insulin analogs
DK0779806T3 (en) 1994-09-09 2000-11-27 Takeda Chemical Industries Ltd Delayed-release preparation containing a metal salt of a peptide
US5879584A (en) 1994-09-10 1999-03-09 The Procter & Gamble Company Process for manufacturing aqueous compositions comprising peracids
US5547929A (en) 1994-09-12 1996-08-20 Eli Lilly And Company Insulin analog formulations
US5707641A (en) 1994-10-13 1998-01-13 Pharmaderm Research & Development Ltd. Formulations comprising therapeutically-active proteins or polypeptides
YU18596A (en) 1995-03-31 1998-07-10 Eli Lilly And Company Analogous formulations of monomer insulin
US5990077A (en) 1995-04-14 1999-11-23 1149336 Ontario Inc. Glucagon-like peptide-2 and its therapeutic use
CA2223272A1 (en) 1995-05-05 1996-11-07 Ronald Eugene Chance Single chain insulin with high bioactivity
US5824638A (en) 1995-05-22 1998-10-20 Shire Laboratories, Inc. Oral insulin delivery
US6143718A (en) 1995-06-07 2000-11-07 Amylin Pharmaceuticals, Inc. Treatment of Type II diabetes mellutis with amylin agonists
JP2002514892A (en) 1995-06-08 2002-05-21 コブラ セラピューティクス リミテッド Use of synthetic virus-like particles in gene therapy
ATE268591T1 (en) 1995-06-27 2004-06-15 Takeda Chemical Industries Ltd METHOD FOR PRODUCING DELAYED RELEASE PREPARATIONS
JPH11292787A (en) 1995-08-15 1999-10-26 Asahi Chem Ind Co Ltd Transucosal preparation containing physiologically active peptide
DE19545257A1 (en) 1995-11-24 1997-06-19 Schering Ag Process for the production of morphologically uniform microcapsules and microcapsules produced by this process
US5985309A (en) 1996-05-24 1999-11-16 Massachusetts Institute Of Technology Preparation of particles for inhalation
DE19637230A1 (en) 1996-09-13 1998-03-19 Boehringer Mannheim Gmbh Truncated versions of exendin peptide(s) for treating diabetes
DK0915910T3 (en) 1996-06-05 2006-05-22 Roche Diagnostics Gmbh Exendin analogues, processes for their preparation, and drugs containing them
US5948751A (en) 1996-06-20 1999-09-07 Novo Nordisk A/S X14-mannitol
ATE208208T1 (en) 1996-06-20 2001-11-15 Novo Nordisk As INSULIN PREPARATIONS CONTAINING HALOGENIDES
CA2258099A1 (en) 1996-06-20 1997-12-24 Novo Nordisk A/S Insulin preparations containing carbohydrates
US6110703A (en) 1996-07-05 2000-08-29 Novo Nordisk A/S Method for the production of polypeptides
EP2016950B1 (en) 1996-08-08 2011-01-05 Amylin Pharmaceuticals, Inc. Pharmaceutical composition comprising an exendin-4 peptide
US5783556A (en) 1996-08-13 1998-07-21 Genentech, Inc. Formulated insulin-containing composition
US6268343B1 (en) 1996-08-30 2001-07-31 Novo Nordisk A/S Derivatives of GLP-1 analogs
HU227021B1 (en) 1996-08-30 2010-05-28 Novo Nordisk As Glp-1 derivatives
US6384016B1 (en) 1998-03-13 2002-05-07 Novo Nordisk A/S Stabilized aqueous peptide solutions
US6277819B1 (en) 1996-08-30 2001-08-21 Eli Lilly And Company Use of GLP-1 or analogs in treatment of myocardial infarction
US6006753A (en) 1996-08-30 1999-12-28 Eli Lilly And Company Use of GLP-1 or analogs to abolish catabolic changes after surgery
UA65549C2 (en) 1996-11-05 2004-04-15 Елі Ліллі Енд Компані Use of glucagon-like peptides such as glp-1, glp-1 analog, or glp-1 derivative in methods and compositions for reducing body weight
DK1629849T4 (en) 1997-01-07 2017-12-04 Amylin Pharmaceuticals Llc Pharmaceutical compositions comprising exedins and agonists thereof
US7312196B2 (en) 1997-01-08 2007-12-25 Amylin Pharmaceuticals, Inc. Formulations for amylin agonist peptides
AU5850798A (en) 1997-02-05 1998-08-26 1149336 Ontario Inc. Polynucleotides encoding proexendin, and methods and uses thereof
US5846937A (en) 1997-03-03 1998-12-08 1149336 Ontario Inc. Method of using exendin and GLP-1 to affect the central nervous system
BR9808285A (en) 1997-03-20 2000-05-16 Novo Nordisk As Zinc-free insulin crystals, therapeutic powder formulation, process for preparing zinc-free insulin crystals, use of zinc-free crystals, and process for the treatment of diabetes mellitus
US6310038B1 (en) 1997-03-20 2001-10-30 Novo Nordisk A/S Pulmonary insulin crystals
US6043214A (en) 1997-03-20 2000-03-28 Novo Nordisk A/S Method for producing powder formulation comprising an insulin
ZA984697B (en) 1997-06-13 1999-12-01 Lilly Co Eli Stable insulin formulations.
DE69810481T2 (en) 1997-06-13 2003-09-25 Genentech Inc STABILIZED ANTIBODY FORMULATION
DE19726167B4 (en) 1997-06-20 2008-01-24 Sanofi-Aventis Deutschland Gmbh Insulin, process for its preparation and pharmaceutical preparation containing it
EP1019077B2 (en) 1997-08-08 2010-12-22 Amylin Pharmaceuticals, Inc. Novel exendin agonist compounds
DE19735711C2 (en) 1997-08-18 2001-04-26 Aventis Pharma Gmbh Process for the preparation of a precursor to insulin or insulin derivatives with correctly linked cystine bridges
US6444641B1 (en) 1997-10-24 2002-09-03 Eli Lilly Company Fatty acid-acylated insulin analogs
AU1111799A (en) 1997-10-24 1999-05-17 Eli Lilly And Company Fatty acid-acylated insulin analogs
ZA989744B (en) 1997-10-31 2000-04-26 Lilly Co Eli Method for administering acylated insulin.
CA2309955A1 (en) 1997-11-12 1999-05-20 Alza Corporation Method for decreasing self-association of polypeptides
EP1066314B1 (en) 1997-11-14 2007-12-26 Amylin Pharmaceuticals, Inc. Novel exendin agonist compounds
EP1032587B2 (en) 1997-11-14 2013-03-13 Amylin Pharmaceuticals, Inc. Novel exendin agonist compounds
CA2312190A1 (en) 1997-12-05 1999-06-17 Eli Lilly And Company Glp-1 formulations
US5981964A (en) 1997-12-22 1999-11-09 Bruce J. McAuley Adjustable X-ray shield and on-line dosimetry system using same
AU1870099A (en) 1998-01-09 1999-07-26 Novo Nordisk A/S Stabilised insulin compositions
ATE366115T1 (en) 1998-02-13 2007-07-15 Amylin Pharmaceuticals Inc INOTROPIC AND DIURETIC EFFECTS OF EXENDIN AND GLP-1
IL137904A0 (en) 1998-02-23 2001-10-31 Neurocrine Biosciences Inc Peptide analogues of insulin and pharmaceutical compositions containing the same
AU3247799A (en) 1998-02-27 1999-09-15 Novo Nordisk A/S Glp-1 derivatives of glp-1 and exendin with protracted profile of action
CA2321026A1 (en) 1998-03-09 1999-09-16 Zealand Pharmaceuticals A/S Pharmacologically active peptide conjugates having a reduced tendency towards enzymatic hydrolysis
CA2334222C (en) 1998-06-05 2010-02-09 Technion Research And Development Foundation Ltd. Insulin supplemented infant formula
JP2002526554A (en) 1998-10-07 2002-08-20 メディカル カレッジ オブ ジョージア リサーチ インスティチュート,インコーポレイテッド Glucose-dependent insulin-affinity peptide used as bone-affinity hormone
US6284725B1 (en) 1998-10-08 2001-09-04 Bionebraska, Inc. Metabolic intervention with GLP-1 to improve the function of ischemic and reperfused tissue
IL142011A0 (en) 1998-10-16 2002-03-10 Novo Nordisk As Stable concentrated insulin preparations for pulmonary delivery
US6211144B1 (en) 1998-10-16 2001-04-03 Novo Nordisk A/S Stable concentrated insulin preparations for pulmonary delivery
ATE216258T1 (en) 1998-10-16 2002-05-15 Novo Nordisk As INSULIN PREPARATIONS CONTAINING METHANOL FOR PULMONARY ADMINISTRATION
WO2000029013A1 (en) 1998-11-18 2000-05-25 Novo Nordisk A/S Stable aqueous insulin preparations without phenol and cresol
US6489292B1 (en) 1998-11-18 2002-12-03 Novo Nordisk A/S Stable aqueous insulin preparations without phenol and cresol
US6902744B1 (en) 1999-01-14 2005-06-07 Amylin Pharmaceuticals, Inc. Exendin agonist formulations and methods of administration thereof
DE19908041A1 (en) 1999-02-24 2000-08-31 Hoecker Hartwig Covalently bridged insulin dimers
US6248363B1 (en) 1999-11-23 2001-06-19 Lipocine, Inc. Solid carriers for improved delivery of active ingredients in pharmaceutical compositions
JP2007204498A (en) 1999-03-01 2007-08-16 Chugai Pharmaceut Co Ltd Long-term stabilized formulations
JP2000247903A (en) 1999-03-01 2000-09-12 Chugai Pharmaceut Co Ltd Long-term stabilized pharmaceutical preparation
US6227819B1 (en) 1999-03-29 2001-05-08 Walbro Corporation Fuel pumping assembly
US6271241B1 (en) 1999-04-02 2001-08-07 Neurogen Corporation Cycloalkyl and aryl fused aminoalkyl-imidazole derivatives: modulators and GLP-1 receptors
EP1175443A1 (en) 1999-04-30 2002-01-30 Amylin Pharmaceuticals, Inc. Modified exendins and exendin agonists
ES2209885T3 (en) 1999-05-17 2004-07-01 Conjuchem, Inc. LONG-TERM INSULINOTROPIC PEPTIDES.
WO2000074736A1 (en) 1999-06-04 2000-12-14 Delrx Pharmaceutical Corporation Formulations comprising dehydrated particles of pharmaceutical agents and process for preparing the same
US6344180B1 (en) 1999-06-15 2002-02-05 Bionebraska, Inc. GLP-1 as a diagnostic test to determine β-cell function and the presence of the condition of IGT and type II diabetes
CA2369839A1 (en) 1999-06-25 2001-01-04 Minimed, Inc. Compositions of insulin and insulin-related peptide for treating diabetes
US6309663B1 (en) 1999-08-17 2001-10-30 Lipocine Inc. Triglyceride-free compositions and methods for enhanced absorption of hydrophilic therapeutic agents
DE19930631A1 (en) 1999-07-02 2001-01-11 Clemens Micheler Spraying device for injecting at least two liquid therapeutic agents, in particular insulin
EP1076066A1 (en) 1999-07-12 2001-02-14 Zealand Pharmaceuticals A/S Peptides for lowering blood glucose levels
US6528486B1 (en) 1999-07-12 2003-03-04 Zealand Pharma A/S Peptide agonists of GLP-1 activity
AU7984200A (en) 1999-09-21 2001-04-24 Skyepharma Canada Inc. Surface modified particulate compositions of biologically active substances
DE19947456A1 (en) 1999-10-02 2001-04-05 Aventis Pharma Gmbh New synthetic derivatives of the C-peptide of proinsulin, useful in the preparation of human insulin or insulin analogs in high yield
HU0800692D0 (en) 1999-10-04 2009-01-28 Novartis Vaccines & Diagnostic Stabilized liquid polypeptide-containing pharmaceutical compositions
US6720001B2 (en) 1999-10-18 2004-04-13 Lipocine, Inc. Emulsion compositions for polyfunctional active ingredients
EP1229918B1 (en) 1999-11-03 2008-03-26 Bristol-Myers Squibb Company Pharmaceutical composition comprising a combination of metformin and glibenclamide
EP1523993A1 (en) 1999-12-16 2005-04-20 Eli Lilly & Company Polypeptide compositions with improved stability
EP1242121B1 (en) 1999-12-16 2005-02-09 Eli Lilly And Company Polypeptide compositions with improved stability
US7022674B2 (en) 1999-12-16 2006-04-04 Eli Lilly And Company Polypeptide compositions with improved stability
US20010012829A1 (en) 2000-01-11 2001-08-09 Keith Anderson Transepithelial delivery GLP-1 derivatives
WO2001051071A2 (en) 2000-01-11 2001-07-19 Novo Nordisk A/S Transepithelial delivery of glp-1 derivatives
AU2001220765A1 (en) 2000-01-24 2001-07-31 Medtronic Minimed, Inc. Mixed buffer system for stabilizing polypeptide formulations
JP3540240B2 (en) 2000-03-10 2004-07-07 株式会社栗本鐵工所 Inspection jig for mixing and kneading blades
US6395767B2 (en) * 2000-03-10 2002-05-28 Bristol-Myers Squibb Company Cyclopropyl-fused pyrrolidine-based inhibitors of dipeptidyl peptidase IV and method
WO2001093837A2 (en) 2000-06-08 2001-12-13 Eli Lilly And Company Protein powder for pulmonary delivery
US6689353B1 (en) * 2000-06-28 2004-02-10 Bayer Pharmaceuticals Corporation Stabilized interleukin 2
EP1970072A1 (en) 2000-09-18 2008-09-17 Sanos Bioscience A/S Use of GLP-2 peptides for the treatment of hyperparathyroidism
KR100508695B1 (en) 2001-02-13 2005-08-17 한국과학기술연구원 Formulation for oral delivery of insulin and preparation method thereof
US7060675B2 (en) 2001-02-15 2006-06-13 Nobex Corporation Methods of treating diabetes mellitus
DE10108211A1 (en) 2001-02-20 2002-08-22 Aventis Pharma Gmbh Use of fusion proteins, the N-terminal portion of which consists of a hirudin derivative, for the production of recombinant proteins via secretion by yeast
DE10108212A1 (en) 2001-02-20 2002-08-22 Aventis Pharma Gmbh Fusion protein for the secretion of valuable protein in bacterial supernatants
DE10108100A1 (en) 2001-02-20 2002-08-29 Aventis Pharma Gmbh Use of super-secretable peptides in processes for their preparation and parallel improvement of the export of one or more other polypeptides of interest
US6852694B2 (en) * 2001-02-21 2005-02-08 Medtronic Minimed, Inc. Stabilized insulin formulations
WO2002067868A2 (en) 2001-02-26 2002-09-06 Millennium Pharmaceuticals, Inc. Methods for the treatment of metabolic disorders, including obesity and diabetes
DE10114178A1 (en) 2001-03-23 2002-10-10 Aventis Pharma Gmbh Zinc-free and low-zinc insulin preparations with improved stability
JP4855640B2 (en) 2001-04-02 2012-01-18 ノヴォ ノルディスク アー/エス Insulin precursor and preparation method thereof
CN1160122C (en) 2001-04-20 2004-08-04 清华大学 Method of preparing oil-phase oral insulin preparation
US20030026872A1 (en) 2001-05-11 2003-02-06 The Procter & Gamble Co. Compositions having enhanced aqueous solubility and methods of their preparation
AU2002318159A1 (en) 2001-06-29 2003-03-03 The Regents Of The University Of California Biodegradable/bioactive nucleus pulposus implant and method for treating degenerated intervertebral discs
FR2827604B1 (en) 2001-07-17 2003-09-19 Sanofi Synthelabo NOVEL 1-PHENYLSULFONYL-1,3-DIHYDRO-2H-INDOL-2- ONE DERIVATIVES, A PROCESS FOR THEIR PREPARATION AND PHARMACEUTICAL COMPOSITIONS CONTAINING THEM
EP1411968B1 (en) 2001-07-31 2008-09-17 THE GOVERNMENT OF THE UNITED STATES OF AMERICA, as represented by THE SECRETARY, DEPARTMENT OF HEALTH AND HUMAN SERVICES Glp-1 exendin-4 peptide analogs and uses thereof
US7238663B2 (en) 2001-08-28 2007-07-03 Eli Lilly And Company Pre-mixes of GLP-1 and basal insulin
US20050123509A1 (en) 2001-10-19 2005-06-09 Lehrman S. R. Modulating charge density to produce improvements in the characteristics of spray-dried proteins
WO2003035051A2 (en) 2001-10-19 2003-05-01 Inhale Therapeutic Systems, Inc. The use of proton sequestering agents in drug formulations
EP1448786B1 (en) 2001-11-19 2010-04-14 Novo Nordisk A/S Process for preparing insulin compounds
US20030170691A1 (en) 2001-12-19 2003-09-11 Millennium Pharmaceuticals, Inc. Human diacylglycerol acyltransferase 2 (DGAT2) family members and uses therefor
CA2468100A1 (en) 2001-12-20 2003-07-03 Eli Lilly And Company Insulin molecule having protracted time action
CA2470511C (en) 2001-12-21 2014-05-27 Novo Nordisk Health Care Ag Liquid composition of factor vii polypeptides
US8058233B2 (en) 2002-01-10 2011-11-15 Oregon Health And Science University Modification of feeding behavior using PYY and GLP-1
WO2003066084A1 (en) 2002-02-07 2003-08-14 Novo Nordisk A/S Use of glp-1 compound for treatment of critically ill patients
US20100069293A1 (en) 2002-02-27 2010-03-18 Pharmain Corporation Polymeric carrier compositions for delivery of active agents, methods of making and using the same
TWI351278B (en) 2002-03-01 2011-11-01 Nisshin Pharma Inc Agent for preventing and treating of liver disease
AU2003236201A1 (en) 2002-05-07 2003-11-11 Novo Nordisk A/S Soluble formulations comprising monomeric insulin and acylated insulin
WO2003094951A1 (en) 2002-05-07 2003-11-20 Novo Nordisk A/S Soluble formulations comprising insulin aspart and insulin detemir
WO2003097812A2 (en) 2002-05-17 2003-11-27 Hematech, Llc Transgenic ungulates capable of human antibody production
US7115563B2 (en) 2002-05-29 2006-10-03 Insignion Holding Limited Composition and its therapeutic use
DE10227232A1 (en) 2002-06-18 2004-01-15 Aventis Pharma Deutschland Gmbh Sour insulin preparations with improved stability
ATE432289T1 (en) 2002-07-04 2009-06-15 Zealand Pharma As GLP-1 AND TREATMENT METHOD FOR DIABETES
DE10235168A1 (en) 2002-08-01 2004-02-12 Aventis Pharma Deutschland Gmbh Process for the purification of preproinsulin
MXPA05003346A (en) 2002-09-27 2005-11-23 Martek Biosciences Corp Docohexaenoic acid for improved glycemic control.
AU2003268621B2 (en) 2002-10-02 2009-01-15 Zealand Pharma A/S Stabilized exendin-4 compounds
AU2003280117B2 (en) 2002-11-20 2009-09-10 Newron Sweden Ab Compounds and methods for increasing neurogenesis
US20050209142A1 (en) 2002-11-20 2005-09-22 Goran Bertilsson Compounds and methods for increasing neurogenesis
US6969702B2 (en) 2002-11-20 2005-11-29 Neuronova Ab Compounds and methods for increasing neurogenesis
CN1413582A (en) 2002-11-29 2003-04-30 贵州圣济堂制药有限公司 Dimethyldiguanide hydrochloride enteric solubility tablet and its preparation method
EP1569682A2 (en) 2002-12-03 2005-09-07 Novo Nordisk A/S Combination treatment using exendin-4 and thiazolidinediones
GB0309154D0 (en) 2003-01-14 2003-05-28 Aventis Pharma Inc Use of insulin glargine to reduce or prevent cardiovascular events in patients being treated for dysglycemia
GB0304822D0 (en) 2003-03-03 2003-04-09 Dca Internat Ltd Improvements in and relating to a pen-type injector
US20040234615A1 (en) 2003-03-04 2004-11-25 The Technology Development Company Ltd. Oral insulin composition and methods of making and using thereof
MXPA05009565A (en) 2003-03-11 2005-12-02 Novo Nordisk As Pharmaceutical preparations comprising acid-stabilised insulin.
US20040186046A1 (en) 2003-03-17 2004-09-23 Pfizer Inc Treatment of type 1 diabetes with PDE5 inhibitors
KR20050121748A (en) 2003-04-29 2005-12-27 일라이 릴리 앤드 캄파니 Insulin analogs having protracted time action
MXPA05013048A (en) 2003-06-03 2006-03-02 Novo Nordisk As Stabilized pharmaceutical peptide compositions.
DE10325567B4 (en) 2003-06-05 2008-03-13 Mavig Gmbh Radiation protection arrangement with separable enclosure
JP2007504167A (en) 2003-08-29 2007-03-01 セントカー・インコーポレーテツド Methods for improving graft survival using anti-tissue factor antibodies
JP5518282B2 (en) 2003-09-01 2014-06-11 ノヴォ ノルディスク アー/エス Stable peptide formulation
WO2005023291A2 (en) 2003-09-11 2005-03-17 Novo Nordisk A/S Use of glp1-agonists in the treatment of patients with type i diabetes
JP2007537981A (en) * 2003-09-19 2007-12-27 ノボ ノルディスク アクティーゼルスカブ Novel plasma protein affinity tag
EP1684793B1 (en) 2003-11-13 2011-09-21 Novo Nordisk A/S Pharmaceutical composition comprising an insulinotropic glp-1(7-37) analogue, asp(b28)-insulin, and a surfactant
US20060287221A1 (en) 2003-11-13 2006-12-21 Novo Nordisk A/S Soluble pharmaceutical compositions for parenteral administration comprising a GLP-1 peptide and an insulin peptide of short time action for treatment of diabetes and bulimia
WO2005048950A2 (en) 2003-11-17 2005-06-02 Biomune, Inc. Tumor and infectious disease therapeutic compositions
WO2005061222A1 (en) 2003-12-22 2005-07-07 Novo Nordisk A/S Transparent, flexible, impermeable plastic container for storage of pharmaceutical liquids
US20060210614A1 (en) 2003-12-26 2006-09-21 Nastech Pharmaceutical Company Inc. Method of treatment of a metabolic disease using intranasal administration of exendin peptide
EP1701714A2 (en) 2004-01-07 2006-09-20 Nektar Therapeutics Improved sustained release compositions for pulmonary administration of insulin
US20070027063A1 (en) 2004-01-12 2007-02-01 Mannkind Corporation Method of preserving the function of insulin-producing cells
US20080248999A1 (en) 2007-04-04 2008-10-09 Biodel Inc. Amylin formulations
US20080090753A1 (en) 2004-03-12 2008-04-17 Biodel, Inc. Rapid Acting Injectable Insulin Compositions
CA2563379A1 (en) 2004-03-31 2005-10-20 Centocor, Inc. Human glp-1 mimetibodies, compositions, methods and uses
JP5000493B2 (en) 2004-05-20 2012-08-15 ディアメディカ インコーポレイテッド Pharmaceutical composition for treating insulin resistance, method of using bethanechol and N-acetylcysteine in the preparation of said pharmaceutical composition and kit comprising said pharmaceutical composition
US7858082B2 (en) 2004-06-01 2010-12-28 Ares Trading S.A. Method of stabilizing proteins
CA2570637A1 (en) 2004-06-24 2006-02-02 Wenqing Yao N-substituted piperidines and their use as pharmaceuticals
WO2006000567A2 (en) 2004-06-28 2006-01-05 Novo Nordisk A/S Use of glp-1 receptor agonists and / or dpp-iv inhibitors in combination with proton pump inhibitors and ppar agonists for the preparation of a medicament for the treatment of diabetes type i i and impaired pancreatic beta-cell function
CA2569381A1 (en) 2004-07-21 2006-08-31 Ambrx, Inc. Biosynthetic polypeptides utilizing non-naturally encoded amino acids
ES2309785T3 (en) 2004-08-13 2008-12-16 F. Hoffmann-La Roche Ag MODIFICATION C-TERMINAL OF POLYPEPTIDES.
DE102004043153B4 (en) 2004-09-03 2013-11-21 Philipps-Universität Marburg Invention relating to GLP-1 and exendin
US20060073213A1 (en) 2004-09-15 2006-04-06 Hotamisligil Gokhan S Reducing ER stress in the treatment of obesity and diabetes
JP2008513384A (en) 2004-09-17 2008-05-01 ノボ ノルディスク アクティーゼルスカブ Pharmaceutical composition containing insulin and insulinotropic peptide
JP2006137678A (en) 2004-11-10 2006-06-01 Shionogi & Co Ltd Interleukin-2 composition
WO2006051103A2 (en) 2004-11-12 2006-05-18 Novo Nordisk A/S Stable formulations of peptides
PL1817048T3 (en) 2004-11-12 2014-07-31 Novo Nordisk As Stable formulations of insulinoptropic peptides
DE102004058306A1 (en) 2004-12-01 2006-07-27 Sanofi-Aventis Deutschland Gmbh Process for the preparation of carboxy-terminally amidated peptides
SE0402976L (en) 2004-12-03 2006-06-04 Mederio Ag Medical product
WO2007046834A2 (en) 2004-12-22 2007-04-26 Centocor, Inc. Glp-1 agonists, compositions, methods and uses
US7879361B2 (en) 2005-01-04 2011-02-01 Gp Medical, Inc. Nanoparticles for drug delivery
US7957939B2 (en) 2005-02-01 2011-06-07 Canberra Industries, Inc. Maximum entropy signal detection method
US20090142338A1 (en) 2005-03-04 2009-06-04 Curedm, Inc. Methods and Compositions for Treating Type 1 and Type 2 Diabetes Mellitus and Related Conditions
ATE509634T1 (en) 2005-04-08 2011-06-15 Amylin Pharmaceuticals Inc PHARMACEUTICAL FORMULATIONS CONTAINING INCRETIN PEPTIDE AND APROTIC-POLAR SOLVENT
JP5235661B2 (en) * 2005-05-25 2013-07-10 ノボ・ノルデイスク・エー/エス Stabilized polypeptide preparation
CA2609810C (en) * 2005-06-06 2012-05-22 Camurus Ab Glp-1 analogue formulations
CN102036662B (en) 2005-06-27 2013-02-27 新树股份有限公司 Method for preventing and treating conditions mediated by PPAR using macelignan
WO2007006307A2 (en) 2005-07-07 2007-01-18 Aditech Pharma Ab Novel salts of fumaric acid monoalkylesters and their pharmaceutical use
EP2347762B1 (en) 2005-08-19 2019-05-08 Amylin Pharmaceuticals, LLC Exendin for treating diabetes and reducing body weight
US20090181887A1 (en) 2005-09-08 2009-07-16 Gastrotech Pharma A/S Use of a glp-1 molecule for treatment of biliary dyskinesia and/or biliary pain/discomfort
CN101253196B (en) 2005-09-14 2012-09-05 塞诺菲-安万特德国有限公司 Cleavage of precursors of insulins by a variant of trypsin
EP1928499B1 (en) 2005-09-20 2011-06-29 Novartis AG Use of a dpp-iv inhibitor to reduce hypoglycemic events
US20070078510A1 (en) 2005-09-26 2007-04-05 Ryan Timothy R Prosthetic cardiac and venous valves
KR101105871B1 (en) 2005-09-27 2012-01-16 주식회사 엘지생명과학 hFSF Aqueous Formulation
DE102005046113A1 (en) 2005-09-27 2007-03-29 Sanofi-Aventis Deutschland Gmbh Preparation of C-amidated peptides, useful as pharmaceuticals, by reaction between precursor peptides in presence of enzyme with activity of trypsin, also new reaction products
US8084420B2 (en) 2005-09-29 2011-12-27 Biodel Inc. Rapid acting and long acting insulin combination formulations
US20090264732A1 (en) 2005-10-11 2009-10-22 Huntington Medical Research Institutes Imaging agents and methods of use thereof
ATE518430T1 (en) 2005-10-24 2011-08-15 Nestec Sa CRUDE FIBER FORMULATION AND METHOD FOR ADMINISTRATION THEREOF
AU2005338631B2 (en) 2005-11-30 2011-12-01 Generex Pharmaceuticals Inc. Orally absorbed pharmaceutical formulation and method of administration
US20100029558A1 (en) 2005-12-06 2010-02-04 Bristow Cynthia L Alpha1 proteinase inhibitor peptides methods and use
EP2364735A3 (en) 2005-12-16 2012-04-11 Nektar Therapeutics Branched PEG conjugates of GLP-1
RU2008132149A (en) 2006-01-05 2010-02-10 Юниверсити Оф Юта Рисерч Фаундейшн (Us) METHODS AND COMPOSITIONS RELATING TO THE IMPROVED PROPERTIES OF PHARMACOLOGICAL MEANS, DIRECTLY ACCORDING TO THE NERVOUS SYSTEM
US8343914B2 (en) 2006-01-06 2013-01-01 Case Western Reserve University Fibrillation resistant proteins
WO2007082381A1 (en) 2006-01-20 2007-07-26 Diamedica Inc. Compositions containing (s)-bethanechol and their use in the treatment of insulin resistance, type 2 diabetes, glucose intolerance and related disorders
US20070191271A1 (en) * 2006-02-10 2007-08-16 Dow Pharmaceutical Sciences Method for stabilizing polypeptides lacking methionine
EP1986674A4 (en) 2006-02-13 2009-11-11 Nektar Therapeutics Methionine-containing protein or peptide compositions and methods of making and using
US7763582B2 (en) 2006-02-21 2010-07-27 University Of Medicine And Dentistry Of New Jersey Localized insulin delivery for bone healing
JP5312054B2 (en) 2006-03-15 2013-10-09 ノボ・ノルデイスク・エー/エス Mixture of amylin and insulin
TW200806317A (en) 2006-03-20 2008-02-01 Wyeth Corp Methods for reducing protein aggregation
JP2009532422A (en) * 2006-04-03 2009-09-10 ノボ・ノルデイスク・エー/エス GLP-1 peptide agonist
CN101454019A (en) 2006-04-12 2009-06-10 百达尔公司 Rapid acting and long acting insulin combination formulations
CA2648440A1 (en) * 2006-04-13 2007-10-25 Societe De Conseils De Recherches Et D'applications Scientifiques S.A.S. . Pharmaceutical compositions of hglp-1, exendin-4 and analogs thereof
US20090099064A1 (en) 2006-06-08 2009-04-16 Diabecore Medical Inc., Derivatized insulin oligomers
DE102006031962A1 (en) 2006-07-11 2008-01-17 Sanofi-Aventis Deutschland Gmbh Amidated insulin glargine
EP2076242B8 (en) 2006-07-27 2013-02-20 Nektar Therapeutics Aerosolizable formulation comprising insulin for pulmonary delivery
AU2007284365A1 (en) 2006-08-17 2008-02-21 Amylin Pharmaceuticals, Inc. DPP-IV resistant GIP hybrid polypeptides with selectable properties
US20090318353A1 (en) 2006-08-25 2009-12-24 Novo Nordisk A/S Acylated Exendin-4 Compounds
EA200900392A1 (en) 2006-09-07 2010-06-30 Никомед Гмбх COMBINED TREATMENT OF DIABETES MELLITUS
EP2074141B1 (en) 2006-09-22 2016-08-10 Novo Nordisk A/S Protease resistant insulin analogues
MX2009011123A (en) 2007-04-23 2009-11-02 Intarcia Therapeutics Inc Suspension formulations of insulinotropic peptides and uses thereof.
WO2008145323A1 (en) 2007-05-31 2008-12-04 F. Hoffmann-La Roche Ag Pharmaceutical formulation for interferons
EP2167169B2 (en) 2007-06-14 2016-03-09 Sanofi-Aventis Deutschland GmbH Double chamber cartridges with attachment
EP2155303A1 (en) 2007-06-14 2010-02-24 Sanofi-Aventis Deutschland GmbH Dual-chamber carpule
WO2009004627A2 (en) 2007-07-02 2009-01-08 Medingo Ltd. A device for drug delivery
WO2009008873A1 (en) 2007-07-06 2009-01-15 Basf Corporation A gastroretentive composition on the basis of a water-soluble reaction product from a vinyl group- containing precursor
AU2008287063B2 (en) 2007-08-09 2013-10-24 Genzyme Corporation Method of treating autoimmune disease with mesenchymal stem cells
US8575096B2 (en) 2007-08-13 2013-11-05 Novo Nordisk A/S Rapid acting insulin analogues
CN101366692A (en) * 2007-08-15 2009-02-18 江苏豪森药业股份有限公司 Stable Exenatide formulation
GB0717399D0 (en) 2007-09-07 2007-10-17 Uutech Ltd Use of GLP-1 analogues for the treatment of disorders associated with dysfunctional synaptic transmission
GB0717388D0 (en) 2007-09-07 2007-10-17 Uutech Ltd Use of GIP for the treatment of disorders associated with dysfunctional synaptic transmission
CA2699035A1 (en) 2007-09-11 2009-04-02 Mondobiotech Laboratories Ag Use of insulin c-peptide, alone or in combination with glp-1, as a therapeutic agent
CN101842083B (en) 2007-11-01 2012-11-14 默克雪兰诺有限公司 LH liquid formulations
CN101932601B (en) 2007-11-08 2016-08-03 诺沃-诺迪斯克有限公司 Insulin derivates
HUE030383T2 (en) 2007-11-16 2017-05-29 Novo Nordisk As Stable pharmaceutical compositions comprising liraglutide and degludec
CN101444618B (en) 2007-11-26 2012-06-13 杭州九源基因工程有限公司 Pharmaceutical preparation containing exenatide
CN102026666B (en) 2007-12-11 2013-10-16 常山凯捷健生物药物研发(河北)有限公司 Formulation of insulinotropic peptide conjugates
CA2711561A1 (en) 2008-01-04 2009-07-16 Biodel, Inc. Insulin formulations for insulin release as a function of tissue glucose levels
DE102008003566A1 (en) 2008-01-09 2009-07-16 Sanofi-Aventis Deutschland Gmbh New insulin analogs useful for treating diabetes
DE102008003568A1 (en) 2008-01-09 2009-07-16 Sanofi-Aventis Deutschland Gmbh New insulin analogs useful for treating diabetes
CN102007143B (en) 2008-01-09 2015-08-26 塞诺菲-安万特德国有限公司 There is the novel insulin derivates of super delayed aging feature
JP5695909B2 (en) 2008-01-09 2015-04-08 サノフィ−アベンティス・ドイチュラント・ゲゼルシャフト・ミット・ベシュレンクテル・ハフツング Novel insulin derivatives with extremely delayed time action profiles
ATE523209T1 (en) * 2008-02-08 2011-09-15 Biogenerix Ag LIQUID FORMULATION OF FSH
DK2240155T3 (en) * 2008-02-13 2012-09-17 Intarcia Therapeutics Inc Devices, formulations and methods for the delivery of several beneficial agents
MY161892A (en) 2008-02-19 2017-05-15 Biocon Ltd A method of obtaining a purified, biologically active heterologous protein
TWI394580B (en) 2008-04-28 2013-05-01 Halozyme Inc Super fast-acting insulin compositions
EP2288918A1 (en) 2008-05-23 2011-03-02 Amylin Pharmaceuticals, Inc. Glp-1 receptor agonist bioassays
TWI451876B (en) 2008-06-13 2014-09-11 Lilly Co Eli Pegylated insulin lispro compounds
EP4074327A1 (en) 2008-06-27 2022-10-19 Duke University Therapeutic agents comprising elastin-like peptides
DK2346551T3 (en) 2008-08-30 2021-03-01 Sanofi Aventis Deutschland CYLINDER CAMPLE AND CANYLES SYSTEM FOR THIS
US20100069292A1 (en) 2008-09-02 2010-03-18 Biodel, Inc. Insulin with a basal release profile
JP5705115B2 (en) 2008-09-10 2015-04-22 ジェネンテック, インコーポレイテッド Compositions and methods for prevention of oxidative degradation of proteins
CN101670096B (en) 2008-09-11 2013-01-16 杭州九源基因工程有限公司 Medicinal preparation containing exenatide
JP5643762B2 (en) * 2008-10-15 2014-12-17 インターシア セラピューティクス,インコーポレイティド High concentration drug particles, formulations, suspensions and their use
DE102008053048A1 (en) 2008-10-24 2010-04-29 Sanofi-Aventis Deutschland Gmbh Medicament, useful e.g. for treating diabetes, controlling fasting, postprandial or postabsorptive blood glucose concentration in diabetic patients and improving glucose tolerance, comprises insulin and glucagon-like peptide-1 agonist
CN102202683A (en) 2008-10-30 2011-09-28 诺沃-诺迪斯克有限公司 Treating diabetes melitus using insulin injections with less than daily injection frequency
JP2009091363A (en) 2008-11-21 2009-04-30 Asahi Kasei Pharma Kk Stabilized aqueous injectable solution of pth
AU2010210181B2 (en) 2009-02-04 2015-01-22 Sanofi-Aventis Deutschland Gmbh Medical device and method for providing information for glycemic control
AU2010212823B2 (en) 2009-02-13 2016-01-28 Boehringer Ingelheim International Gmbh Antidiabetic medications comprising a DPP-4 inhibitor (linagliptin) optionally in combination with other antidiabetics
US20120231022A1 (en) 2009-05-28 2012-09-13 Amylin Pharmaceuticals, Inc. Glp-1 receptor agonist compounds for sleep enhancement
KR101852328B1 (en) 2009-07-06 2018-04-26 사노피-아벤티스 도이칠란트 게엠베하 Aqueous insulin preparations containing methionine
EP2451471A1 (en) 2009-07-06 2012-05-16 Sanofi-Aventis Deutschland GmbH Slow-acting insulin preparations
WO2011003820A1 (en) 2009-07-06 2011-01-13 Sanofi-Aventis Deutschland Gmbh Heat- and vibration-stable insulin preparations
US8709400B2 (en) 2009-07-27 2014-04-29 Washington University Inducement of organogenetic tolerance for pancreatic xenotransplant
UA108475C2 (en) 2009-07-31 2015-05-12 Санофі-Авентіс Дойчланд Гмбх Long-acting insulin composition
WO2011017554A2 (en) 2009-08-07 2011-02-10 Mannkind Corporation Val (8) glp-1 composition and method for treating functional dyspepsia and/or irritable bowel syndrome
AR078161A1 (en) 2009-09-11 2011-10-19 Hoffmann La Roche VERY CONCENTRATED PHARMACEUTICAL FORMULATIONS OF AN ANTIBODY ANTI CD20. USE OF THE FORMULATION. TREATMENT METHOD
PL2324853T3 (en) 2009-11-13 2016-01-29 Sanofi Aventis Deutschland Lixisenatide as add-on to metformin in the treatment of diabetes type 2
PT3345593T (en) 2009-11-13 2023-11-27 Sanofi Aventis Deutschland Pharmaceutical composition comprising despro36exendin-4(1-39)-lys6-nh2 and methionine
US20110118180A1 (en) 2009-11-13 2011-05-19 Sanofi-Aventis Deutschland Gmbh Method of treatment of diabetes type 2 comprising add-on therapy to metformin
ES2855146T3 (en) 2009-11-13 2021-09-23 Sanofi Aventis Deutschland Pharmaceutical composition comprising a GLP-1 agonist, an insulin and methionine
PL2329848T5 (en) 2009-11-13 2019-12-31 Sanofi-Aventis Deutschland Gmbh Lixisenatide as add-on therapy to insulin glargine and metformin for treating type 2 diabetes
US20110118178A1 (en) 2009-11-13 2011-05-19 Sanofi-Aventis Deutschland Gmbh Method of treatment of diabetes type 2 comprising add-on therapy to insulin glargine and metformin
CN102933200B (en) 2009-12-18 2015-11-25 莱迪杜德制药公司 Comprise the single-phase gels compositions of phospholipid
EP2460527A1 (en) 2010-01-21 2012-06-06 Sanofi Pharmaceutical composition for treating a metabolic syndrome
EA201201164A1 (en) 2010-02-22 2013-04-30 Кейз Вестерн Ризев Юнивесити PREPARATIONS ON THE BASIS OF ANALOGUES OF INSULIN OF PROLONGED ACTION IN SOLUBLE AND CRYSTALLINE FORMS
AR081066A1 (en) 2010-04-02 2012-06-06 Hanmi Holdings Co Ltd INSULIN CONJUGATE WHERE AN IMMUNOGLOBULIN FRAGMENT IS USED
TW201141513A (en) 2010-04-14 2011-12-01 Sanofi Aventis Insulin-siRNA conjugates
US8637458B2 (en) 2010-05-12 2014-01-28 Biodel Inc. Insulin with a stable basal release profile
AU2011202239C1 (en) 2010-05-19 2017-03-16 Sanofi Long-acting formulations of insulins
WO2011144674A2 (en) 2010-05-20 2011-11-24 Sanofi-Aventis Deutschland Gmbh PHARMACEUTICAL FORMULATION COMPRISING INSULIN GLARGINE AND SBE4-ß-CYD
EP2389945A1 (en) 2010-05-28 2011-11-30 Sanofi-Aventis Deutschland GmbH Pharmaceutical composition comprising AVE0010 and insulin glargine
WO2011160066A1 (en) 2010-06-17 2011-12-22 Regents Of The University Of Minnesota Production of insulin producing cells
US8532933B2 (en) 2010-06-18 2013-09-10 Roche Diagnostics Operations, Inc. Insulin optimization systems and testing methods with adjusted exit criterion accounting for system noise associated with biomarkers
US20130137645A1 (en) 2010-07-19 2013-05-30 Mary S. Rosendahl Modified peptides and proteins
HUE031181T2 (en) 2010-08-30 2017-06-28 Sanofi Aventis Deutschland Use of ave0010 for the manufacture of a medicament for the treatment of diabetes mellitus type 2
CA2815419A1 (en) 2010-10-27 2012-05-03 Novo Nordisk A/S Treating diabetes melitus using insulin injections administered with varying injection intervals
WO2012065996A1 (en) 2010-11-15 2012-05-24 Sanofi-Aventis Deutschland Gmbh PHARMACEUTICAL FORMULATION COMPRISING INSULIN GLARGINE AND MALTOSYL-ß-CYCLODEXTRIN
WO2012066086A1 (en) 2010-11-17 2012-05-24 Sanofi-Aventis Deutschland Gmbh PHARMACEUTICAL FORMULATION COMPRISING INSULIN GLARGINE AND SULFOBUTYL ETHER 7-ß-CYCLODEXTRIN
EP2651432A1 (en) 2010-12-14 2013-10-23 Novo Nordisk A/S Fast-acting insulin in combination with long-acting insulin
CN103458919A (en) 2011-02-02 2013-12-18 赛诺菲-安万特德国有限公司 Prevention of hypoglycaemia in diabetes mellitus type 2 patients
FI3556774T3 (en) 2011-03-11 2024-03-15 Beth Israel Deaconess Medical Ct Inc Anti-cd40 antibodies and uses thereof
US20120277147A1 (en) 2011-03-29 2012-11-01 Sanofi-Aventis Deutschland Gmbh Prevention of hypoglycaemia in diabetes mellitus type 2 patients
US9821032B2 (en) 2011-05-13 2017-11-21 Sanofi-Aventis Deutschland Gmbh Pharmaceutical combination for improving glycemic control as add-on therapy to basal insulin
AU2012257849B2 (en) 2011-05-13 2017-03-30 Sanofi-Aventis Deutschland Gmbh Lixisenatide and metformin for treatment of diabetes type 2
US8735349B2 (en) 2011-05-13 2014-05-27 Sanofi-Aventis Deutschland Gmbh Method for improving glucose tolerance in a diabetes type 2 patient of younger than 50 years and having postprandial plasma glucose concentration of at least 14 mmol/L
US20130040878A1 (en) 2011-05-13 2013-02-14 Sanofi-Aventis Deutschland Gmbh Pharmaceutical combination for use in the treatment of diabetes type 2 patients
JP2014520159A (en) 2011-06-24 2014-08-21 アミリン・ファーマシューティカルズ,リミテッド・ライアビリティ・カンパニー Method for treating diabetes with sustained-release preparation of GLP-1 receptor agonist
CN103917241A (en) 2011-08-29 2014-07-09 赛诺菲-安万特德国有限公司 Pharmaceutical combination for use in glycemic control in diabetes type 2 patients
AR087744A1 (en) 2011-09-01 2014-04-16 Sanofi Aventis Deutschland PHARMACEUTICAL COMPOSITION FOR USE IN THE TREATMENT OF A NEURODEGENERATIVE DISEASE
HUE028568T2 (en) 2011-10-04 2016-12-28 Sanofi Aventis Deutschland Lixisenatide for use in the treatment of stenosis or/and obstruction in the pancreatic duct system
EP2763691A1 (en) 2011-10-04 2014-08-13 Sanofi-Aventis Deutschland GmbH Glp-1 agonist for use in the treatment of stenosis or/and obstruction in the biliary tract
EP2771024B1 (en) 2011-10-28 2018-11-28 Sanofi-Aventis Deutschland GmbH Treatment protocol of diabetes type 2
US8901484B2 (en) 2012-04-27 2014-12-02 Sanofi-Aventis Deutschland Gmbh Quantification of impurities for release testing of peptide products
US9522235B2 (en) 2012-05-22 2016-12-20 Kaleo, Inc. Devices and methods for delivering medicaments from a multi-chamber container
AR092862A1 (en) 2012-07-25 2015-05-06 Hanmi Pharm Ind Co Ltd LIQUID FORMULATION OF PROLONGED ACTION INSULIN AND AN INSULINOTROPIC PEPTIDE AND PREPARATION METHOD
TWI780236B (en) 2013-02-04 2022-10-11 法商賽諾菲公司 Stabilized pharmaceutical formulations of insulin analogues and/or insulin derivatives
GB201303771D0 (en) 2013-03-04 2013-04-17 Midatech Ltd Nanoparticles peptide compositions
SG11201509781YA (en) 2013-06-17 2015-12-30 Sanofi Aventis Deutschland Insulin glargine/lixisenatide fixed ratio formulation
TW201605489A (en) 2013-10-25 2016-02-16 賽諾菲公司 Stable formulation of INSULIN GLULISINE

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5358708A (en) * 1993-01-29 1994-10-25 Schering Corporation Stabilization of protein formulations
WO2010043566A2 (en) * 2008-10-17 2010-04-22 Sanofi-Aventis Deutschland Gmbh Combination of an insulin and a glp-1 agonist

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180200370A1 (en) * 2009-11-13 2018-07-19 Sanofi-Aventis Deutschland Gmbh Pharmaceutical Composition Comprising a GLP-1 Agonist, an Insulin and Methionine

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