EP2061563A2 - Mousse de nuançage - Google Patents

Mousse de nuançage

Info

Publication number
EP2061563A2
EP2061563A2 EP07788305A EP07788305A EP2061563A2 EP 2061563 A2 EP2061563 A2 EP 2061563A2 EP 07788305 A EP07788305 A EP 07788305A EP 07788305 A EP07788305 A EP 07788305A EP 2061563 A2 EP2061563 A2 EP 2061563A2
Authority
EP
European Patent Office
Prior art keywords
acid
amino
product according
copolymer
cationic
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP07788305A
Other languages
German (de)
English (en)
Inventor
Astrid Kleen
Stephan Schwartz
Susanne Bietz
Maureen Rippe
Sabrina Zirwen
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Henkel AG and Co KGaA
Original Assignee
Henkel AG and Co KGaA
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Henkel AG and Co KGaA filed Critical Henkel AG and Co KGaA
Publication of EP2061563A2 publication Critical patent/EP2061563A2/fr
Withdrawn legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61QSPECIFIC USE OF COSMETICS OR SIMILAR TOILETRY PREPARATIONS
    • A61Q5/00Preparations for care of the hair
    • A61Q5/06Preparations for styling the hair, e.g. by temporary shaping or colouring
    • A61Q5/065Preparations for temporary colouring the hair, e.g. direct dyes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K8/00Cosmetics or similar toiletry preparations
    • A61K8/02Cosmetics or similar toiletry preparations characterised by special physical form
    • A61K8/04Dispersions; Emulsions
    • A61K8/046Aerosols; Foams
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K8/00Cosmetics or similar toiletry preparations
    • A61K8/18Cosmetics or similar toiletry preparations characterised by the composition
    • A61K8/30Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
    • A61K8/46Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing sulfur
    • A61K8/466Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing sulfur containing sulfonic acid derivatives; Salts
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K8/00Cosmetics or similar toiletry preparations
    • A61K8/18Cosmetics or similar toiletry preparations characterised by the composition
    • A61K8/72Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds
    • A61K8/73Polysaccharides
    • A61K8/731Cellulose; Quaternized cellulose derivatives
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K8/00Cosmetics or similar toiletry preparations
    • A61K8/18Cosmetics or similar toiletry preparations characterised by the composition
    • A61K8/72Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds
    • A61K8/81Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds obtained by reactions involving only carbon-to-carbon unsaturated bonds
    • A61K8/817Compositions of homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by a single or double bond to nitrogen or by a heterocyclic ring containing nitrogen; Compositions or derivatives of such polymers, e.g. vinylimidazol, vinylcaprolactame, allylamines (Polyquaternium 6)
    • A61K8/8182Copolymers of vinyl-pyrrolidones. Compositions of derivatives of such polymers
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K2800/00Properties of cosmetic compositions or active ingredients thereof or formulation aids used therein and process related aspects
    • A61K2800/40Chemical, physico-chemical or functional or structural properties of particular ingredients
    • A61K2800/59Mixtures
    • A61K2800/594Mixtures of polymers

Definitions

  • the present invention relates to aerosol foam or pump foam products for the simultaneous dyeing or tinting and temporary deformation of keratinous fibers comprising a foamable or foamable composition containing at least one film-forming and / or setting polymer and at least one anionic substantive dye.
  • all animal hair e.g. Wool, horsehair, angora hair, furs, feathers and products or textiles made from them.
  • the keratinic fibers are human hairs.
  • Corresponding agents usually contain synthetic polymers as the shaping component, so-called substantive dyes as color-altering substances. These are dye molecules that grow directly on the hair and do not require an oxidative process to form the color. These dyes include, for example, the henna already known from antiquity for coloring body and hair.
  • DE 196 51 482 C1 discloses strengthening agents for dyeing and tinting human hair which contain at least one nonionic polymer, optionally mixed with a cationic polymer, and at least one anionic surfactant.
  • the compositions also contain substantive dyes, all conventional, physiologically harmless, substantive dyes are used. According to claim 4 preferably cationic dyes are used.
  • DE 201 00 857 U1 describes gel-like hair dyes containing at least one substantive dye, at least one long-chain quaternary ammonium compound, at least one cationic polymer, at least one nonionic and / or amphoteric or zwitterionic polymer, 15 to 50 wt .-% of at least one lower alcohol and Contain water, and have a certain viscosity.
  • direct dyes all known cationic dyes can be used. Also, the use of substantive plant dyes or anionic dyes is mentioned as possible.
  • the present invention therefore relates to an aerosol foam or pump foam product for the treatment of keratinic fibers, comprising a foam-like or foamable composition comprising, in a cosmetically acceptable carrier a) at least one film-forming and / or setting polymer, and b) at least one anionic substantive dye.
  • anionic substantive dyes are distinguished by a particularly high stability in cosmetically acceptable carriers, as are customarily used for formulating foam-like or foamable compositions. Even in the presence of cationic ingredients both the dyes, as well as the composition remain stable per se.
  • the products according to the invention comprise at least one film-forming and / or setting polymer.
  • the product of the invention contains the film-forming and / or setting polymer usually in an amount of 0.1 to 20 wt .-%, based on the total foam-like or foamable composition, preferably in an amount of 0.5 to 15 wt .-%, particularly preferably from 1 to 10 wt .-%.
  • the total amount of film-forming and / or setting polymers is preferably at most 30% by weight, based on the total foam-formable or foamable composition.
  • film-forming and / or setting polymers may be both permanent and temporary cationic, anionic, nonionic or amphoteric.
  • they may have different charges.
  • an ionic film-forming and / or setting polymer may be used together with an amphoteric and / or nonionic film-forming and / or setting polymer.
  • the use of at least two oppositely charged film-forming and / or setting polymers is also preferred. In the latter case, a particular embodiment may in turn additionally contain at least one further amphoteric and / or nonionic film-forming and / or setting polymer.
  • Film-forming polymers are polymers which leave a continuous film on the skin, the hair or the nails when drying.
  • Such film formers can be used in a wide variety of cosmetic products, such as for example face masks, make-up, hair fixatives, hair sprays, hair gels, hair waxes, hair treatments, shampoos or nail varnishes.
  • Particular preference is given to those polymers which have sufficient solubility in alcohol or water / alcohol mixtures in order to be present in completely completely dissolved form in the agent according to the invention.
  • the film-forming polymers may be of synthetic or natural origin.
  • film-forming polymers are understood as meaning polymers which, when used in 0.01 to 20% strength by weight aqueous, alcoholic or aqueous-alcoholic solution, are capable of depositing a transparent polymer film on the hair.
  • the film-forming polymers may be anionic, amphoteric, nonionic, permanent cationic or temporarily cationically charged.
  • Suitable synthetic, film-forming, hair-fixing polymers are homopolymers or copolymers which are composed of at least one of the following monomers: vinylpyrrolidone, vinylcaprolactam, vinyl esters such as vinyl acetate, vinyl alcohol, acrylamide, methacrylamide, alkyl and dialkylacrylamide, alkyl and dialkylmethacrylamide, alkyl acrylate, Alkyl methacrylate, propylene glycol or ethylene glycol, wherein the alkyl groups of these monomers are preferably C r to C 7 alkyl groups, particularly preferably C 1 to C 3 alkyl groups.
  • Examples include homopolymers of vinylcaprolactam, vinylpyrrolidone or N-vinylformamide.
  • Further suitable synthetic film-forming, hair-fixing polymers are copolymers of vinyl pyrrolidone and vinyl acetate, terpolymers of vinylpyrrolidone, vinyl acetate and vinyl propionate, polyacrylamides, for example, under the trade designations Akypomine ® P 191 by the company CHEM-Y, Emmerich or Sepigel ® 305 by the company Seppic be distributed; Polyvinyl alcohols, which are marketed under the trade names Elvanol.RTM ® from DuPont or Vinol ® 523/540 by Air Products as well as polyethylene glycol / polypropylene glycol copolymers, for example, Ucon ® Union Carbide sold under the trade names.
  • Suitable natural film-forming polymers include cellulose derivatives, eg. B. hydroxypropyl cellulose having a molecular weight of 30,000 to 50,000 g / mol, which is sold for example under the trade name Nisso Sl ® from Lehmann & Voss, Hamburg.
  • Firming polymers contribute to the maintenance and / or build-up of the hair volume and hair fullness of the overall hairstyle.
  • These so-called setting polymers are at the same time film-forming polymers and therefore generally typical substances for shaping hair treatment compositions such as hair fixatives, hair foams, hair waxes, hair sprays.
  • the film formation can be quite selective and connect only a few fibers.
  • Substances which further impart hydrophobic properties to the hair are preferred because they reduce the tendency of the hair to absorb moisture, that is, water. As a result, the limp drooping of the strands of hair is reduced, thus ensuring a long-lasting hairstyle structure and preservation.
  • the test method for this is often the so-called curl retention test applied.
  • These polymeric substances can also be successfully incorporated into leave-on and rinse-off hair treatments or shampoos. Since polymers are often multifunctional, that is, show several applications-wise desirable effects, numerous polymers can be found in several groups on the mode of action, as well as in the CTFA Handbook. Because of the importance of polymers in particular, they should therefore be listed explicitly in the form of their INCI names.
  • foam-like or foamable composition contains at least one nonionic film-forming and / or setting polymer.
  • the nonionic film-forming and / or setting polymer is a homo- or copolymer of vinylpyrrolidone, particularly preferably polyvinylpyrrolidone and / or a vinylpyrrolidine-vinyl acetate copolymer.
  • the foam-like or foamable composition comprises at least one cationic film-forming and / or setting polymer.
  • the cationic film-forming and / or setting polymer is a quaternized homo- or copolymer of dimethyldiallylammonium chloride or a copolymer of vinylpyrrolidone with at least one further monomer which optionally contains at least one cationic group after quaternization.
  • the foam-like or foamable compositions particularly preferably contain at least one nonionic and at least one cationic film-forming and / or setting polymer.
  • the products according to the invention contain at least one substantive dye.
  • Direct dyes are usually nitrophenylenediamines, nitroaminophenols, azo dyes, anthraquinones or indophenols.
  • the substantive dyes are preferably used in an amount of 0.001 to 20 wt .-%, based on the foam-like or foamable compositions, ie in the amount of an optionally present proportion of blowing agent in the product according to the invention is disregarded.
  • the total amount of substantive dyes is preferably at most 20 wt .-%, based on the foam-like or foamable compositions.
  • At least one anionic substantive dye is used.
  • all anionic substantive dyes known and permitted for hair dyes are suitable, in particular 6-hydroxy-5 - [(4-sulfophenyl) azo] -2-naphthalenesulfonic acid disodium salt (CI 15.985, Food Yellow No. 3, FD & C Yellow No. 6 2,4-dinitro-1-naphthol-7-sulfonic acid disodium salt (Cl 10,316, Acid Yellow 1, Food Yellow No. 1), 2- (indan-1, 3-dione-2-yl) quinoline x, x-sulfonic acid (mixture of mono- and disulfonic acid) (Cl 47,005, D & C Yellow No. 10, Food Yellow No.
  • Acid Red 51 N- [6- (diethylamino) -9- (2,4-disulfophenyl) -3H-xanthen-3-ylidene] -N-ethylethanammonium hydroxide, inner salt, sodium salt (CI 45, 100; Acid Red 52), 8 - [(4- (phenylazo) phenyl) azo] -7-naphthol-1,3-disulphonic acid disodium salt (CI 27,290; Acid Red 73), 2 ', 4', 5 ', 7'- Tetrabromo-3 ', 6'-dihydroxyspiro [isobenzofuran-1 (3H), 9' - [9H] xanthene] -3-one disodium salt (Cl.45, 380; Acid Red 87), 2 ', 4', 5 ', 7'-tetrabromo-4,5,6,7-tetrachloro-3 ', 6'-di
  • Acid Red 95 2-hydroxy-3 - ((2-hydroxynaphth-1-yl) azo) -5-nitrobenzenesulfonic acid, sodium salt
  • Acid Red 184 3-hydroxy-4- (3-methyl-5-oxo-1-phenyl-4,5-dihydro-1H-pyrazol-4-ylazo) -naphthalene-1-sulfonic acid sodium salt, chromium complex (Acid Red 195), 3-hydroxy-4 - [(4-methyl-2-sulfonphenyazoj-naphthalenecarboxylic acid calcium salt (Cl 15.850: 1, Pigment Red 57: 1), 3- [(2 , 4-Dimethyl-5-sulfophenyl) azo] -4-hydroxy-1-naphthalenesulfonic acid disodium salt (Cl 14.700, Food Red No.
  • Acid Blue 1 bis [4- (diethylamino) phenyl] (5-hydroxy-2,4-disulfophenyl) carbenium inner salt, calcium salt (2: 1) (CI 42,051, Acid Blue 3), N- [ 4 - [(2,4-Disulfophenyl) [4- [ethyl (phenylmethyl) amino) phenyl] methylene] -2,5-cyclohexadiene-1-ylidene] -N-ethylbenzene methanaminium hydroxide, inner salt, sodium salt (CI 42,080 Acid Blue 7), (2-sulfophenyl) di [4- (ethyl ((4-sulfophenyl) methyl) amino) phenyl] -carbenium disodium salt
  • Betaine (CI 42,090, Acid Blue 9, FD & C Blue No. 1), 1-amino-4- (phenylamino) -9,10-anthraquinone-2-sulfonic acid (CI 62,055, Acid Blue 25), i-amino ⁇ ⁇ cyclohexylamino ⁇ ⁇ .iO-anthraquinone ⁇ -sulfonic acid sodium salt (CI 62045; Acid Blue 62), 2- (1,3-dihydro-3-oxo-5-sulfo-2H-indol-2-ylidene) -2 , 3-dihydro-3-oxo-1H-indole-5-sulfonic acid disodium salt (Cl.
  • the products according to the invention preferably comprise at least one anionic substantive dye selected from blue or violet dyes, more preferably selected from bis [4- (diethylamino) phenyl] (2,4-disulfophenyl) carbenium inner salt, sodium salt (2: 1) (CI 42.045, Food Blue No.
  • Acid Blue 1 bis [4- (diethylamino) phenyl] (5-hydroxy-2,4-disulfophenyl) carbenium inner salt, calcium salt (2: 1) (Cl Acid Blue 3), N- [4 - [(2,4-disulfophenyl) [4- [ethyl (phenylmethyl) amino) phenyl] methylene] -2,5-cyclohexadiene-1-ylidene] -N-ethylbenzenemethanamine hydroxide, inner salt, sodium salt (CI 42.080, Acid Blue 7), (2-sulfophenyl) di [4- (ethyl ((4-sulfophenyl) methyl) amino) phenyl] -carbenium disodium salt
  • Betaine (CI 42,090, Acid Blue 9, FD & C Blue No. 1), 1-amino-4- (phenylamino) -9,10-anthraquinone-2-sulfonic acid (CI 62,055, Acid Blue 25), 1-amino 4- (cyclohexylamino) -9,10-anthraquinone-2- sulfonic acid sodium salt (CI 62045; Acid Blue 62), 2- (1,3-dihydro-3-oxo-5-sulfo-2H-indol-2-ylidene) -2,3-dihydro-3-oxo-1 H-indole-5-sulfonic acid disodium salt (CI 73,015, Acid Blue 74), 9- (2-carboxyphenyl) -3 - [(2-methylphenyl) amino] -6 - [(2-methyl-4-sulfophenyl) amino] xanthylium inner salt, sodium salt (Cl.45,
  • the products according to the invention particularly preferably comprise at least one anionic substantive dye selected from (2-sulfophenyl) di [4- (ethyl ((4-sulfophenyl) methyl) -amino) -phenyl] -carbenium dinatrium salt betaine (CI 42,090, Acid Blue 9 FD & C Blue No.
  • the products according to the invention very particularly preferably comprise the anionic substantive dye 1-hydroxy-4 - [(4-methyl-2-sulfophenyl) amino] -9,10-anthraquinone sodium salt (CI 60,730, D & C Violet No. 2, Acid Violet 43).
  • blue or violet dyeing dyes allows dyeing, which are characterized in particular by a neutral color direction.
  • At least one anionic substantive dye In addition to at least one anionic substantive dye, at least one cationic substantive dye is preferably used, again in principle all known and approved dyes being suitable for hair dyes.
  • Suitable are about 9- (dimethylamino) -benzo [a] phenoxazine-7-ium chloride (CI 51, 175; Basic Blue 6), di [4- (diethylamino) phenyl] [4- (ethylamino) naphthyl] carbenium chloride (CI 42,595; Basic Blue 7), di (4- (dimethylamino) phenyl) - (4- (methylphenylamino) -naphthalen-1-yl) carbenium chloride (CI 42,563, Basic Blue 8).
  • aromatic systems substituted with a quaternary nitrogen group such as Basic Yellow 57, Basic Red 76, Basic Blue 99, Basic Brown 16 and Basic Brown 17, as well as
  • Preferred cationic substantive dyes of group (c) are in particular the following compounds:
  • the compounds of the formulas (DZ1), (DZ3) and (DZ5) which are also known by the names Basic Yellow 87, Basic Orange 31 and Basic Red 51, are very particularly preferred cationic substantive dyes of group (c).
  • the cationic direct dyes which are sold under the trademark Arianor ®, according to the invention are also very particularly preferred cationic direct dyes.
  • the products according to the invention may furthermore also contain nonionic substantive dyes.
  • Particularly suitable are nitro dyes, quinone dyes and neutral azo dyes.
  • Suitable blue nitro dyes are in particular:
  • Suitable yellow nitro dyes are in particular:
  • 1,2-diamino-4-nitrobenzene (CI 76,020), 1 - [(2-hydroxyethyl) amino] -2-nitrobenzene (HC Yellow 2), 1- (2-hydroxyethoxy) -2 - [(2-hydroxyethyl ) amino] -5-nitrobenzene (HC Yellow 4), 1-amino-2 - [(2-hydroxyethyl) amino] -5-nitrobenzene (HC Yellow 5), 4 - [(2,3-dihydroxypropyl) amino] 3-nitro-1-trifluoromethylbenzene (HC Yellow 6), 2- [di (2-hydroxyethyl) amino] -5-nitrophenol, 2 - [(2-hydroxyethyl) amino] -1-methoxy-5-nitrobenzene , 2-amino-3-nitrophenol, 2-amino-4-nitrophenol, 1-amino-2-methyl-6-nitrobenzene, 1- (2-hydroxyethoxy) -3-methylamino-4-nitrobenzene, 2,3-
  • Suitable quinone dyes are in particular:
  • Suitable neutral azo dyes are in particular:
  • Preferred nonionic substantive dyes are those under the international designations or trade names HC Yellow 2, HC Yellow 4, HC Yellow 5, HC Yellow 6, HC Yellow 12, HC Orange 1, Disperse Orange 3, HC Red 1, HC Red 3, HC HC Red 11, HC Red 11, HC Red 11, HC Blue 11, HC Blue 2, HC Blue 11, HC Blue 12, Disperse Blue 3, HC Violet 1, Disperse Violet 1, Disperse Violet 4, Disperse Black 9 well-known compounds, as well 1, 4-diamino-2-nitrobenzene, 2-amino-4-nitrophenol, 1,4-bis (2-hydroxyethyl) amino-2-nitrobenzene, 3-nitro-4- (2-hydroxyethyl) aminophenol, 2- (2-hydroxyethyl) amino-4,6-dinitrophenol, 4 - [(2-hydroxyethyl) amino] -3-nitro-1-methylbenzene, 1-amino-4- (2-hydroxyethyl) amino-5- chloro-2-nitrobenzene, 4-amino-3-nitrophenol, 1-
  • nonionic substantive dyes in particular corresponding nitro dyes may, depending on the other constituents of the products of the invention give rise to problems with respect to the stability of the dyes or the respective products.
  • the nonionic direct dyes must therefore be carefully matched to the respective product.
  • the products of the invention contain no blue nitro dyes.
  • Particularly preferred are products in which the addition of nitro dyes is omitted altogether.
  • Very particular preference is given to products which contain exclusively anionic and optionally cationic substantive dyes as substantive dyes.
  • the substantive dyes each represent uniform compounds. Rather, in the inventive compositions, due to the production process for the individual dyes, minor amounts of other components may be included, as far as they do not adversely affect the dyeing result or for other reasons, e.g. toxicological, must be excluded.
  • the products according to the invention may also contain naturally occurring dyes such as red, henna neutral, henna black, chamomile flower, sandalwood, black tea, buckthorn bark, sage, sawnwood, madder root, catechu, sedre and alkano root.
  • naturally occurring dyes such as red, henna neutral, henna black, chamomile flower, sandalwood, black tea, buckthorn bark, sage, sawnwood, madder root, catechu, sedre and alkano root.
  • the products may contain at least one precursor of a naturally-analogous dye.
  • a naturally-analogous dye such indoles and indolines are preferably used which have at least one hydroxy or amino group, preferably as a substituent on the six-membered ring. These groups may carry further substituents, e.g. Example in the form of etherification or esterification of the hydroxy group or alkylation of the amino group.
  • Particularly suitable precursors of natural-analogous hair dyes are derivatives of 5,6-dihydroxyindoline of the formula (NAV I),
  • G- I9 is hydrogen, a C 1 -C 4 -alkyl group or a C 1 -C 4 -hydroxy-alkyl group
  • G 2O is hydrogen or a -COOH group, where the -COOH group may also be in the form of a salt with a physiologically compatible cation
  • G 2 i is hydrogen or a C 1 -C 4 -alkyl group
  • - G 22 is hydrogen, a C-
  • G 23 is one of the groups mentioned under G 22 , and physiologically acceptable salts of these compounds with an organic or inorganic acid.
  • Particularly preferred derivatives of indoline are 5,6-dihydroxyindoline, N-methyl-5,6-dihydroxyindoline, N-ethyl-5,6-dihydroxyindoline, N-propyl-5,6-dihydroxyindoline, N-butyl-5,6 dihydroxyindoline, 5,6-dihydroxyindoline-2-carboxylic acid and 6-hydroxyindoline, 6-aminoindoline and 4-aminoindoline.
  • N-methyl-5,6-dihydroxyindoline N-ethyl-5,6-dihydroxyindoline, N-propyl-5,6-dihydroxyindoline, N-butyl-5,6-dihydroxyindoline and especially 5, 6-Dihydroxyindolin.
  • G 25 is hydrogen, a C 1 -C 4 -alkyl group or a C 1 -C 4 -hydroxyalkyl group,
  • G 26 is hydrogen or a -COOH group, where the -COOH group may also be present as a salt with a physiologically compatible cation,
  • G 27 is hydrogen or a C 1 -C 4 -alkyl group
  • G 28 is hydrogen, C- ⁇ -C 4 alkyl group or a group -CO-G 30 wherein G 30 represents a C-
  • G 29 represents one of the groups mentioned under G 28, and physiologically compatible salts of these compounds with an organic or inorganic acid.
  • Particularly preferred derivatives of indole are 5,6-dihydroxyindole, N-methyl-5,6-dihydroxyindole, N-ethyl-5,6-dihydroxyindole, N-propyl-5,6-dihydroxyindole, N-butyl-5,6- dihydroxyindole, 5,6-dihydroxyindole-2-carboxylic acid, 6-hydroxyindole, 6-aminoindole and 4-aminoindole.
  • N-methyl-5,6-dihydroxyindole N-ethyl-5,6-dihydroxyindole, N-propyl-5,6-dihydroxyindole, N-butyl-5,6-dihydroxyindole, and especially the 5,6 -Dihydroxyindol.
  • the indoline and indole derivatives can be used in the products of the invention both as free bases and in the form of their physiologically acceptable salts with inorganic or organic acids, for.
  • hydrochlorides sulfates and hydrobromides are used.
  • the indole or indoline derivatives are contained therein usually in amounts of 0.05-10 wt .-%, preferably 0.2-5 wt .-%.
  • the indoline or indole derivative in colorants in combination with at least one amino acid or an oligopeptide.
  • the amino acid is advantageously an ⁇ -amino acid;
  • Very particularly preferred ⁇ -amino acids are arginine, ornithine, lysine, serine and histidine, in particular arginine.
  • the film-forming and / or setting polymers and dyes are incorporated into a cosmetically acceptable carrier.
  • a cosmetically acceptable carrier It is preferably an aqueous, an alcoholic or an aqueous-alcoholic medium with preferably at least 10 percent by weight of water, based on the total foam-like or foamable composition.
  • alcohols it is possible in particular to include the lower alcohols having 1 to 4 carbon atoms usually used for cosmetic purposes, such as, for example, ethanol and isopropanol.
  • the cosmetically acceptable carrier is water.
  • additional co-solvents may be included organic solvents or a mixture of solvents having a boiling point below 400 0 C in an amount of 0.1 to 15 weight percent, preferably from 1 to 10 weight percent based on the total foam-like or foamable composition.
  • Particularly suitable as additional co-solvents are unbranched or branched hydrocarbons such as pentane, hexane, isopentane and cyclic hydrocarbons such as cyclopentane and cyclohexane.
  • particularly preferred water-soluble solvents are glycerol, ethylene glycol and propylene glycol in an amount of up to 30 percent by weight based on the total preparation.
  • the products according to the invention are aerosol foam or pump foam products based on a foam-like or foamable composition. It can be necessary to add to the compositions ingredients which promote foaming or stabilize foam once formed.
  • surfactants and / or emulsifiers are suitable for this purpose.
  • cationic surfactants which also have a nourishing effect in addition to foam-forming and foam-stabilizing properties.
  • Cationic surfactants of the quaternary ammonium compounds, esterquats and amidoamines type are preferred according to the invention.
  • Esterquats are known substances which contain both at least one ester function and at least one quaternary ammonium group as a structural element.
  • Preferred ester quats are quaternized ester salts of fatty acids with triethanolamine, quaternized ester salts of fatty acids with diethanolalkylamines and quaternized ester salts of fatty acids with 1,2-dihydroxypropyldialkylamines.
  • Such products are marketed under the trade names Stepantex® ®, ® and Dehyquart® Armocare® ®.
  • the alkylamidoamines are usually prepared by amidation of natural or synthetic fatty acids and fatty acid cuts with dialkylaminoamines.
  • An inventively particularly suitable compound from this group of substances under the name Tegoamid ® S 18 commercial stearamidopropyl dimethylamine is.
  • Particularly preferred cationic surfactants are the quaternary ammonium compounds.
  • the foamable or foamable composition further contains at least one quaternary ammonium compound.
  • Suitable quaternary ammonium compounds are, for example, ammonium halides, in particular chlorides and bromides, such as alkyltrimethylammonium chlorides, dialkyldimethylammonium chlorides and trialkylmethylammonium chlorides, eg. Cetyltrimethylammonium chloride, stearyltrimethylammonium chloride, distearyldimethylammonium chloride, lauryldimethylammonium chloride, lauryldimethylbenzylammonium chloride and tricetylmethylammonium chloride, as well as the imidazolium compounds known under the INCI names Quaternium-27 and Quaternium-83.
  • the long alkyl chains of the above-mentioned surfactants preferably have 10 to 18 carbon atoms.
  • the foam-like or foamable composition particularly preferably contains at least one quaternary ammonium compound of the formula (QI) in which
  • R 1 and R 2 each independently represent an optionally hydroxy-substituted C 1 -
  • n is an integer from 0 to 20 and
  • a ' is a monovalent anion.
  • the foamable or foamable composition contains at least one quaternary ammonium compound of the formula (QI) wherein R 1 and R 2 are methyl, m is 0, n is an integer from 9 to 17 and A 'is a monovalent anion.
  • the cationic surfactants are preferably present in the products according to the invention in amounts of from 0.05 to 10% by weight, based on the total foam-like or foamable composition. Amounts of 0.1 to 5 wt .-% are particularly preferred.
  • the foam-like or foamable preparations may contain other surfactants or emulsifiers, with both anionic and ampholytic and nonionic surfactants and all types of known emulsifiers being suitable in principle.
  • the group of ampholytic or amphoteric surfactants includes zwitterionic surfactants and ampholytes. The surfactants may already have emulsifying effect.
  • the foam-like or foamable preparations preferably contain at least one cationic surfactant.
  • the foam-like or foamable preparations contain exclusively cationic surfactants.
  • Suitable anionic surfactants are in principle all anionic surfactants suitable for use on the human body. These are characterized by a water-solubilizing, anionic group such as. As a carboxylate, sulfate, sulfonate or phosphate group and a lipophilic alkyl group having about 8 to 30 carbon atoms. In addition, glycol or polyglycol ether groups, ester, ether and amide groups and hydroxyl groups may be present in the molecule.
  • Sulfobernsteinklamono- and dialkyl ester having 8 to 24 carbon atoms in the alkyl group and sulfosuccinic monoalkylpolyoxyethylester having 8 to 24 carbon atoms in the alkyl group and 1 to 6 oxyethyl groups, linear alkanesulfonates having 8 to 24 carbon atoms, linear alpha-olefinsulfonates with 8 to 24 carbon atoms, alpha-sulfofatty acid methyl esters of fatty acids having 8 to 30 carbon atoms,
  • R 1 is preferably an aliphatic hydrocarbon radical having 8 to 30 carbon atoms
  • R 2 is hydrogen, a radical (CH 2 CH 2 O) n R 1 or X, n is from 1 to 10 and X is hydrogen, an alkali metal radical or alkaline earth metal or NR 3 R 4 R 5 R 6 , where R 3 to R 6 independently of one another represent hydrogen or a C 1 - to C 4 -hydrocarbon radical, is a sulfated fatty acid alkylene glycol ester of the formula (E 1-11)
  • R 7 CO- for a linear or branched, aliphatic, saturated and / or unsaturated acyl radical having 6 to 22 carbon atoms, Alk for CH 2 CH 2 , CHCH 3 CH 2 and / or CH 2 CHCH 3 , n for numbers from 0.5 to 5 and M is a cation, as described in DE-OS 197 36 906, Monoglyceride sulfates and monoglyceride ether sulfates of the formula (E1-III)
  • R 8 CO is a linear or branched acyl radical having 6 to 22 carbon atoms
  • x, y and z are in total 0 or numbers of 1 to 30, preferably 2 to 10
  • X is an alkali or alkaline earth metal.
  • monoglyceride (ether) sulfates suitable for the purposes of the invention are the reaction products of lauric acid monoglyceride, coconut fatty acid monoglyceride, palmitic acid monoglyceride, stearic acid monoglyceride, oleic acid monoglyceride and tallow fatty acid monoglyceride and their ethylene oxide adducts with sulfur trioxide or chlorosulfonic acid in the form of their sodium salts.
  • monoglyceride sulfates of the formula (E1-III) are used in which R 8 CO is a linear acyl radical having 8 to 18 carbon atoms, amide-ether carboxylic acids,
  • Condensation products of Cs - C 30 - fatty alcohols with protein hydrolysates and / or amino acids and their derivatives which are known to the skilled person as protein fatty acid condensates, such as Lamepon ® - types Gluadin ® - types Hostapon ® KCG or Amisoft ® - types.
  • Preferred anionic surfactants are alkyl sulfates, alkyl polyglycol ether sulfates and ether carboxylic acids having 10 to 18 C atoms in the alkyl group and up to 12 glycol ether groups in the molecule, sulfosuccinic acid mono- and dialkyl esters having 8 to 18 C atoms in the alkyl group and sulfosuccinic acid monoalkylpolyoxyethylester with 8 to 18 C atoms in the alkyl group and 1 to 6 Oxyethyl deficit, Monoglycerdisulfate, alkyl and Alkenyletherphosphate and E iwe issf etts u re e c e e sate.
  • Zwitterionic surfactants are those surface-active compounds which carry at least one quaternary ammonium group and at least one -COO () or -SO 3 () group in the molecule.
  • Particularly suitable zwitterionic surfactants are the so-called betaines, such as N-alkyl-N, N-dimethylammonium glycinates, for example cocoalkyldimethylammoniumglycinate, N-acylaminopropyl-N, N-dimethylammoniumglycinates, for example cocoacylaminopropyldimethylammoniumglycinate, and 2-alkyl-3-carboxymethyl-3-hydroxyethyl imidazolines having in each case 8 to 18 C atoms in the alkyl or acyl group and the cocoacylaminoethylhydroxyethylcarboxymethylglycinate.
  • a preferred zwitterionic surfactant is the fatty acid amide derivative known by the INCI name Cocamidopropyl Betaine.
  • Ampholytes are surface-active compounds which, in addition to a C - alkyl or acyl group are included in the molecule at least one free amino group and at least one -COOH or -SO3H group and are capable of forming inner salts - C 24th Examples of suitable ampholytes are N-alkylglycines, N-alkylpropionic acids, N-alkylaminobutyric acids, N-alkyliminodipropionic acids, N-hydroxyethyl-N-alkylamidopropylglycines, N-alkyltaurines, N-alkylsarcosines, 2-alkylaminopropionic acids and alkylaminoacetic acids each having about 8 to 24 C atoms in the alkyl group. Particularly preferred ampholytes are N-cocoalkylamino
  • Nonionic surfactants contain as hydrophilic group e.g. a polyol group, a polyalkylene glycol ether group, or a combination of polyol and polyglycol ether groups.
  • hydrophilic group e.g. a polyol group, a polyalkylene glycol ether group, or a combination of polyol and polyglycol ether groups.
  • Such compounds are, for example
  • alkylphenols having 8 to 15 carbon atoms in the alkyl group, such as those available under the trade names Dehydol ® LS, Dehydol ® LT types (Cognis), C 12 -C 3 o-fatty acid mono- and diesters of addition products of 1 up to 30 moles of ethylene oxide with glycerol,
  • R 1 CO is a linear or branched, saturated and / or unsaturated acyl radical having 6 to 22 carbon atoms
  • R 2 is hydrogen or methyl
  • R 3 is linear or branched alkyl radicals having 1 to 4 carbon atoms
  • w is a number from 1 to 20 stands
  • R 4 is an alkyl or alkenyl radical having 4 to 22 carbon atoms
  • G is a sugar radical having 5 or 6 carbon atoms
  • p is a number from 1 to 10. They can be obtained by the relevant methods of preparative organic chemistry.
  • the alkyl and alkenyl oligoglycosides can be derived from aldoses or ketoses with 5 or 6 carbon atoms, preferably glucose.
  • the preferred alkyl and / or alkenyl oligoglycosides are thus alkyl and / or alkenyl oligoglucosides.
  • the index number p in the general formula (E4-II) indicates the degree of oligomerization (DP), ie the distribution of mono- and oligoglycosides and stands for a number between 1 and 10.
  • the value p for a given alkyloligoglycoside is an analytically determined arithmetic quantity, which usually represents a fractional number. Preference is given to using alkyl and / or alkenyl oligoglycosides having an average degree of oligomerization p of from 1.1 to 3.0. From an application point of view, those alkyl and / or alkenyl oligoglycosides whose degree of oligomerization is less than 1.7 and in particular between 1.2 and 1.4 are preferred.
  • the alkyl or alkenyl radical R 4 can be derived from primary alcohols having 4 to 11, preferably 8 to 10 carbon atoms. Typical examples are butanol, caproic alcohol, caprylic alcohol, capric alcohol and undecyl alcohol and technical mixtures thereof, as obtained, for example, in the hydrogenation of technical fatty acid methyl esters or in the hydrogenation of aldehydes from Roelen's oxo synthesis.
  • the alkyl or alkenyl radical R 15 can also be derived from primary alcohols having 12 to 22, preferably 12 to 14 carbon atoms.
  • Typical examples are lauryl alcohol, myristyl alcohol, cetyl alcohol, palmoleyl alcohol, stearyl alcohol, isostearyl alcohol, oleyl alcohol, elaidyl alcohol, petroselinyl alcohol, arachyl alcohol, gadoleyl alcohol, behenyl alcohol, erucyl alcohol, brassidyl alcohol, and technical mixtures thereof which can be obtained as described above.
  • RXO-N- [Z] (E4-II R 5 is CO for an aliphatic acyl radical having 6 to 22 carbon atoms, R 6 is hydrogen, an alkyl or hydroxyalkyl radical having 1 to 4 carbon atoms and [Z] is a linear or branched polyhydroxyalkyl radical having 3 to 12 carbon atoms and 3 to 10 hydroxyl groups stands.
  • the fatty acid N-alkyl polyhydroxyalkylamides are known substances which can usually be obtained by reductive amination of a reducing sugar with ammonia, an alkylamine or an alkanolamine and subsequent acylation with a fatty acid, a fatty acid alkyl ester or a fatty acid chloride.
  • the fatty acid N-alkylpolyhydroxyalkylamides are preferably derived from reducing sugars having 5 or 6 carbon atoms, in particular from glucose.
  • the preferred fatty acid N-alkylpolyhydroxyalkylamides are therefore fatty acid N-alkylglucamides as represented by the formula (E4-IV):
  • the fatty acid N-alkylpolyhydroxyalkylamides used are preferably glucamides of the formula (E4-IV) in which R 8 is hydrogen or an alkyl group and R 7 is CO for the acyl radical of caproic acid, caprylic acid, capric acid, lauric acid, myristic acid, palmitic acid, palmitic acid, Stearic acid, isostearic acid, oleic acid, elaidic acid, petro-, linoleic acid, linolenic acid, arachidic acid, gadoleic acid, behenic acid or erucic acid or those technical mixtures.
  • R 8 is hydrogen or an alkyl group
  • R 7 is CO for the acyl radical of caproic acid, caprylic acid, capric acid, lauric acid, myristic acid, palmitic acid, palmitic acid, Stearic acid, isostearic acid, oleic acid, elaidic acid, petro-
  • fatty acid N-alkylglucamides of the formula (E4-IV) which are obtained by reductive amination of glucose with methylamine and subsequent acylation with lauric acid or C12 / 14 coconut fatty acid or a corresponding derivative.
  • the polyhydroxyalkylamides can also be derived from maltose and palatinose.
  • the preferred nonionic surfactants are the alkylene oxide addition products of saturated linear fatty alcohols and fatty acids having in each case 2 to 30 moles of ethylene oxide per mole of fatty alcohol or fatty acid. Preparations having excellent properties are also obtained if they contain fatty acid esters of ethoxylated glycerol as nonionic surfactants.
  • the alkyl radical R contains 6 to 22 carbon atoms and may be both linear and branched. Preference is given to primary linear and methyl-branched in the 2-position aliphatic radicals.
  • Such alkyl radicals are, for example, 1-octyl, 1-decyl, 1-lauryl, 1-myristyl, 1-cetyl and 1-stearyl. Particularly preferred are 1-octyl, 1-decyl, 1-lauryl, 1-myristyl.
  • sugar surfactants may be present as nonionic surfactants. These are preferably present in amounts of 0.1 to 20 wt .-%, based on the respective total composition. Amounts of 0.5 to 15 wt .-% are particularly preferred, and very particularly preferred amounts of from 0.5 to 7.5 wt.%.
  • the compounds used as surfactant with alkyl groups may each be uniform substances. However, it is generally preferred to use native vegetable or animal raw materials in the production of these substances, so that substance mixtures having different alkyl chain lengths depending on the respective raw material are obtained.
  • both products with a "normal” homolog distribution and those with a narrow homolog distribution can be used.
  • "normal” homolog distribution are meant mixtures of homologs obtained in the reaction of fatty alcohol and alkylene oxide using alkali metals, alkali metal hydroxides or alkali metal alcoholates as catalysts. Narrowed homolog distributions are obtained when, for example, hydrotalcites, alkaline earth metal salts of ether carboxylic acids, alkaline earth metal oxides, hydroxides or alkoxides are used as catalysts. The use of products with narrow homolog distribution may be preferred.
  • the other surfactants are generally in amounts of 0.1 to 45 wt .-%, preferably 0.5 to 30 wt .-% and most preferably from 0.5 to 25 wt .-%, based on the respective total Composition, used.
  • the foamable or foamable compositions may further contain at least one emulsifier.
  • Emulsifiers effect at the phase interface the formation of water- or oil-stable adsorption layers, which protect the dispersed droplets against coalescence and thus stabilize the emulsion.
  • Emulsifiers are therefore constructed like surfactants from a hydrophobic and a hydrophilic part of the molecule.
  • Hydrophilic emulsifiers preferably form O / W emulsions and hydrophobic emulsifiers preferably form W / O emulsions. The selection of these emulsifying surfactants or emulsifiers depends on the substances to be dispersed and the respective outer phase and the fineness of the emulsion.
  • Emulsifiers which can be used according to the invention are, for example Addition products of 4 to 100 moles of ethylene oxide and / or 1 to 5 moles of propylene oxide to linear fatty alcohols having 8 to 22 carbon atoms, to fatty acids having 12 to 22 carbon atoms and to alkylphenols having 8 to 15 carbon atoms in the alkyl group,
  • Glucosides mixtures of alkyl (oligo) and fatty alcohols for example, the commercially available product ® Montanov 68,
  • Sterols are understood to mean a group of steroids which have a hydroxyl group on C-atom 3 of the steroid skeleton and are isolated both from animal tissue (zoosterols) and from vegetable fats (phytosterols). Examples of zoosterols are cholesterol and lanosterol. Examples of suitable phytosterols are ergosterol, stigmasterol and sitosterol. Mushrooms and yeasts are also used to isolate sterols, the so-called mycosterols.
  • glucose phospholipids e.g. as lecithins or phosphatidylcholines from e.g. Egg yolk or plant seeds (e.g., soybeans) are understood.
  • Fatty acid esters of sugars and sugar alcohols such as sorbitol
  • Polyglycerols and polyglycerol derivatives such as polyglycerol poly-12-hydroxystearate (commercial product Dehymuls ® PGPH), linear and branched fatty acids having 8 to 30 C - atoms and their Na, K, ammonium, Ca, Mg and Zn - salts.
  • the emulsifiers are preferably used in amounts of 0.1 to 25 wt .-%, in particular 0.1 to 3 wt .-%, based on the respective total composition.
  • nonionic emulsifiers having an HLB value of 8 to 18, according to the methods described in the Römpp Lexikon Chemie (Hrg. J. Falbe, M. Regitz), 10th edition, Georg Thieme Verlag Stuttgart, New York, (1997), page 1764, listed definitions.
  • Nonionic emulsifiers with an HLB value of 10 to 16 are particularly preferred according to the invention.
  • the products according to the invention preferably have a pH of less than 7. Particularly preferred is the pH range between 5 and 6.5.
  • the pH values refer to the pH at 25 ° C, unless stated otherwise.
  • customary alkalizing agents or acidifying agents may be added to the products of the present invention to adjust the desired pH.
  • the products according to the invention can furthermore contain all other auxiliaries, additives and active substances customary for hair treatment agents.
  • the product according to the invention also contains at least one care substance.
  • this may be a cationic surfactant which on the one hand has a care effect and in addition can promote foaming and stabilize the resulting foam.
  • Cationic surfactants are therefore the preferred care ingredients.
  • protein hydrolysates and / or proteihydrolysate derivatives are also suitable as care substances.
  • Protein hydrolysates are product mixtures obtained by acid, alkaline or enzymatically catalyzed degradation of proteins (proteins).
  • the term protein hydrolyzates also means total hydrolyzates as well as individual amino acids and their derivatives as well as mixtures of different amino acids.
  • polymers made up of amino acids and amino acid derivatives are understood by the term protein hydrolyzates. The latter include, for example, polyalanine, polyasparagine, polyserine, etc.
  • Further examples of compounds which can be used according to the invention are L-alanyl-L-proline, polyglycine, glycyl-L-glutamine or D / L-methionine-S-methylsulfonium chloride.
  • ⁇ -amino acids and their derivatives such as ⁇ -alanine, anthranilic acid or hippuric acid can also be used.
  • the molecular weight of the protein hydrolysates which can be used according to the invention is between 75, the molecular weight for glycine, and 200,000, preferably the molecular weight is 75 to 50,000 and very particularly preferably 75 to 20,000 daltons.
  • protein hydrolysates of both vegetable and animal or marine or synthetic origin can be used.
  • Animal protein hydrolysates are, for example, elastin, collagen, keratin, silk and milk protein protein hydrolysates, which may also be present in the form of salts.
  • Such products are, for example, under the trademarks Dehylan ® (Cognis), Promois ® (Interorgana) Collapuron ® (Cognis), Nutrilan® ® (Cognis), Gelita-Sol ® (German Gelatinefabriken Stoess & Co), Lexein ® (Inolex), sericin (Pentapharm) and kerasol tm ® (Croda) sold.
  • silk protein hydrolysates By silk one understands the fibers of the cocoon of the mulberry silkworm (Bombyx mori L.).
  • the raw silk fiber consists of a double thread fibroin.
  • sericin holds this double thread together.
  • Silk consists of 70-80% by weight of fibroin, 19-28% by weight of sericin, 0.5-1% by weight of fat and 0.5-1% by weight of dyes and mineral constituents.
  • the essential components of sericin are with about 46 wt .-% Hydroxyamino acids.
  • the sericin consists of a group of 5 to 6 proteins.
  • the essential amino acids of the sericin are serine (Ser, 37% by weight), aspartate (Asp, 26% by weight), glycine (Gly, 17% by weight), alanine (Ala), leucine (Leu) and tyrosine (Tyr ).
  • the water-insoluble fibroin belongs to the skieroproteins with a long-chain molecular structure.
  • the main components of the fibroin are glycine (44% by weight), alanine (26% by weight), and tyrosine (13% by weight).
  • Another important structural feature of the fibroin is the hexapeptide sequence Ser-Gly-Ala-Gly-Ala-Gly.
  • an active substance complex consisting of the active substance (A1) selected from sericin, sericin hydrolysates and / or their derivatives, and mixtures thereof, and an active ingredient (A2) selected from fibroin, and / or Fibroinhydrolysaten and / or their derivatives and / or mixtures thereof.
  • the active ingredient complex (A) significantly synergistically improves the above-described essential internal and external structural features and the strength and elasticity of human hair.
  • active ingredients (A1) it is possible to use in the active ingredient complex (A): native sericin, hydrolyzed and / or further derivatized sericin, such as commercial products with the INCI names Sericin, Hydrolyzed Sericin, or Hydrolyzed SiIk, a mixture of the amino acids serine, aspartate and glycine and / or their methyl, propyl, iso-propyl, butyl, iso-butyl esters, their salts such as hydrochlorides, sulfates, acetates, citrates, tartrates, wherein in this mixture the serine and / or its derivatives to 20 to 60 wt .-%, the aspartate and / or its derivatives to 10 - 40 wt .-% and the glycine and / or its derivatives to 5 to 30 wt .-% are included, with the proviso that the amounts These amino acids and / or their derivatives preferably add to 100 wt
  • active ingredients (A2) can be used in the active ingredient complex (A): native, converted into a soluble form fibroin, hydrolyzed and / or further derivatized fibroin, especially partially hydrolyzed fibroin, which contains as its main constituent the amino acid sequence Ser-Gly-Ala-Gly-Ala Gly, the amino acid sequence Ser-Gly-Ala-Gly-Ala-Gly, a mixture of the amino acids glycine, alanine and tyrosine and / or their methyl, propyl, iso-propyl, butyl, iso-butyl esters, their salts such as hydrochlorides, sulfates, acetates, citrates, tartrates, wherein in this mixture, the glycine and / or its derivatives in amounts of 20- 60 wt .-%, the alanine and its derivatives in amounts of 10 to 40 wt .-% and the tyrosine and its derivatives are contained
  • the two active compounds (A1) and (A2) in the ratio of 10:90 to 70:30, in particular 15:85 to 50:50 and very particularly 20:80 to 40:60, based on their respective Contents of active substance in the products of the invention can be used.
  • the derivatives of sericin and fibroin hydrolysates include both anionic and cationized protein hydrolysates.
  • the protein hydrolyzates of sericin and fibroin and the derivatives prepared therefrom can be obtained from the corresponding proteins by chemical, in particular alkaline or acid hydrolysis, by enzymatic hydrolysis and / or a combination of both types of hydrolysis.
  • the hydrolysis of proteins usually results in a protein hydrolyzate having a molecular weight distribution of about 100 daltons up to several thousand daltons. Preference is given to those protein hydrolysates of sericin and fibroin and / or derivatives thereof, whose underlying protein content has a molecular weight of 100 to 25,000 daltons, preferably 250 to 10,000 daltons.
  • cationic protein hydrolysates of sericin and fibroin also mean quaternized amino acids and mixtures thereof.
  • the quaternization of the protein hydrolyzates or amino acids is often carried out using quaternary ammonium salts such as N, N-dimethyl-N- (n-alkyl) -N- (2-hydroxy-3-chloro-n-propyl) ammonium halides.
  • the cationic protein hydrolysates may also be further derivatized.
  • the cationic protein hydrolysates and derivatives which can be used according to the invention, those mentioned under the INCI names in the "International Cosmetic Ingredient Dictionary and Handbook", (seventh edition 1997, The Cosmetic, Toiletry, and Fragrance Association 1101 17 th Street, NW, Suite 300, Washington, DC 20036-4702) and commercially available products: Cocodimonium Hydroxypropyl Hydrolyzed Silica, Cocodimonium Hydroxypropyl Silica, Amino Acids, Hydroxyproypltrimonium Hydrolyzed Silica, Lauryldimonium Hydroxypropyl Hydrolyzed Silica, Steardimonium Hydroxypropyl Hydrolyzed Silica, Quaternium 79 Hydrolyzed Silica.
  • anionic protein hydrolysates and derivatives according to the invention those mentioned under the INCI names in the "International Cosmetic Ingredient Dictionary and Handbook", (seventh edition 1997, The Cosmetic, Toiletry, and Fragrance Association 1101 17 th Street, NW, Suite 300 Potassium cocoyl hydrolyzed silica, sodium lauroyl hydrolyzed silica or sodium stearoyl hydrolyzed silica.
  • the derivatives of sericin and fibroin which can be used according to the invention, mention may be made of the products commercially available under the INCI names: Ethyl Ester of Hydrolyzed SiIk and Hydrolyzed SiIk PG-Propyl Methylsilanediol.
  • Palmitoyl Oligopeptide Palmitoyl Pentapeptide-3, Palmitoyl Pentapeptide-2, Acetyl Hexapeptide-1, Acetyl Hexapeptide-3, Copper Tripeptide-1, Hexapeptide-1, Hexapeptide-2, MEA-Hydrolyzed SiIk.
  • the effect of the active ingredient complex (A) can be further increased by the addition of fatty substances.
  • Fatty substances are to be understood as meaning fatty acids, fatty alcohols, natural and synthetic waxes, which may be in solid form as well as liquid in aqueous dispersion, and natural and synthetic cosmetic oil components.
  • Protein hydrolysates of vegetable origin eg. As soybean, almond, pea, potato and wheat protein hydrolysates are, for example, under the trademarks Gluadin ® (Cognis), DiaMin ® (Diamalt), Lexein ® (Inolex), Hydrosoy ® (Croda), Hydrolupin ® ( Croda), hydro-Sesame ® (Croda), hydro tritium ® (Croda) and crotein ® (Croda) available.
  • protein hydrolysates Although the use of the protein hydrolysates is preferred as such, amino acid mixtures otherwise obtained may be used in their place, if appropriate. Also possible is the use of derivatives of protein hydrolysates, for example in the form of their fatty acid condensation products. Such products are marketed for example under the names Lamepon ® (Cognis), Lexein ® (Inolex), Crolastin ® (Croda), Crosilk ® (Croda) or Crotein ® (Croda).
  • the protein hydrolysates are used, for example, in concentrations of 0.01% by weight up to 20% by weight, preferably from 0.05% by weight up to 15% by weight and very particularly preferably in amounts of 0.05% by weight. -% up to 5 wt .-%, each based on the total application preparation used.
  • Suitable care substances are furthermore silicone oils and / or a silicone gum.
  • Silicone oils or silicone gums which are suitable according to the invention are in particular dialkyl and alkylaryl siloxanes, for example dimethylpolysiloxane and methylphenylpolysiloxane, and also their alkoxylated, quaternized or else anionic derivatives. Preference is given to cyclic and linear polydialkylsiloxanes, their alkoxylated and / or aminated derivatives, dihydroxypoly-dimethylsiloxanes and polyphenylalkylsiloxanes. Silicone oils cause a wide variety of effects. For example, at the same time they influence the dry and wet combability, the grip of dry and wet hair and the shine.
  • silicone oils is understood by the person skilled in the art as meaning several structures of silicon-organic compounds. Initially, these are understood to mean the dimethiconols (S1). These may be both linear and branched as well as cyclic or cyclic and branched. Linear dimethiconols can be represented by the following structural formula (S1-I):
  • Branched dimethiconols can be represented by the structural formula (S1-II):
  • the radicals R 1 and R 2 are each independently hydrogen, a methyl radical, a C 2 to C 30 linear, saturated or unsaturated hydrocarbon radical, a phenyl radical and / or an aryl radical.
  • the groups represented by R 1 and R 2 include alkyl groups such as methyl, ethyl, propyl, isopropyl, butyl, isobutyl, pentyl, isopentyl, neopentyl, amyl, isoamyl, hexyl, isohexyl and the like; Alkenyl radicals such as vinyl, halovinyl, alkylvinyl, allyl, haloallyl, alkylallyl; Cycloalkyl radicals such as cyclobutyl, cyclopentyl, cyclohexyl and the like; Phenyl radicals, benzyl radicals, halohydrocarbon radicals such as 3-chloropropyl, A
  • the numbers x, y and z are integers and each run independently from 0 to 50,000.
  • the molecular weights of the dimethiconols are between 1,000 D and 10000000 D.
  • the viscosities are between 100 and 10,000,000 cPs measured at 25 0 C by means of a glass capillary viscometer according to Dow Corning Corporate Test Method CTM 0004 dated 20 July 1970.
  • Preferred viscosities are from 1000 to 5,000,000 cPs, most preferred viscosities are between 10,000 and 3,000,000 cps. The most preferred range is between 50,000 and 2,000,000 cps.
  • Examples of such products include the following commercial products: Botanisil NU-150M (Botanigenics), Dow Coming 1-1254 Fluid, Dow Corning 2-9023 Fluid, Dow Corning 2-9026 Fluid, Ultrapure Dimethiconol (Ultra Chemical), Unisil SF- R (Universal Preserve), X-21-5619 (Shin-Etsu Chemical Co.), Abil OSW 5 (Degussa Care Specials), ACC DL-9430 emulsion (Taylor Chemical Company), AEC Dimethiconol & Sodium Dodecylbenzene Sulfonates (A & E Connock (Perfumery & Cosmetics) Ltd.), BC Dimethiconol Emulsion 95 (Basildon Chemical Company, Ltd.), Cosmetic Fluid 1401, Cosmetic Fluid 1403, Cosmetic Fluid 1501, Cosmetic Fluid 1401 DC (all aforementioned Chemsil Silicones, Inc.), Dow Corning 1401 Fluid, Dow Corning 1403 Fluid, Dow Corning 1501 Fluid, Dow Corning 1784 H
  • Dub Gel Sl 1400 (Stearinerie Dubois FiIs), HVM 4852 Emulsion (Crompton Corporation), Jeesilc 6056 (Jeen International Corporation), Lubrasil, Lubrasil DS (both Guardian Laboratories), Nonychosine E, Nonychosine V (both exsymol), SanSurf Petrolatum 25, Satin Finish (both Collaborative Laboratories, Inc.), Silatex-D30 (Cosmetic Ingredient Resources), Silsoft 148, Silsoft E-50, Silsoft E-623 (all aforementioned Crompton Corporation), SM555, SM2725, SM2765, SM2785 ( all previously gen GE Silicones), Taylor T-SiI CD-1, Taylor TME-4050E (all Taylor Chemical Company), THV 148 (Crompton Corporation), Tixogel CYD-1429 (Sud-Chemie Performance Additives), Wacker-Belsil CM 1000, Wacker-Belsil CM 3092, Wacker-Bels
  • Dimethicones form the second group of silicones which may be present according to the invention. These may be both linear and branched as well as cyclic or cyclic and branched. Linear dimethicones can be represented by the following structural formula (S2-I):
  • Branched dimethicones can be represented by the structural formula (S2 - II):
  • the radicals R 1 and R 2 are each independently hydrogen, a methyl radical, a C 2 to C 30 linear, saturated or unsaturated hydrocarbon radical, a phenyl radical and / or an aryl radical.
  • the groups represented by R 1 and R 2 include alkyl groups such as methyl, ethyl, propyl, isopropyl, butyl, isobutyl, pentyl, isopentyl, neopentyl, amyl, isoamyl, hexyl, isohexyl and the like; Alkenyl radicals such as vinyl, halovinyl, alkylvinyl, allyl, haloallyl, alkylallyl; Cycloalkyl radicals such as cyclobutyl, cyclopentyl, cyclohexyl and the like; Phenyl radicals, benzyl radicals, halohydrocarbon radicals, such as 3-chloropropyl,
  • the numbers x, y and z are integers and each run independently from 0 to 50,000.
  • the molecular weights of Dimethicone lie between 1,000 D and 10000000 D.
  • the viscosities are between 100 and 10,000,000 cPs measured at 25 0 C by means of a glass capillary viscometer according to Dow Corning Corporate Test Method CTM 0004 dated 20 July 1970.
  • Preferred viscosities are 1000-5000000 cPs, particularly preferred viscosities are between 10,000 and 3,000,000 cps. Most preferably, the viscosity is in the range between 50,000 and 200,000 cps.
  • Dimethicone copolyols (S3) form another group of silicones that are suitable. Dimethicone copolyols can be represented by the following structural formulas:
  • Branched dimethicone copolyols can be represented by the structural formula (S3-III):
  • the radicals R 1 and R 2 are each independently hydrogen, a methyl radical, a C 2 to C 30 linear, saturated or unsaturated hydrocarbon radical, a phenyl radical and / or an aryl radical.
  • the groups represented by R 1 and R 2 include alkyl groups such as methyl, ethyl, propyl, isopropyl, butyl, isobutyl, pentyl, isopentyl, neopentyl, amyl, isoamyl, hexyl, isohexyl and the like; Alkenyl radicals, such as vinyl, halovinyl, Alkylvinyl, allyl, haloallyl, alkylallyl; Cycloalkyl radicals such as cyclobutyl, cyclopentyl, cyclohexyl and the like; Phenyl radicals, benzyl radicals, halohydrocarbon radicals such as 3-chloropropyl,
  • PE stands for a polyoxyalkylene radical.
  • Preferred polyoxyalkylene radicals are derived from ethylene oxide, propylene oxide and glycerol.
  • the numbers x, y and z are integers and each run independently from 0 to 50,000.
  • the molecular weights of Dimethicone lie between 1,000 D and 10000000 D.
  • the viscosities are between 100 and 10,000,000 cPs measured at 25 0 C by means of a glass capillary viscometer according to Dow Corning Corporate Test Method CTM 0004 dated 20 July 1970.
  • Preferred viscosities are 1000-5000000 cps, most preferred viscosities are between 10,000 and 3,000,000 cps. The most preferred range is between 50,000 and 2,000,000 cps.
  • dimethicone copolyols are commercially available and are sold, for example, by Dow Corning under the name Dow Corning® 5330 Fluid.
  • the Dimethiconole, Dimethicone and / or Dimethiconcopolymere already be present as an emulsion.
  • the corresponding emulsion of dimethiconols, dimethicones and / or dimethicone copolyols can be prepared both after the preparation of the corresponding dimethiconols, dimethicones and / or dimethicone copolyols from these and the conventional methods of emulsification known to the person skilled in the art.
  • both cationic, anionic, nonionic or zwitterionic surfactants and emulsifiers can be used as auxiliaries for the preparation of the corresponding emulsions.
  • dimethiconols, dimethicones and / or dimethicone copolyols can also be prepared directly by an emulsion polymerization process. Such methods are also well known to the person skilled in the art.
  • the droplet size of the emulsified particles is according to the invention 0.01 to 10000 microns, preferably 0.01 to 100 .mu.m, more preferably 0.01 to 20 microns and most preferably 0 , 01 to 10 ⁇ m.
  • the particle size is determined by the method of light scattering.
  • branched dimethiconols, dimethicones and / or dimethicone copolyols are used, it is to be understood that the branching is greater than a random branching, which occurs randomly due to impurities of the respective monomers.
  • branched dimethiconols, dimethicones and / or dimethicone copolyols are therefore to be understood as meaning that the degree of branching is greater than 0.01%.
  • Prefers is a degree of branching greater than 0.1%, and most preferably greater than 0.5%.
  • the degree of branching is determined from the ratio of the unbranched monomers to the branching monomers, that is, the amount of tri- and tetrafunctional siloxanes. According to the invention, both low-branched and highly branched dimethiconols, dimethicones and / or dimethicone copolyols can be very particularly preferred.
  • Suitable silicones are furthermore amino-functional silicones (S4), in particular the silicones which are grouped under the INCI name amodimethicones. These are silicones which have at least one, optionally substituted, amino group.
  • Such silicones may e.g. by the formula (S4-I)
  • R in the above formula is a hydrocarbon or a hydrocarbon group having from 1 to about 6 carbon atoms
  • Q is a polar group of the general formula -R 1 Z wherein R 1 is a divalent linking group attached to hydrogen and Z is an organic, amino-functional radical containing at least one amino-functional group, carbon and hydrogen atoms, carbon, hydrogen and oxygen atoms or carbon, hydrogen and nitrogen atoms;
  • "a” assumes values in the range of about 0 to about 2
  • "b” assumes values in the range of about 1 to about 3
  • "a” + "b” is less than or equal to 3
  • "c” is a number in the range from about 1 to about 3
  • x is a number ranging from 1 to about 2,000, preferably from about 3 to about 50, and most preferably from about 3 to about 25
  • y is a number ranging from about 20 to about 10,000 , preferably from about 125 to about 10,000, and most preferably from about 150 to about 1,000
  • M is a suitable silicone
  • Non-limiting examples of the groups represented by R include alkyl groups such as methyl, ethyl, propyl, isopropyl, butyl, isobutyl, amyl, isoamyl, hexyl, isohexyl and the like; Alkenyl radicals such as vinyl, halovinyl, alkylvinyl, allyl, haloallyl, alkylallyl; Cycloalkyl radicals such as cyclobutyl, cyclopentyl, cyclohexyl and the like; Phenyl radicals, benzyl radicals, halohydrocarbon radicals such as 3-chloropropyl, A-bromobutyl, 3,3,3-trifluoropropyl, chlorocyclohexyl, bromophenyl, chlorophenyl and the like, as well as sulfur-containing radicals such as mercaptoethyl, mercaptopropyl, mercapto
  • R 1 examples include methylene, ethylene, propylene, hexamethylene, decamethylene, -CH 2 CH (CH 3 ) CH 2 -, phenylene, naphthylene, -CH 2 CH 2 SCH 2 CH 2 -, - CH 2 CH 2 OCH 2 - , -OCH 2 CH 2 -, -OCH 2 CH 2 CH 2 -, -CH 2 CH (CH 3 ) C (O) OCH 2 -, - (CH 2 ) 3 C (O) OCH 2 CH 2 -, - C 6 H 4 C 6 H 4 -, -C 6 H 4 CH 2 C 6 H 4 -; and - (CH 2 ) 3 C (O) SCH 2 CH 2 -.
  • Z is an organic, amino-functional radical containing at least one functional amino group.
  • a possible formula for Z is NH (CH 2 ) Z NH 2 , where z is an integer from 1 to 50.
  • Another possible formula for Z is -NH (CH 2 ) Z NH (CH 2 ) zz , in which both z and zz independently of one another represent an integer from 1 to 50, this structure comprising diamino ring structures, such as piperazinyl.
  • Z is particularly preferably a -NHCH 2 CH 2 NH 2 radical.
  • Z is -N (CH 2 ) Z NX 1 X 2 or -NX 1 X 2 , wherein each of X 1 and X 2 is independently selected from hydrogen and a hydrocarbon radical having from 1 to about 6 carbon atoms.
  • Q is a polar, amine-functional radical of the formula - CH 2 CH 2 CH 2 NHCH 2 CH 2 NH 2 .
  • the molar ratio of the R 3 Q b SiO (4- a - b) / 2 units to the R c SiO (4- C) / 2 units is in the range of about 1: 2 to 1:65, preferably about From 1: 5 to about 1:65 and more preferably from about 1:15 to about 1: 20.
  • the various variable substituents in the above formula may be used for the various silicone components described in U.S. Pat Silicone blend exist, be different.
  • Preferred amino-functional silicones correspond to the formula (S4 - II)
  • G is -H, a phenyl group, -OH, -O-CH 3 , -CH 3 , -CH 2 CH 3 , -CH 2 CH 2 CH 3 ,
  • a is a number between 0 and 3, in particular 0;
  • b is a number between 0 and 1, in particular 1,
  • n and n are numbers whose sum (m + n) is between 1 and 2000, preferably between 50 and 150, where n is preferably values from 0 to 1999 and in particular from 49 to 149 and m preferably values from 1 to 2000, in particular from 1 to 10,
  • R - R ' is a monovalent radical selected from o -N (R ") - CH 2 -CH 2 - N (R") 2 o -N (R ") 2 o -N + (R") 3 A "o - N + H (R ") 2 A " o -N + H 2 (R ") A " o -N (R ”) - CH 2 -CH 2 -N + R” H 2 A " wherein each R" is for identical or different radicals from the group -H, -phenyl, -benzyl, the C ⁇ o-alkyl radicals, preferably -CH 3 , -CH 2 CH 3 , -CH 2 CH 2 CH 3 , -CH (CH 3 ) 2 , -CH 2 CH 2 CH 2 CH 3 , -CH 2 CH (CH 3 ) 2 ,
  • a ' represents an anion, which is preferably selected from chloride, bromide, iodide or methosulfate.
  • Particularly preferred amino-functional silicones correspond to the formula (S4 - III)
  • m and n are numbers whose sum (m + n) is between 1 and 2000, preferably between 50 and 150, where n is preferably values from 0 to 1999 and in particular from 49 to 149 and m preferably values from 1 to 2000, in particular from 1 to 10.
  • silicones are referred to as trimethylsilylamodimethicones according to the INCI declaration.
  • R is -OH, -O-CH 3 or a -CH 3 group and m
  • n1 and n2 are numbers whose sum (m + n1 + n2) is between 1 and 2,000, preferably between 50 and 150, wherein the sum (n1 + n2) preferably assumes values from 0 to 1999 and in particular from 49 to 149 and m preferably values from 1 to 2000, in particular from 1 to 10.
  • silicones are referred to as amodimethicone according to the INCI nomenclature and are available for example in the form of an emulsion as a commercial product Dow Corning ® 949 in a mixture with a cationic and a nonionic surfactant.
  • those amino-functional silicones are used which have an amine number above 0.25 meq / g, preferably above 0.3 meq / g and especially preferably above 0.4 meq / g.
  • the amine number stands for the milliequivalents of amine per gram of the amino-functional silicone. It can be determined by titration and also expressed in mg KOH / g.
  • Suitable silicones are, for example oligomeric polydimethylcyclosiloxanes (INCI name: Cyclomethicone), in particular the tetrameric and the pentameric compound, which are available as commercial products DC 245 fluid, DC
  • Hexamethyl disiloxane (INCI name: Hexamethyldisiloxane), z. B. that under the
  • esters and partial esters of silicone-glycol copolymers such as those of the
  • Fancorsil ® LIM (INCI name:
  • anionic silicone oils such as the Dow Corning® 1784 product.
  • silicone derivatives Preferred is a combination of a volatile and a nonvolatile silicone.
  • Volatile in the context of the invention are those silicones which have a volatility which is equal to or greater than the volatility of the cyclic, pentameric dimethylsiloxane.
  • Such combinations are also available as commercial products (eg, Dow Corning® 1401, Dow Corning® 1403, and Dow Corning® 1501, each containing mixtures of a cyclomethicone and a dimethiconol).
  • Preferred mixtures of different silicones are, for example, dimethicones and dimethiconols, linear dimethicones and cyclic dimethiconols.
  • a very particularly preferred mixture of silicones consists of at least one cyclic dimethiconol and / or dimethicone, at least one further non-cyclic dimethicone and / or dimethiconol and at least one amino-functional silicone.
  • the mixing ratio is largely variable. However, all the silicones used for mixing are preferably used in a ratio of 5: 1 to 1: 5 in the case of a binary mixture. A ratio of 3: 1 to 1: 3 is particularly preferred. Very particularly preferred mixtures contain all the silicones contained in the mixture largely in a ratio of about 1: 1, in each case based on the amounts used in wt .-%.
  • the silicones are preferably used in amounts of from 1 to 25% by weight, more preferably from 5 to 20% by weight and especially preferably from 7 to 15% by weight, based on the total product.
  • Nurturing polymers are also suitable as a care substance. It should be expressly pointed out at this point that a number of the polymers mentioned below also have film-forming and / or setting properties and have therefore already been described above as a film-forming and / or setting polymer.
  • a first group of caring polymers are the cationic polymers.
  • Cationic polymers are to be understood as meaning polymers which have a group in the main and / or side chain which may be "temporary” or “permanent” cationic. According to the invention, “permanently cationic” refers to those polymers which have a cationic group, irrespective of the pH of the agent.
  • polymers containing a quaternary nitrogen atom for example in the form of an ammonium group.
  • Preferred cationic groups are quaternary ammonium groups.
  • those polymers in which the quaternary ammonium group is attached via a d- 4 -hydrocarbon group to a polymer main chain composed of acrylic acid, methacrylic acid or derivatives thereof have proven to be particularly suitable.
  • R 1 -H or -CH 3
  • R 2, R 3 and R 4 are independently selected from C ⁇ 4 - alkyl, -alkenyl or -hydroxyalkyl groups
  • m 1, 2, 3 or 4
  • n is a natural number
  • X ' is a physiologically acceptable organic or inorganic anion, as well as copolymers consisting essentially of the monomer units listed in formula (G1-I) and nonionic monomer units, are particularly preferred cationic polymers.
  • R 1 is a methyl group
  • R 2 , R 3 and R 4 are methyl groups
  • m has the value 2.
  • Suitable physiologically tolerable counterions X " include, for example, halide ions, sulfate ions, phosphate ions, methosulfate ions and organic ions such as lactate, citrate, tartrate and acetate ions, preference being given to halide ions, in particular chloride.
  • a particularly suitable homopolymer is, if desired, crosslinked, poly (meth acryloyloxyethyltrimethylammonium chloride) with the INCI name Polyquaternium-37.
  • the crosslinking can be carried out with the aid of poly olefinically unsaturated compounds, for example divinylbenzene, tetraallyloxyethane, methylenebisacrylamide, diallyl ether, polyallyl polyglyceryl ethers, or allyl ethers of sugars or sugar derivatives, such as erythritol. Pentaerythritol, arabitol, mannitol, sorbitol, sucrose or glucose. Methylenebisacrylamide is a preferred crosslinking agent.
  • the homopolymer is preferably used in the form of a non-aqueous polymer dispersion which should not have a polymer content of less than 30% by weight.
  • Such polymer dispersions are (under the names Salcare ® SC 95 about 50% polymer content, additional components: mineral oil (INCI name: Mineral Oil) and tridecyl-polyoxypropylene-polyoxyethylene-ether (INCI name: PPG-1 trideceth-6) ) and Salcare ® SC 96 (about 50% polymer content, additional components: mixture of diesters of propylene glycol with a mixture of caprylic and capric acid (INCI name: propylene glycol Dicaprylate / Dicaprate) and tridecyl polyoxypropylene-polyoxyethylene-ether (INCI Designation: PPG-1-trideceth-6)) are commercially available.
  • Copolymers having monomer units of the formula (G1-I) contain, as nonionic monomer units, preferably acrylamide, methacrylamide, acrylic acid C 1-4 -alkyl esters and di- 4- alkyl methacrylates. Among these nonionic monomers, the acrylamide is particularly preferred. These copolymers can also be crosslinked, as described above in the case of the homopolymers.
  • a copolymer preferred according to the invention is the crosslinked acrylamide-methacryloyloxyethyltrimethylammonium chloride copolymer.
  • Such copolymers in which the monomers are present in a weight ratio of about 20:80 are commercially available as approximately 50% non-aqueous polymer dispersion 92 under the name Salcare ® SC.
  • quaternized cellulose derivatives such as are available under the names of Celquat ® and Polymer JR ® commercially.
  • the compounds Celquat ® H 100, Celquat ® L 200 and Polymer JR ® 400 are preferred quaternized cellulose derivatives, cationic alkyl polyglycosides according to DE-PS 44 13 686, cationized honey, for example the commercial product Honeyquat ® 50, cationic guar derivatives, such as in particular the products sold under the trade names Cosmedia® ® guar and Jaguar ® products,
  • Quaternary group polysiloxanes such as the commercially available products Q2-7224 (manufactured by Dow Corning, a stabilized trimethylsilylamodimethicone), Dow Corning® 929 emulsion (containing a hydroxylamino-modified silicone, also referred to as amodimethicones), SM -2059 (manufacturer: General Electric), SLM-55067 (manufacturer: Wacker) and Abil ® -Quat 3270 and 3272 (manufacturer: Th Goldschmidt.), diquaternary polydimethylsiloxanes, quaternium-80), polymeric dimethyldiallylammonium salts and their copolymers with esters and amides of acrylic acid and methacrylic acid.
  • Q2-7224 manufactured by Dow Corning, a stabilized trimethylsilylamodimethicone
  • Dow Corning® 929 emulsion containing a hydroxylamino-modified silicone, also referred
  • Such compounds are sold under the names Gafquat ® 734 and Gafquat ® 755 commercially,
  • Vinylpyrrolidone-vinyl imidazolium copolymers such as those offered under the names Luviquat ® FC 370, FC 550, FC 905 and HM 552, quaternized polyvinyl alcohol, as well as by the names of Polyquaternium 2, Polyquaternium 17, Polyquaternium 18 and Polyquaternium 27, having quaternary Nitrogen atoms in the polymer backbone.
  • Can be used as cationic polymers are sold under the names Polyquaternium-24 (commercial product z. B. Quatrisoft ® LM 200), known polymers.
  • Gaffix ® VC 713 manufactured by ISP:
  • the copolymers of vinylpyrrolidone such as the commercial products Copolymer 845 (ISP manufacturer) are Gafquat ® ASCP 1011, Gafquat ® HS 110, Luviquat ® 8155 and Luviquat ® MS 370 available are.
  • cationic polymers which can be used according to the invention are the so-called "temporary cationic" polymers, which usually contain an amino group which is quaternary ammonium group and thus cationic at certain pH values ® CMF, Hydagen® ® HCMF, Kytamer ® PC and Chitolam ® NB / 101 are freely available commercially.
  • cationic polymers are cationic cellulose derivatives and chitosan and its derivatives, in particular the commercial products Polymer ® JR 400, Hydagen ® HCMF and Kytamer ® PC, cationic guar derivatives, cationic honey derivatives, in particular the commercial product Honeyquat ® 50, cationic Alkyl polyglycodides and Polyquaternium-37 type polymers.
  • cationized protein hydrolyzates are to be counted among the cationic polymers, wherein the underlying protein hydrolyzate from the animal, for example from collagen, milk or keratin, from the plant, for example from wheat, corn, rice, potatoes, soy or almonds, marine life forms, for example from fish collagen or algae, or biotechnologically derived protein hydrolysates.
  • the protein hydrolyzates on which the cationic derivatives according to the invention are based can be obtained from the corresponding proteins by chemical, in particular alkaline or acid hydrolysis, by enzymatic hydrolysis and / or a combination of both types of hydrolysis.
  • the Hydrolysis of proteins usually results in a protein hydrolyzate having a molecular weight distribution of from about 100 daltons to several thousand daltons. Preference is given to those cationic protein hydrolyzates whose underlying protein content has a molecular weight of 100 to 25,000 daltons, preferably 250 to 5000 daltons. Furthermore, cationic protein hydrolyzates are to be understood as meaning quaternized amino acids and mixtures thereof. The quaternization of the protein hydrolyzates or amino acids is often carried out using quaternary ammonium salts such as N, N-dimethyl-N- (n-alkyl) -N- (2-hydroxy-3-chloro-n-propyl) ammonium halides.
  • the cationic protein hydrolysates may also be further derivatized.
  • the cationic protein hydrolysates and derivatives according to the invention those mentioned under the INCI names in the "International Cosmetic Ingredient Dictionary and Handbook", (seventh edition 1997, The Cosmetic, Toiletry, and Fragrance Association 1101 17 th Street, NW, Suite 300 Cocodimonium Hydroxypropyl Hydrolyzed Casein, Cocodimonium Hydroxypropyl Hydrolyzed Collagen, Cocodimonium Hydroxypropyl Hydrolyzed Collagen, Cocodimonium Hydroxypropyl Hydrolyzed Hair Keratin, Cocodimonium Hydroxypropyl Hydrolyzed Keratin, Cocodimonium Hydroxypropyl Hydrolyzed Rice Protein, Cocodimonium Hydroxypropyl Hydrolyzed Soy Protein, Cocodimonium Hydroxypropyl Hydrolyzed Wheat Protein, Hydroxypropyl Arginine Lauryl / Myristyl Ether HCl, Hydroxypropy
  • amphoteric polymers are those polymers which are composed essentially
  • R 4 and R 5 each independently represent an alkyl group having 1 to 4 carbon atoms, Z
  • n is an integer from 2 to 5 and A is the anion of an organic or inorganic acid
  • the nourishing, cationic polymers are preferably used in an amount of 0.01 to 5 wt .-%, in particular in an amount of 0.1 to 2 wt .-%, each based on the total application preparation.
  • the product according to the invention may further contain at least one vitamin, a provitamin, a vitamin precursor and / or one of their derivatives.
  • vitamins, pro-vitamins and vitamin precursors are preferred, which are usually assigned to groups A, B, C, E, F and H.
  • vitamin A includes retinol (vitamin A 1 ) and 3,4-didehydroretinol (vitamin A 2 ).
  • the ß-carotene is the provitamin of retinol.
  • vitamin A component for example, vitamin A acid and its esters, vitamin A aldehyde and vitamin A alcohol and its esters such as the palmitate and the acetate into consideration.
  • the products preferably contain the vitamin A component in amounts of 0.05-1% by weight, based on the total application preparation.
  • the vitamin B group or the vitamin B complex include, among others Vitamin B 1 (thiamine) Vitamin B 2 (riboflavin)
  • Vitamin B 3 Under this name, the compounds nicotinic acid and nicotinamide (niacinamide) are often performed. Preferred according to the invention is the nicotinic acid amide, which is preferably contained in the agents according to the invention in amounts of from 0.05 to 1% by weight, based on the total application preparation. Vitamin B 5 (pantothenic acid, panthenol and pantolactone). Panthenol and / or pantolactone are preferably used in the context of this group. Derivatives of panthenol which can be used according to the invention are, in particular, the esters and ethers of panthenol and also cationically derivatized panthenols.
  • panthenol triacetate the panthenol monoethyl ether and its monoacetate and also the cationic panthenol derivatives disclosed in WO 92/13829.
  • the said compounds of the vitamin B 5 type are preferably present in the products according to the invention in amounts of 0.05-10% by weight, based on the total application preparation. Amounts of 0.1-5 wt .-% are particularly preferred.
  • Vitamin B 6 (pyridoxine and pyridoxamine and pyridoxal).
  • the compounds of the vitamin B 6 type mentioned are preferably present in the products according to the invention in amounts of 0.01-5% by weight, based on the total application preparation. Levels of 0.05-1 wt% are particularly preferred.
  • Vitamin C (ascorbic acid). Vitamin C is used in the products according to the invention preferably in amounts of 0.1 to 3 wt .-%, based on the total application preparation. Use in the form of palmitic acid ester, glucosides or phosphates may be preferred. The use in combination with tocopherols may also be preferred.
  • Vitamin E tocopherols, especially ⁇ -tocopherol.
  • Tocopherol and its derivatives which include in particular the esters such as the acetate, the nicotinate, the phosphate and the succinate, are preferably present in the products according to the invention in amounts of 0.05-1% by weight, based on the total application preparation.
  • Vitamin F is usually understood as meaning essential fatty acids, in particular linoleic acid, linolenic acid and arachidonic acid.
  • Vitamin H is the compound (3aS, 4S, 6aR) -2-oxohexahydrothienol [3,4-cf] - imidazole-4-valeric acid, for which, however, the trivial name biotin has meanwhile prevailed.
  • Biotin is contained in the products according to the invention preferably in amounts of from 0.0001 to 1.0% by weight, in particular in amounts of from 0.001 to 0.01% by weight, in each case based on the total application preparation.
  • the products according to the invention preferably contain vitamins, provitamins and vitamin precursors from groups A, B, C, E and H.
  • Panthenol, pantolactone, pyridoxine and its derivatives as well as nicotinic acid amide and biotin are particularly preferred.
  • the products of the invention may further contain at least one plant extract.
  • extracts are produced by extraction of the whole plant. However, in individual cases it may also be preferred to prepare the extracts exclusively from flowers and / or leaves of the plant.
  • extracts of green tea, almond, aloe vera, coconut, mango, apricot, lime, wheat, kiwi and melon are especially suitable.
  • alcohols and mixtures thereof can be used as extractants for the preparation of said plants extra kte water.
  • the alcohols are lower alcohols such as ethanol and isopropanol, but especially polyhydric alcohols such as ethylene glycol and propylene glycol, both as the sole extractant and in admixture with water, prefers.
  • Extra kte plants based on water / propylene glycol in a ratio of 1:10 to 10: 1 have proven to be particularly suitable.
  • the plant extracts can be used according to the invention both in pure and in diluted form. If they are used in diluted form, they usually contain about 2 to 80 wt .-% of active substance and as a solvent used in their extraction agent or extractant mixture.
  • mixtures of several, especially two, different plant extracts may be preferable to use mixtures of several, especially two, different plant extracts.
  • short-chain carboxylic acids may in particular be advantageous.
  • Short-chain carboxylic acids and their derivatives in the context of the invention are understood to mean carboxylic acids which may be saturated or unsaturated and / or straight-chain or branched or cyclic and / or aromatic and / or heterocyclic and have a molecular weight of less than 750.
  • preference may be given to saturated or unsaturated straight-chain or branched carboxylic acids having a chain length of from 1 to 16 C atoms in the chain, very particular preference being given to those having a chain length of from 1 to 12 C atoms in the chain.
  • the short-chain carboxylic acids according to the invention may have one, two, three or more carboxy groups.
  • carboxylic acids having a plurality of carboxy groups in particular di- and tricarboxylic acids.
  • the carboxy groups may be wholly or partly present as esters, acid anhydride, lactone, amide, imidic acid, lactam, lactim, dicarboximide, carbohydrazide, hydrazone, hydroxam, hydroxime, amidine, amidoxime, nitrile, phosphonic or phosphate ester.
  • the carboxylic acids which can be used according to the invention may of course be substituted along the carbon chain or the ring skeleton.
  • the substituents of the carboxylic acids which can be used according to the invention include, for example, C 1 -C 6 -alkyl, C 2 -C 8 -alkenyl, aryl, aralkyl and aralkenyl, hydroxymethyl, C 2 -C 8 -hydroxyalkyl, C 2 -C 8- hydroxyalkenyl, aminomethyl, Ca-C ⁇ -aminoalkyl, cyano, formyl, oxo, thioxo, hydroxy, mercapto, amino, carboxy or imino groups.
  • Preferred substituents are C 1 -C 6 -alkyl, hydroxymethyl, hydroxy, amino and carboxy groups.
  • substituents in the ⁇ position are hydroxy, alkoxy and amino groups, where the amino function may optionally be further substituted by alkyl, aryl, aralkyl and / or alkenyl radicals.
  • preferred carboxylic acid derivatives are the phosphonic and phosphate esters.
  • carboxylic acids which can be used according to the invention include formic acid, acetic acid, propionic acid, butyric acid, isobutyric acid, valeric acid, isovaleric acid, pivalic acid, oxalic acid, malonic acid, succinic acid, glutaric acid, glyceric acid, glyoxylic acid, adipic acid, pimelic acid, suberic acid, azelaic acid, sebacic acid, propiolic acid, crotonic acid, isocrotonic acid, elaidic acid, maleic acid, fumaric acid, muconic acid, citraconic acid, mesaconic acid, camphoric acid, benzoic acid, o, m, p-phthalic acid, naphthoic acid, Toluoylklare, hydratropic acid, atropic acid, cinnamic acid, isonicotinic acid, nicotinic acid, Bicarbaminklare, 4,4
  • n is a number from 4 to 12 and one of the two groups X and Y is a CC 1 C 1 H group and the other is hydrogen or a methyl or ethyl radical
  • dicarboxylic acids of the general formula (NI) which additionally carry 1 to 3 methyl or ethyl substituents on the cyclohexene ring and dicarboxylic acids formed from the dicarboxylic acids according to formula (NI) formally by addition of a molecule of water to the double bond in the cyclohexene ring arise.
  • Dicarboxylic acids of the formula (N-I) are known in the literature.
  • US-A 3,753,968 discloses a manufacturing process.
  • the dicarboxylic acids of the formula (NI) can be prepared, for example, by reacting polyunsaturated dicarboxylic acids with unsaturated monocarboxylic acids in the form of a Diels-Alder cyclization.
  • a polyunsaturated fatty acid as the dicarboxylic acid component.
  • Preferred is the linoleic acid obtainable from natural fats and oils.
  • monocarboxylic acid component are in particular acrylic acid, but also, for example, methacrylic acid and crotonic acid are preferred.
  • isomer mixtures in which one component is present in excess are formed. These isomer mixtures can be used according to the invention as well as the pure compounds.
  • those dicarboxylic acids which differ from the compounds according to formula (NI) by 1 to 3 methyl or ethyl substituents on the cyclohexyl ring or formally from these compounds by addition of one molecule of water are also usable according to the invention be formed on the double bond of the cyclohexene ring.
  • the dicarboxylic acid (mixture), which is obtained by reacting linoleic acid with acrylic acid, has proved to be particularly effective according to the invention. It is a mixture of 5- and 6-carboxy-4-hexyl-2-cyclohexene-1-octanoic acid.
  • Such compounds are commercially available under the designations Westvaco Diacid 1550 Westvaco Diacid ® ® 1595 (manufacturer: Westvaco).
  • salts are the alkali metal salts, alkaline earth metal salts, zinc salts and ammonium salts, which in the context of the present application also includes the mono-, di- and trimethyl-, -ethyl- and -hydroxyethyl ammonium salts.
  • neutralized acids can very particularly preferably be used with alkaline-reacting amino acids, such as, for example, arginine, lysine, ornithine and histidine.
  • 2-pyrrolidinone-5-carboxylic acid and derivatives thereof are used as the carboxylic acid.
  • Particularly preferred are the sodium, potassium, calcium, magnesium or ammonium salts in which the ammonium ion in addition to hydrogen carries one to three Cr to C 4 alkyl groups.
  • the sodium salt is most preferred.
  • the amounts used in the products according to the invention are preferably 0.05 to 10 wt .-%, based on the total application preparation, particularly preferably 0.1 to 5 wt .-%, and particularly preferably 0.1 to 3 wt .-%.
  • hydroxycarboxylic acids and here again in particular the dihydroxy, trihydroxy and polyhydroxycarboxylic acids as well as the dihydroxy, trihydroxy and polyhydroxy di-, tri- and polycarboxylic acids. It has been shown that in addition to the hydroxycarboxylic acids and the hydroxycarboxylic acid esters and the mixtures of hydroxycarboxylic acids and their esters as well as polymeric hydroxycarboxylic acids and their Esters can be very particularly preferred.
  • Preferred hydroxycarboxylic acid esters are, for example, full esters of glycolic acid, lactic acid, malic acid, tartaric acid or citric acid.
  • hydroxycarboxylic esters are esters of .beta.-hydroxypropionic acid, tartronic acid, D-gluconic acid, sugar acid, mucic acid or glucuronic acid.
  • Suitable alcohol components of these esters are primary, linear or branched aliphatic alcohols having 8-22 C atoms, ie, for example, fatty alcohols or synthetic fatty alcohols.
  • the esters of C 12 -C 15 fatty alcohols are particularly preferred.
  • Esters of this type are commercially available, eg under the trademark Cosmacol® ® EniChem, Augusta Industriale.
  • Particularly preferred polyhydroxypolycarboxylic acids are polylactic acid and polyuric acid and their esters.
  • Ectoin or ectoine derivatives, allantoin, taurine and / or bisabolol are also suitable as care substances.
  • ectoine and ectoine derivatives means compounds of the formula (IV)
  • R 10 represents a hydrogen atom, a branched or unbranched C 1 -C 4 -alkyl radical or a C 2 -C 4 -hydroxyalkyl radical,
  • R 11 represents a hydrogen atom, a grouping -COOR 14 or a grouping -
  • R 14 may be a hydrogen atom, a C 1 -C 4 -alkyl radical, an amino acid radical, a dipeptide or a tripeptide radical,
  • R 12 and R 13 are each, independently of one another, a hydrogen atom, a C 1 -C 4 -alkyl radical or a hydroxy group, with the proviso that both radicals may not simultaneously be a hydroxy group, and n is an integer from 1 to 3.
  • Suitable physiologically tolerated salts of the general compounds of the formula (IVa) or (IVb) are, for example, the alkali metal, alkaline earth metal, ammonium, triethylamine or tris (2-hydroxyethyl) amine salts and those which result from the reaction of compounds according to the formula (IVa) or (IVb) with inorganic and organic acids such as hydrochloric acid, phosphoric acid, sulfuric acid, branched or unbranched, substituted or unsubstituted (for example by one or more hydroxy groups) C 1 -C 4 -mono- or dicarboxylic acids, aromatic carboxylic acids and sulfonic acids such as acetic acid, citric acid, benzoic acid, maleic acid, fumaric acid, tartaric acid and p-toluenesulfonic acid.
  • inorganic and organic acids such as hydrochloric acid, phosphoric acid, sulfuric acid, branched or unbranched, substituted or unsubsti
  • physiologically acceptable salts are the Na, K, Mg and Ca and ammonium salts of the compounds of the formula (IVa) or (IVb), and the salts which are obtained by reacting compounds of the formula (IVa ) or (IVb) with hydrochloric acid, acetic acid, citric acid and benzoic acid.
  • Isomeric or stereoisomeric forms of the compounds of the formula (IVa) or (IVb) are understood according to the invention to mean all occurring optical isomers, diastereomers, racemates, zwitterions, cations or mixtures thereof.
  • amino acid the stereoisomeric forms, e.g. D and L forms, the following compounds understood:
  • arginine aspartic acid, glutamine, glutamic acid, ⁇ -alanine, ⁇ -aminobutyrate, N 8 -acetyllysine, N ⁇ -acetylornitin, N ⁇ -acetyldiaminobutyrate, N ⁇ -acetyldiaminobutyrate, histidine, isoleucine, leucine, methionine, phenylalanine, serine, Threonine and tyrosine.
  • L-amino acids are preferred.
  • Amino acid residues are derived from the corresponding amino acids. The following amino acid residues are preferred:
  • the short notation of the amino acids was carried out according to the usual notation.
  • the di- or tripeptide radicals are acid amides in their chemical nature and decompose on hydrolysis in 2 or 3 amino acids.
  • the amino acids in the di- or tripeptide moiety are linked together by amide bonds.
  • C 1 -C 4 -alkyl groups in the compounds of the formula (IV) are methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl and tert-butyl.
  • Preferred alkyl groups are methyl and ethyl, methyl is a particularly preferred alkyl group.
  • Preferred C 2 -C 4 -hydroxyalkyl groups are the groups 2-hydroxyethyl, 3-hydroxypropyl or 4-hydroxybutyl; 2-hydroxyethyl is a particularly preferred hydroxyalkyl group.
  • These care substances are preferably used in amounts of from 0.001 to 2, in particular from 0.01 to 0.5,% by weight, based in each case on the total application preparation.
  • Mono- or oligosaccharides can also be used as a care substance in the products according to the invention.
  • monosaccharides and oligosaccharides such as, for example, cane sugar, lactose and raffinose
  • monosaccharides such as, for example, cane sugar, lactose and raffinose
  • monosaccharides are preferred according to the invention.
  • monosaccharides those compounds which contain 5 or 6 carbon atoms are preferred.
  • Suitable pentoses and hexoses are, for example, ribose, arabinose, xylose, lyxose, allose, altrose, glucose, mannose, gulose, idose, galactose, talose, fucose and fructose.
  • Arabinose, glucose, galactose and fructose are preferably used carbohydrates; Very particular preference is given to using glucose which is suitable both in the D - (+) or L - (-) configuration or as a racemate.
  • sugars are gluconic acid, glucuronic acid, sugar acid, mannose and mucic acid.
  • Preferred sugar alcohols are sorbitol, mannitol and dulcitol.
  • Preferred glycosides are the methylglucosides.
  • the monosaccharides or oligosaccharides used are usually obtained from natural raw materials such as starch, they usually have the configurations corresponding to these raw materials (for example D-glucose, D-fructose and D-galactose).
  • the monosaccharides or oligosaccharides are preferably present in the products according to the invention in an amount of from 0.1 to 8% by weight, particularly preferably from 1 to 5% by weight, based on the total application preparation.
  • Suitable care substances are also lipids.
  • Lipids suitable according to the invention are phospholipids, for example soya lecithin, egg lecithin and cephalins, and also the substances known under the INCI names linoleic amidopropyl PG-dimonium chlorides phosphates, cocamidopropyl PG-dimonium chlorides phosphates and stearamidopropyl PG-dimonium chlorides phosphates. These are sold, for example, by the company Mona under the trade names Phospholipid EFA® , Phospholipid PTC® and Phospholipid SV® .
  • the lipids are preferably used in amounts of from 0.01 to 10% by weight, in particular from 0.1 to 5% by weight, based on the total application preparation. Furthermore, oil bodies are suitable as a care substance.
  • the natural and synthetic cosmetic oil bodies include, for example: vegetable oils.
  • vegetable oils examples include sunflower oil, olive oil, soybean oil, rapeseed oil, almond oil, jojoba oil, orange oil, wheat germ oil, peach kernel oil and the liquid portions of coconut oil.
  • triglyceride oils such as the liquid portions of beef tallow as well as synthetic triglyceride oils.
  • Ester oils are understood as meaning the esters of Ce - C 30 fatty acids with C 2 - C 30 fatty alcohols. The monoesters of the fatty acids with alcohols having 2 to 24 carbon atoms are preferred.
  • fatty acid components used in the esters are caproic, caprylic, 2-ethylhexanoic, capric, lauric, isotridecanoic, myristic, palmitic, palmitoleic, stearic, isostearic, oleic, elaidic, petroselic, linoleic, linolenic Behenic acid and erucic acid and their technical mixtures which are obtained, for example, in the pressure splitting of natural fats and oils, in the oxidation of aldehydes from Roelen's oxo synthesis or the dimerization of unsaturated fatty acids.
  • fatty alcohol components in the ester oils are isopropyl alcohol, caproic alcohol, capryl alcohol, 2-ethylhexyl alcohol, capric alcohol, lauryl alcohol, isotridecyl alcohol, myristyl alcohol, cetyl alcohol, palmoleyl alcohol, stearyl alcohol, isostearyl alcohol, oleyl alcohol, elaidyl alcohol, petroselinyl alcohol, linolyl alcohol, linolenyl alcohol, elaeostearyl alcohol, arachyl alcohol, Gadoleyl alcohol, behenyl alcohol, erucyl alcohol and brassidyl alcohol and their technical mixtures, for example, in the high-pressure hydrogenation of technical methyl esters based on fats and oils or aldehydes from the Roelen oxo synthesis and as a monomer fraction in the dimerization of unsaturated fatty alcohols incurred.
  • isopropyl myristate IPM Rilanit ®
  • isononanoic acid C16-18 alkyl ester Cetiol ® SN
  • 2-ethylhexyl palmitate Cegesoft ® 24
  • stearic acid-2-ethylhexyl ester Cetiol ® 868
  • cetyl oleate glycerol tricaprylate, Kokosfettalkohol- caprate / caprylate (Cetiol ® LC)
  • n-butyl stearate oleyl erucate
  • isopropyl palmitate IPP Rilanit ®
  • oleyl Oleate Cetiol ®
  • hexyl laurate Cetiol ® A
  • di-n-butyl adipate Cetiol ® B
  • myrist IPM Rilanit ®
  • Dicarboxylic acid esters such as di-n-butyl adipate, di- (2-ethylhexyl) adipate, di- (2-ethylhexyl) succinate and di-isotridecyl acelate
  • diol esters such as ethylene glycol dioleate, ethylene glycol diisotridecanoate, propylene glycol di (2- ethylhexanoate), propylene glycol diisostearate,
  • Fatty acid partial glycerides which are understood to mean monoglycerides, diglycerides and their technical mixtures. With the use of technical products production reasons may still contain small amounts of triglycerides.
  • the partial glycerides preferably follow the formula (D4-I),
  • R 3 in the R 1 , R 2 and R 3 is independently of one another hydrogen or a linear or branched, saturated and / or unsaturated acyl radical having 6 to 22, preferably 12 to 18, Carbon atoms are provided with the proviso that at least one of these groups is an acyl radical and at least one of these groups is hydrogen.
  • the sum (m + n + q) is 0 or numbers from 1 to 100, preferably 0 or 5 to 25.
  • R 1 is an acyl radical and R 2 and R 3 are hydrogen and the sum (m + n + q) is 0.
  • Typical examples are mono- and / or diglycerides based on caproic, caprylic, 2-ethylhexanoic, capric, lauric, isotridecanoic, myristic, palmitic, palmitic, stearic, isostearic, oleic, elaidic, petroselic, linoleic, linolenic , Elaeostearic acid, arachidic acid, gadoleic acid, behenic acid and erucic acid and their technical mixtures.
  • oleic acid monoglycerides are used.
  • the amount used of the natural and synthetic cosmetic oil bodies in the products according to the invention is usually 0.1-30% by weight, based on the total application preparation, preferably 0.1-20% by weight, and in particular 0.1-15% by weight. %.
  • the product may also contain an enzyme as a conditioner.
  • enzymes according to the invention are selected from a group which is formed from proteases, lipases, transglutaminase, oxidases and peroxidases.
  • Pearl extracts are also suitable as a conditioner.
  • Pearls of mussels consist essentially of inorganic and organic calcium salts, trace elements and proteins. Pearls can be easily obtained from cultivated mussels. The cultivation of the mussels can be done in fresh water as well as in sea water. This can affect the ingredients of the beads. According to the invention, preference is given to a pearl extract which originates from shells cultivated in marine or salt water.
  • the pearls consist to a large extent of aragonite (calcium carbonate), conchiolin and an albuminoid. The latter components are proteins.
  • aragonite calcium carbonate
  • conchiolin conchiolin
  • albuminoid an albuminoid.
  • the latter components are proteins.
  • Also included in beads are magnesium and sodium salts, inorganic silicon compounds, and phosphates.
  • the beads are pulverized. Thereafter, the pulverized beads are extracted by the usual methods.
  • extraction agent for the preparation of the pearl extracts water, alcohols and mixtures thereof can be used. Underwater are understood to mean both demineralized water and seawater.
  • the alcohols are lower alcohols such as ethanol and isopropanol, but especially polyhydric alcohols such as glycerol, diglycerol, triglycerol, polyglycerol, ethylene glycol, propylene glycol and butylene glycol, both as sole extractant and in admixture with demineralized water or sea water, are preferred.
  • Pearl extracts based on water / glycerine mixtures have proven to be particularly suitable.
  • the pearl proteins can be largely in the native state or already partially or largely present as protein hydrolysates. Preference is given to a pearl extract in which conchiolin and albuminoid are already partially hydrolyzed.
  • the essential amino acids of these proteins are glutamic acid, serine, alanine, glycine, aspartic acid and phenylalanine.
  • the pearl extract is additionally enriched with at least one or more of these amino acids.
  • the pearl extract is enriched with glutamic acid, serine and leucine.
  • a preferred extract contains organic and / or inorganic calcium salts as well as magnesium and sodium salts, inorganic silicon compounds and / or phosphates.
  • a most preferred pearl extract contains at least 75%, preferably 85%, more preferably 90% and most preferably 95% of all ingredients of the naturally occurring pearls. Examples of pearl extracts usable according to the invention are the commercial products Pearl Protein Extract BG ® or Crodarom ® Pearl.
  • the above-described pearl extracts are preferably contained in an amount of 0.01 to 20% by weight.
  • amounts of the extract of 0.01 to 10 wt .-%, most preferably amounts of 0.01 to 5 wt .-%, based on the total product used.
  • the products according to the invention may furthermore comprise at least one UV filter.
  • UV filters By adding a UV filter, both the products themselves and the treated fibers can be protected from the harmful effects of UV radiation.
  • the suitable UV filters are not subject to any general restrictions with regard to their structure and their physical properties. On the contrary, all UV filters which can be used in the cosmetics sector and whose absorption maximum is in the UVA (315-400 nm), in the UVB (280-315 nm) or in the UVC ( ⁇ 280 nm) range are suitable. UV filters with an absorption maximum in the UVB range, in particular in the range from about 280 to about 300 nm, are particularly preferred.
  • the UV filters preferred according to the invention can be selected, for example, from substituted benzophenones, p-aminobenzoic acid esters, diphenylacrylic acid esters, cinnamic acid esters, salicylic acid esters, benzimidazoles and o-aminobenzoic acid esters.
  • UV filters which can be used according to the invention are 4-aminobenzoic acid, N, N, N-trimethyl-4- (2-oxoborn-3-ylidenemethyl) aniline methylsulfate, 3,3,5-trimethylcyclohexyl salicylate (homosalates), 2-hydroxy-4-methoxybenzophenone (benzophenone-3; Uvinul ® M 40, Uvasorb MET ®, ® Neo Heliopan BB, Eusolex ® 4360), 2-phenylbenzimidazole-5-sulfonic acid and potassium, sodium and triethanolamine salts ( Phenylbenzimidazole Sulfonic Acid; Parsol ® HS; Neo Heliopan Hydro ®), 3,3 '- (1, 4-phenylenedimethylene) bis (7,7-dimethyl-2-oxo-bicyclo [2.2.1] hept-1- yl-methane sulfonic acid) and salts thereof, 1- (4-tert-butylpheny
  • water-insoluble UV filters are those which dissolve in water at not more than 1% by weight, in particular not more than 0.1% by weight, at 20 ° C. Furthermore, these compounds should be soluble in common cosmetic oil components at room temperature to at least 0.1, in particular at least 1 wt .-%. The use of water-insoluble UV filters may therefore be preferred according to the invention.
  • UV filters which have a cationic group, in particular a quaternary ammonium group.
  • UV filters have the general structure U - Q.
  • the structural part U stands for a UV-absorbing group.
  • This group can be in principle of the known, usable in the cosmetics sector, above UV filters in which a group, usually a hydrogen atom, of the UV filter is replaced by a cationic group Q, in particular having a quaternary amino function.
  • Compounds from which the structural part U can be derived are, for example, substituted benzophenones, p-aminobenzoic acid esters, diphenylacrylic acid esters, cinnamic acid esters, salicylic acid esters, benzimidazoles and o-aminobenzoic acid esters.
  • Structural parts U which are derived from cinnamic acid amide or from N, N-dimethylaminobenzoic acid amide are preferred according to the invention.
  • the structural parts U can in principle be chosen such that the absorption maximum of the UV filters can be in both the UVA (315-400 nm) and in the UVB (280-315 nm) or in the UVC ( ⁇ 280 nm) range. UV filters with an absorption maximum in the UVB range, in particular in the range from about 280 to about 300 nm, are particularly preferred.
  • the structural part U also as a function of structural part Q, is preferably selected so that the molar extinction coefficient of the UV filter at the absorption maximum is above 15,000, in particular above 20,000.
  • the structural part Q preferably contains, as a cationic group, a quaternary ammonium group.
  • This quaternary ammonium group can in principle be connected directly to the structural part U, so that the structural part U represents one of the four substituents of the positively charged nitrogen atom.
  • one of the four substituents on the positively charged nitrogen atom is a group, especially an alkylene group of 2 to 6 carbon atoms, which functions as a compound between the structural portion U and the positively charged nitrogen atom.
  • the group Q has the general structure - (CH 2 ) ⁇ -N + R 1 R 2 R 3 X ' , in which x is an integer from 1 to 4, R 1 and R 2 independently of one another are C 1 Alkyl groups, R 3 is a d- 22 alkyl group or a benzyl group and X 'is a physiologically acceptable anion.
  • x preferably represents the number 3
  • R 1 and R 2 each represent a methyl group and R 3 represents either a methyl group or a saturated or unsaturated, linear or branched hydrocarbon chain having 8 to 22, in particular 10 to 18, carbon atoms
  • Physiologically acceptable anions are, for example, inorganic anions such as halides, in particular chloride, bromide and fluoride, sulfate ions and phosphate ions and organic anions such as lactate, citrate, acetate, tartrate, methosulfate and tosylate.
  • UV filters with cationic groups are the commercially available compounds cinnamic acid-trimethylammonium chloride (lncroquat ® UV-283) and dodecyl tosylate (Escalol ® HP 610).
  • the teaching of the invention also includes the use of a combination of several UV filters.
  • the combination of at least one water-insoluble UV filter with at least one UV filter having a cationic group is preferred.
  • the UV filters are usually contained in amounts of 0.01-5 wt .-%, based on the total application preparation. Amounts of 0.1-2.5 wt .-% are preferred.
  • Thickeners such as agar-agar, guar gum, alginates, xanthan gum, gum arabic, karaya gum, locust bean gum, linseed gums, dextrans, cellulose derivatives, e.g. For example, methylcellulose, hydroxyalkylcellulose and carboxymethylcellulose, starch fractions and derivatives such as amylose, amylopectin and dextrins, clays such. Bentonite or fully synthetic hydrocolloids such as e.g. Polyvinyl alcohol, structurants such as maleic acid and lactic acid, perfume oils, dimethyl isosorbide and cyclodextrins,
  • Solvents and mediators such as ethanol, isopropanol, ethylene glycol, propylene glycol, glycerol and diethylene glycol, quaternized amines such as methyl-1-alkylamidoethyl-2-alkylimidazolinium methosulfate dyes for staining the agent,
  • Antidandruff active ingredients such as Piroctone Olamine, Zinc Omadine and Climbazole, cholesterol,
  • Bodying agents such as sugar esters, polyol esters or polyol alkyl ethers, fats and waxes such as spermaceti, beeswax, montan wax and paraffins, fatty acid alkanolamides,
  • Complexing agents such as EDTA, NTA, ⁇ -alaninediacetic acid and phosphonic acids, swelling and penetrating agents such as glycerol, propylene glycol monoethyl ether, carbonates, bicarbonates, guanidines, ureas and primary, secondary and tertiary phosphates, opacifiers such as latex, styrene / PVP and styrene / acrylamide copolymers Pearlescing agents such as ethylene glycol mono- and distearate and PEG-3-distearate, preservatives,
  • Stabilizer for hydrogen peroxide and other oxidizing agents, antioxidants If the products according to the invention are an aerosol foam product, this necessarily contains a blowing agent.
  • Suitable blowing agents according to the invention are, for example, N 2 O, dimethyl ether, CO 2 , air and alkanes having 3 to 5 carbon atoms, such as propane, n-butane, isobutane, n-pentane and isopentane, and mixtures thereof. Preference is given to dimethyl ether, propane, n-butane, isobutane and mixtures thereof.
  • said alkanes, mixtures of said alkanes or mixtures of said alkanes with dimethyl ether are used as sole blowing agent.
  • the invention expressly also includes the concomitant use of propellants of the type of chlorofluorocarbons, but in particular of fluorocarbons.
  • the aerosol foam products according to the invention preferably contain the blowing agent in amounts of from 1 to 50% by weight, based on the total product. Amounts of 5 to 30 wt .-%, in particular from 5 to 20 wt .-%, are particularly preferred.
  • the products according to the invention may be both hair treatment agents which are rinsed out of the hair again after use and for a certain exposure time, i. so-called rinse-off products, as well as products that remain in the hair after application, i. so-called leave-on products.
  • the products according to the invention are preferably leave-on products.
  • the foamable compositions E1 to E11 were prepared by mixing the raw materials mentioned in Tables 1 and 2, respectively.
  • the compositions had a pH between 5.5 and 6.0.
  • Hydroxyethylcellulose (INCI name: Hydroxyethylcellulose) (Hercules)
  • Vinyl pyrrolidone vinyl acetate copolymer 60:40 (about 48-52% solids in water, INCI name: VP / VA copolymer) (BASF)
  • Hexadecyl (2-hydroxyethyl) dimethylammonium dihydrogen phosphate 27-33% solids in water, INCI name: hydroxyethyl cetyldimonium phosphates) (BASF)
  • the foamable compositions E1 to E11 were each filled in pressure-resistant aerosol containers in a conventional manner and, after the container had been closed and provided with a valve, in a weight ratio of 9: 1 with a propellant mixture of n-propane, n-butane and isobutane (48/49 / 3).
  • the containers were each the desired amount of tinting foam removed and incorporated evenly into freshly washed, towel-dry hair.
  • the hair was then with Help of a hair dryer dried, at the same time the design of the desired hairstyle was done. As a result, a temporary change in shape and color was achieved at the same time.
  • the color tone was determined and noted in each case under the daylight lamp (color tester HE240A) (Taschenlexikon der Weg Weg, A. Kornerup and JH Wanscher, 3rd unchanged edition 1981, MUSTER-SCHMIDT Verlag, Zurich, Göttingen) and is reproduced in Table 3.

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Abstract

L'invention concerne des produits sous forme de mousse aérosol ou de mousse en flacon-pompe pour colorer ou nuancer et simultanément mettre en forme des fibres kératiniques. Lesdits produits comprennent une composition moussante ou apte au moussage qui contient au moins un polymère filmogène et/ou fixateur et au moins un colorant anionique à remontée directe.
EP07788305A 2006-10-12 2007-08-08 Mousse de nuançage Withdrawn EP2061563A2 (fr)

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PCT/EP2007/058216 WO2008043588A2 (fr) 2006-10-12 2007-08-08 Mousse de nuançage

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US8030957B2 (en) 2009-03-25 2011-10-04 Aehr Test Systems System for testing an integrated circuit of a device and its method of use
EP2550953A1 (fr) * 2011-07-27 2013-01-30 KPSS-Kao Professional Salon Services GmbH Composition de gel post-moussant
FR2980675B1 (fr) * 2011-09-30 2013-11-01 Oreal Procede de mise en forme coloree temporaire des fibres keratiniques
FR3003752B1 (fr) * 2013-03-29 2015-03-20 Oreal Procede de coloration des fibres keratiniques
DE102013226807A1 (de) * 2013-12-20 2015-06-25 Henkel Ag & Co. Kgaa Pflegendes treibmittelhaltiges Haarkosmetikum
FR3045346B1 (fr) 2015-12-21 2019-08-30 L'oreal Composition de coloration comprenant un colorant direct de structure triarylmethane, et une silicone
JP6682567B2 (ja) * 2018-03-30 2020-04-15 ヘンケルジャパン株式会社 酸化染毛剤又は毛髪脱色剤の第1剤
US10646415B1 (en) * 2018-10-31 2020-05-12 L'oreal Hair-coloring compositions, aerosol products, and methods for coloring hair

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US2016962A (en) * 1932-09-27 1935-10-08 Du Pont Process for producing glucamines and related products
US1985424A (en) * 1933-03-23 1934-12-25 Ici Ltd Alkylene-oxide derivatives of polyhydroxyalkyl-alkylamides
US2703798A (en) * 1950-05-25 1955-03-08 Commercial Solvents Corp Detergents from nu-monoalkyl-glucamines
FR1583675A (fr) * 1968-01-19 1969-11-28
DE4342560A1 (de) * 1993-12-14 1995-06-22 Marbert Gmbh Ectoin und Ectoinderivate als Feuchtigkeitsspender in Kosmetikprodukten
DE4413686C2 (de) * 1994-04-20 1996-10-24 Henkel Kgaa Kationische Zuckertenside, Verfahren zu ihrer Herstellung und deren Verwendung
JP3241940B2 (ja) * 1994-07-12 2001-12-25 カネボウ株式会社 泡状酸性染毛料
ATE223693T1 (de) * 1996-01-05 2002-09-15 Schwarzkopf Gmbh Hans Haarfärbemittel und haarfärbemittelbrei zum färben von humanhaaren
DE19738866A1 (de) * 1997-09-05 1999-03-11 Henkel Kgaa Schaumarme Tensidmischungen mit Hydroxymischethern
US6197696B1 (en) * 1998-03-26 2001-03-06 Matsushita Electric Industrial Co., Ltd. Method for forming interconnection structure
DE10221449A1 (de) * 2002-05-15 2003-11-27 Wella Ag Aerosolschaum- oder Pumpschaumprodukt zur Haarbehandlung

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CA2666186A1 (fr) 2008-04-17
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