GB2186890A - Colouring keratinous material with the aid of a polysiloxane containing an S:-OH moiety - Google Patents

Colouring keratinous material with the aid of a polysiloxane containing an S:-OH moiety Download PDF

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Publication number
GB2186890A
GB2186890A GB08700620A GB8700620A GB2186890A GB 2186890 A GB2186890 A GB 2186890A GB 08700620 A GB08700620 A GB 08700620A GB 8700620 A GB8700620 A GB 8700620A GB 2186890 A GB2186890 A GB 2186890A
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hair
colour
polysiloxane
bleached
portions
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GB08700620A
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GB8700620D0 (en
GB2186890B (en
Inventor
Petrina Felicity Fridd
Rosemary Margaret Taylor
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Dow Silicones UK Ltd
Dow Silicones Corp
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Dow Corning Ltd
Dow Corning Corp
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Priority to CA000529779A priority Critical patent/CA1290105C/en
Priority to US07/015,185 priority patent/US4898595A/en
Publication of GB8700620D0 publication Critical patent/GB8700620D0/en
Priority to FR878702295A priority patent/FR2594688B1/en
Priority to DE19873706053 priority patent/DE3706053A1/en
Publication of GB2186890A publication Critical patent/GB2186890A/en
Application granted granted Critical
Publication of GB2186890B publication Critical patent/GB2186890B/en
Anticipated expiration legal-status Critical
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    • 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
    • A61K8/84Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds obtained by reactions otherwise than those involving only carbon-carbon unsaturated bonds
    • A61K8/89Polysiloxanes
    • A61K8/891Polysiloxanes saturated, e.g. dimethicone, phenyl trimethicone, C24-C28 methicone or stearyl dimethicone
    • A61K8/892Polysiloxanes saturated, e.g. dimethicone, phenyl trimethicone, C24-C28 methicone or stearyl dimethicone modified by a hydroxy group, e.g. dimethiconol
    • 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

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  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Birds (AREA)
  • Epidemiology (AREA)
  • Cosmetics (AREA)
  • Coloring (AREA)
  • Compositions Of Macromolecular Compounds (AREA)

Abstract

A method of colouring keratinous material comprises the steps of applying a hair colorant system to the material and applying before, during or after application of the colorant system a polysiloxane comprising at least one siloxane unit having the general formula <IMAGE> in which each R represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon atoms, or an alkoxy or alkoxyalkoxy group, in which each alkoxy group has up to 7 carbon atoms and a has the value 1 or 2, any other siloxane units of the polysiloxane being siloxane units of the general formula <IMAGE> in which each Z represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon atoms, or an alkoxy or alkoxyalkoxy group in which each alkoxy group has up to 7 carbon atoms and c has the value 0, 1, 2 or 3. Preferably, the polysiloxane is a substantially linear material according to the average formula HO(R2SiO)nH in which R represents an alkyl group having 1 to 6 carbon atoms or a phenyl group and n has a value in the range 600 to 1700. The siloxane provides improved depth of colour or colour retention with colourations of the "permanent", "semi-permanent" and "temporary" types.

Description

GB 2 186 890A 1
SPECIFICATION
Colouring keratinous material The present invention is concerned with colouring keratinous material and is particularly con- 5 cerned with'colouring human hair.
Human hair comprises fibres which have a layer of flat scales pointing outward from root to tip. Although the individual scales are thin, they are long and overlap each other forming a continuous, multilayered shield around the fibre. Within this shield lies hair cortex which consti tutes the bulk of the hair. Dispersed throughout the cortex are pigment particles called melanin. 10 Their number and distribution pattern determine the hair colour.
Hair is composed almost entirely of keratin i.e. eystine-containing proteins. It is understood that the two main protein fractions are lowand high-sulphur proteins. The low-sulphur fraction consists of proteins of high molecular weight and high degree of molecular organization (a helical) whereas the high sulphur proteins are of low molecular weight and do not exhibit any 15 regular secondary structure. Both proteins participate in a composite filament-matrix texture which is the dominant structural element of hair cortex. The filaments are composed of low sulphur proteins and the surrounding matrix is made up of high-sulphur proteins. The chemical composition of the scales differs from that of the fibre and scale cells do not apparently contain any low-sulphur proteins. The exposed portion of each scale is heavily cross-linked by cystine 20 and this fact, in conjunction with the multilayered shield effect, makes the scales a formidable barrier to penetration by chemicals to the interior of the hair fibre.
It is a practice to modify the colour of human hair by the use of hair colorants containing dyes. These hair colorants may be divided conveniently into those which give "permanent", "semi-permanent" or -temporary- results. By -permanent- is meant that the result of the 25 colouring process remains fast to the action of shampoos, perspiration, sunlight and mechanical abrasion until the hair grows out. By -semi-permanent- is meant that the result of the colouring process remains fast to the action of shampoos, perspiration, sunlight and mechanical abrasion for approximately 6 to 10 washings with shampoo. By -temporaryis meant that the result of the colouring process may be removed in from one to three shampooings. 30 In permanent hair colorants the dyes used (at least until recent years) have been predominantly of the oxidation type whereby a water insoluble coloured material is produced inside the hair fibre as a result of oxidation of colourless intermediates which penetrate the cortex. The colour forming reactions are accomplished by primary intermediates, secondary intermediates and oxi dants. Primary intermediates include for example p-phenylenediamine, p- toiuenedia mine, p-amino- 35 diphenylamine and o,p-aminophenol. p-amino-o-cresol, toluene 2,5 diamine, N-phenyl-p-phenylen ediamine, pyrogallol, 4,4'-diaminodiphenylene-diamine, p- methylaminophenol, o-phenylendiamine, toluene 3,4 diamine, p-chloro-o-phenylenediamine, o-chloro-pphenylenediamine and 2,6 diamino pyridine. The secondary intermediates, also known as couplers or modifiers, are used in conjunc tion with the primary intermediates to produce dyes. Secondary intermediates include for 40 example m-aminophenol, resorcinol, m-phenylenediamine, hydroquinone, resorcine, toluene 2,4 diamine, l-naphthol, 4-methoxy-m-phenylene-diamine or a-naphthol and poly- hydroxyphenols. It is believed that the initial oxidation product of p-phenylenediamine for example is benzoquinone diimine. It may react with p-phenylenediamine to form a dye but the diimine reacts much faster with secondary intermediates to form a variety of dyes. By selection of appropriate intermedi- 45 ates, various colours may be achieved. The oxidant (otherwise known as the developer) e.g.
hydrogen peroxide, sodium perborate, urea peroxide or sodium percarbonate, is usually mixed with the dye intermediates just before use. In addition to its function in relation to the dye intermediates hydrogen peroxide may exert some influence on the colouring of the hair by bleaching the melanin. Autoxidative dyes have also been proposed with a view to avoiding 50 addition of separate oxidant.
It is a practice to include in permanent hair colourants nitro dyes which dye the hair without oxidation e.g. nitro derivatives of aminophenols and benzenediamines, for example nitro-p-pheny lendiamine, p-nitro-o-phenylenediamine, 4-nitro-o-phenylenediamine, 2amino-4-nitrophenol, 2-am- ino-5-nitrophenol, picramic acid, 1,4 diaminoanthraquinone and picric acid. The nitro dyes and 55 also anthraquinone dyes and azobenzene dyes are also commonly used for semi-permanent hair colorants. For example nitrophenylene diamines and nitroaminophenols provide a range of yellow, orange, red and violet colours and amino-anthraquinones provide blue colours. Dyestuffs which may be employed for permanent or semi-permanent hair colorant systems also include for example plant hair dyes, for example those derived from henna, walnut or soybean and metallic 60 hair dyes for example those which employ insoluble salts of for example iron, copper, lead, manganese, nickel or cadmium.
It is a practice to include in permanent and semi-permanent hair colorant compositions not only water and the dye or dye intermediates but also surfactants (to enhance wetting, cleansing, spreading and viscosity control) for example ammonium oleate, alkanolamides, fatty alkyl sul- 65 2 GB2186890A 2 phates, thickeners for example carboxy methyl cellulose, materials to promote diffusion of the dye into hair and materials for solubilizing the dyes. Conditioning agents may also be included.
Temporary hair colorants make use of generally higher molecular weight dyes which do not penetrate the hair structure significantly but rather become deposited on the surface. Dyestuffs which may be employed for temporary hair colorant systems include oxidation dyes, azo dyes, 5 quinoline dyes, acridine dyes, azine dyes, oxazine dyes, indigoid dyes, anthraquinone dyes, stilkene dyes and thiazole dyes. Temporary hair colorant systems may also employ pigments, for example iron oxides, titanium dioxide or carbon black and may employ a binder, for example methacrylate, acrylate, vinylacetate or vinyl-pyrrolidone polymers or copolymers to assist in binding the hair colorant to the hair, together with dispersion media for example water, acetone, 10 ionic or non-ionic surace active agents, lower alcohols, polyhydric alcohols, higher alcohols, fatty acids and liquid hydrocarbons with a view to ease of application of the colorant and desired texture of the coloured hair.
It is a practice in the care of human hair to apply so-called conditioner compositions with a view to enhancing desired qualities of the hair for example ease of combing, detangling, body, 15 shine, texture, split ena mending, prevention of static build up and general manageability. It has been proposed to include in conditioner compositions various silicone products, including for example emulsions of the amino silicone polymer amodimethicone. E.P. 95 238 discloses ma terials intended for use as a conditioner for application to hair after shampooing and comprising preferably inter alia certain siloxanes including siloxane units having certain amine, carboxylic, 20 amido groups or quatemised amino groups. It has been for several years the normal practice to apply conditioner compositions, which may include for example one or more silicone polymers, to the hair after the operation of colouring the hair has been completed.
We have now found that an improvement in the depth of colour of keratinous material treated with a hair colorant system and in the number of washings through which the colour is retained 25 by the material may be enhanced when certain hydroxyfunctional silicones are employed in conjunction with the colorant system.
The present invention provides, in one of its aspects, in a method of colouring keratinous material by means of a hair colorant system, the use of a polysiloxane comprising at least one siloxane unit having the general formula 30 (i) RJHQ&O (3-a) 2 35 in which each R represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon atoms, or an alkoxy or alkoxyalkoxy group, in which each alkoxy group has up to 7 carbon atoms and a has the value 1 or 2, any other siloxane units of the polysiloxane being of the general formula 40 (ii) zsio (4-c) 2 45 in which each Z represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon atoms, or an alkoxy or alkoxyalkoxy group in which each alkoxy group has up to 7 carbon atoms and c has the value 0, 1, 2 or 3 to enhance the depth of colour and/or prolong retention of colour imparted to the hair by the colorant system. 50 The invention also provides a method of colouring keratinous material comprising the steps of applying a hair colorant system to the material and applying before, during or after application of the colorant system a polysiloxane comprising at least one siloxane unit having the general formula 55 (i) RJ1-10)SiO (3-a) 2 60 in which each R represents a 'monovalent hydrocarbon group having 1 to 12 inclusive carbon atoms, or an alkoxy or alkoxyalkoxy group, in which each alkoxy group has up to 7 carbon atoms and a has the value 1 or 2, any other siloxane units of the polysiloxane being siloxane units of the general formula 3 GB2186890A 3 (ii) zesio (4-c) 2 5 in which each Z represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon atoms, or an alkoxy or alkoxyalkoxy group, in which each alkoxy group has up to 7 carbon atoms and c has the value 0, 1, 2 or 3.
The polysiloxanes are characterised by the presence of at least one silicon-bonded hydroxyl 10 group. Depending on the value of a, the siloxane units (i) may be present in the polysiloxane as terminal units or as linking units of the polymer or both and may provide any desired proportion of the total siloxane units in the polymer, provided at least one SiOH group is present. Preferably siloxane units (i) provide from about 0.1 to about 20 percent, more preferably 1 to 5 percent of the total siloxane units. However, they may if desired provide 100 percent of the total units in 15 the polysiloxane. Any remaining siloxane units of the polysiloxane are those according to the general formula (ii). In units (i) and (5) each R and Z may be, for example, an alkyl group having 1 to 6 carbon atoms for example methyl, propyl or butyl, or an aryl group, for example phenyl, or an unsatu20 rated aliphatic or alicyclic group, for example vinyl or cyclohexenyl, or an alkoxy or alkoxyalkoxy 20 group having less than 7 carbon atoms, for example methoxy, ethoxy, propoxy or methoxyethoxy. Preferably the R and Z substituents are selected from alkyl or alkoxy groups having from 1 to 4 inclusive carbon atoms and phenyl groups. The value of c may be 0, 1, 2 or 3 and thus the units (ii) may provide terminal, main chain or branching units in the polysiloxane.
The polysiloxane may be linear or branched and may have a consistency ranging from a 25 mobile liquid to a resinous material. Good results have been achieved by use of materials having viscosities in the range 2 x 10 5 to 1 M2/S. The preferred polysiloxanes are the liquid a,co hydroxy polydiorganosiloxanes which have two units of formula (i) in which a has the value 2 and R represents a methyl group, and a plurality of units of formula (5) in which c has the value 2. Conveniently each Z represents a methyl group. Preferred polysiloxanes are according to the 30 average formula HO(R2SiOLI-1 where each R represents a methyl group and n has a value in the range 600 to 1700. The 35 polysiloxane is preferably applied to the hair or other keratinous material as an aqueous emulsion of fine particle size.
In a method according to the invention the polysiloxane may provide the sole polysiloxane employed in the method. However, other polysiloxanes may also be present if desired. For example when further enhancement of durability of the colour on the hair is desired, it is 40 sometimes possible to achieve this by employing, in addition to the polysiloxane as aforesaid, a polysiloxane having silicon-bonded hydroxyl and/or alkoxy groups together with silicon-bonded groups having active amino groups, for example, groups such as =-Si(CH,), NH, and =-SiCH,CH,NH(CH2)3NH,. Such amino-containing polysiloxanes are known and include, for example, amodimethicone. 45 In a method according to the invention the hair colorant system may be any of those conventionally used for the temporary, semi-permanent or permanent colouring of hair as re ferred to above. The hair colorant system may conveniently comprise water based anionic, nonionic or cationic emulsions and may include usual additives as referred to above. Various commercially available hair colorant systems may be employed in a method according to the 50

Claims (6)

  1. invention, for example those supplied by Elida Gibbs, Bristol Myers and.
    Clairol under the trade names Harmony, Glints and Clairol respectively.
    In a method according to the invention the polysiloxane may be applied to the keratinous material in admixture with the colorant system, but it is preferably applied before or after application of the colorant system for example in a shampoo used on the keratinous material 55 before application of the colorant system, or in a conditioner rinse applied to the keratinous material after application of the colorant system.
    A method for colouring hair according to the invention may be carried out for example by first washing the hair using a conventional shampoo formulation comprising for example about 20% by weight sodium laurylethersulphate, rinsing with water, drying to the towel dry stage as by 60 padding it to a substantially dry condition and thereafter applying the chosen polysiloxane in aqueous emulsion to the hair whilst the hair is in this substantially dry condition. The hair, after about one minute, may be brought again to the towel dry stage and the colorant system applied and left in place for about 15 to 20 minutes. The hair may then be rinsed to remove residual colouring matter and dried by forced hot air treatment. 65 4 GB2186890A 4 A method according to the invention may be employed in the colouring of virgin hair, or in the colouring of hair which has become damaged e.g. as a result of bleaching or of permanent waving, to provide the hair with an enhanced depth of colour. Using the preferred polysiloxanes one may also achieve a prolonged retention of the imparted colour as compared with other methods. 5 There now follows a description of examples of the invention. In the examples, the symbol Me represents the methyl group. All proportions mentioned in the examples are by weight unless otherwise specified.
    In the examples, various commercially available hair colorant systems were used strictly in accordance with their supplier's instructions to colour switches of virgin hair of European origin, 10 portions of which had been bleached and portions of which remained unbleached, to provide coloured standard samples of bleached and unbleached virgin hair of each colour. Comparative samples of coloured hair were prepared from similar switches of virgin and bleached virgin hair using control compositions or polysiloxane compositions as a treatment for the commercial hair colorant systems. The colour of the coloured bleached and unbleached portions of the samples 15 was observed and compared with the standard shortly after the colouring operation and, for some samples, after several washes. Except where otherwise specified herein, the various commercially available hair colorant systems used were of the semi- permanent type.
    Bleaching of portions of the virgin hair switches was carried out as follows. An end portion of each switch of virgin hair was dipped for two hours at room temperature in a solution formed 20 by mixing equal parts by volume of solutions A and B. Solution A was a 50% by volume aqueous solution of hydrogen peroxide. Solution B was a mixture of 13.5 parts by volume ammonia (sp.gr 0.88) 3 parts by volume Empicol ESB 3 (a sodium lauryl ether sulphate) and 83.5 parts by volume water. After two hours, the hair was removed from the solution, rinsed in running water and then dried using air heated to 7WC. 25 Control composition 1 was a 0.35% solids aqueous solution of the quaternary ammonium salt cetalkonium chloride. Control composition
  2. 2 was a 0.35% solids aqueous solution of a polysilox ane polyoxyalkylene copolymer according to the average general formula Me3SiO(Me2SO,,(MeW SiO),SiMe3 where R' represents -C,HIO(C2H,O)n(CHIC2H,O),,H as supplied by Dow Coming Limited under the trade name Dow Coming 193 Surfactant. 30 Polysiloxane 1 was an aqueous emulsion of pH of about 7.2 containing 0. 35% of a hydroxyl terminated polydimethylsiloxane having the average formula HO(Me2SiO),H in which n has a value of about 1100 100.
    Polysiloxane 2 was an aqueous emulsion formed from 0.35% of a hydroxyl terminated polydi- methylsiloxane of average formula HO(Me,SiO).H in which n has a value of about 20, water and 35 Tergitol TIVIN6, isolaureth-6, a nonionic surfactant.
    In examples 1 and 2 the various hair colorant systems, with and without pretreatment using control compositions and polysiloxanes 1 and 2 were employed to colour switches of bleached and unbleached virgin hair as aforesaid in the following way. The samples produced without pretreatment provided the standard samples and those produced with pretreatment provided the 40 comparative samples. The hair was shampooed using a 20% active sodium laurylether sulphate water based composition. The hair was rinsed and padded dry to a towel dry condition. The selected colorant, made up according to the supplier's instructions was applied to bleached and unbleached portions of the treated hair by covering the hair with the colorant for twenty minutes. The hair was rinsed in running water until the water was colourless. The hair was dried 45 in air heated to 70'C until the hair became dry. In those cases in which a pretreatment with a control or polysiloxane 1 was employed, after the hair had been padded dry following the initial shampoo and rinse stages, the bleached and unbleached portions of the hair were dipped for one minute in the control composition or the polysiloxane. The hair was removed from the composition and padded dry to a towel dry condition. The selected colorant was t ' hen applied to 50 the hair, the hair rinsed and dried as aforesaid. The colour of the bleached and unbleached portions of the samples was observed and compared to that of the standards shortly after the hot air drying step.
    Example 1 55 Control compositions 1 and 2 and polysiloxane 1 were evaluated as pretreatments for hair colorant systems using products supplied by Elida Gibbs under the designation Harmony Auburn and Harmony Rich Chestnut using the method described above. Polysiloxane 2 was evaluated using Harmony Auburn. By inspection of the samples coloured with Harmony Rich Chestnut it was found that the depth of colour of the coloured bleached and unbleached portions of the 60 sample made using control composition 2 was the same as the depth of colour of the corre sponding portions of the coloured standard, whereas control composition 1 gave slightly more depth of colour on the bleached and unbleached portions than the standard. In comparison, the samples made using polysiloxane 1 had a greater depth of colour on the bleached and un bleached portions then the corresponding portions of the coloured sample made using control 65 GB2186890A 5 composition 1.
    By inspection of the samples coloured with Harmony Auburn, it was found that the depth of colour of the coloured bleached and unbleached portions of the samples made using control compositions 1 and 2 were similar to each other and greater than the depth of colour of corresponding portions of the standard. In comparison, the sample made using polysiloxane 1 5 had a greater depth of colour on its bleached and unbleached portions than the corresponding portions of the sample made using control composition 1. In conjunction with Harmony Auburn and in conjunction with Harmony Rich Chestnut, the coloured bleached and unbleached portions of the samples made using polysiloxane 1 showed better depth of colour as compared with the corresponding portions of the standard. Using polysiloxane 2 and Harmony Auburn, some im- 10 provement in depth of colour was achieved as compared with the corresponding portions of the standard.
    Example 2 Switches of bleached and unbleached virgin hair were coloured with Harmony Auburn and 15 Harmony Rich Chestnut with and without pretreatment using polysiloxane 1 and control compo sitions, using the method described above. The coloured samples were subjected to wash cycles each involving washing the sample in 20% active aqueous solution of sodium lauryl ether sulphate, rinsing with clean water, a second wash in 20% active sodium lauryl ether sulphate, and a second rinse with clean water followed by drying with air heated to 7WC. After each 20 wash cycle each sample was inspected and the colour noted. It was noted that some colour from each sample was washed out. The wash cycles were repeated until the colour on the bleached and unbleached portions of each comparative sample was the same as the colour of the corresponding portion of its washed standard counterpart. The number of wash cycles completed prior to attaining this colour match is shown in the following table: 25 Number of Washes to Match Sample Pretreatment Auburn Rich Chestnut Control 1 2 5 Control 2 3 0 30 Polysiloxane 1 2 7 These results indicate that hair samples coloured by a method according to the invention retain their colour through more shampooings than hair coloured without pretreatment using a polysiloxane having units of formula (i). 35 Example 3 Polysiloxanes 1 and 2 were evaluated as post-treatment for hair colorant systems using Harmony Auburn using the method employed for Examples 1 and 2 with the exception that no pretreatment was carried out, but a post-treatment was carried out after application of the 40 colorant and after the associated rinsing step.
    The coloured hair was padded dry. The post-treatment comprised application to the hair of control composition 1 or a polysiloxane by dipping the colored hair into the appropriate compo sition and then drying the hair in air heated to 70'C. A good depth of colour, both on bleached portions of the hair and on unbleached portions, was observed on samples in which polysilox- 45 anes 1 or 2 had been used as post-treatment. This depth of colour was better than those of the corresponding standard counterparts.
    Example 4 Samples produced as described in Example 3 were subjected to wash cycles and inspections 50 as described in Example 2. The number of wash cycles completed prior to the colour on the bleached and unbleached portions of each comparative sample being the same as the colour of the corresponding portion of its washed standard counterpart is shown in the following table:
    Sample Posttreatment Number of Washes to Match 55 Polysiloxane 1 4 Polysiloxane 2 1 CLAIMS 1. In a method of colouring keratinous material by means of a hair colorant system, the use 60 of a polysiloxane comprising at least one siloxane unit having the general formula 6 GB2186890A 6 (i) RJ1H10)lSilD (3-a) 2 5 in which each R represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon atoms, or an alkoxy or alkoxyalkoxy group, in which each alkoxy group has up to 7 carbon atoms and a has the value 1 or 2, any other siloxane units of the polysiloxane being of the general formula 10 (ii) zsio (4-c) 2 15 in which each Z represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon atoms, or an alkoxy group or alkoxyalkoxy group in which each alkoxy group has up to 7 carbon atoms and c has the value 0, 1, 2 or 3 to enhance the depth of colour and/or prolong retention of colour imparted to the hair by the colorant system. 20 2. A method of colouring keratinous material comprising the steps of applying a hair colorant system to the material and applying before, during or after application of the colorant system a polysiloxane comprising at least one siloxane unit having the general formula (i) Ra(HO)SiO 25 (3-a) 2 in which each R represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon 30 atoms, or an alkoxy or alkoxyalkoxy group, in which each alkoxy group has up to 7 carbon atoms and a has the value 1 or 2, any other siloxane units of the polysiloxane being siloxane units of the general formula (ii) ZSiO 35 (4-c) 2 in which each Z represents a monovalent hydrocarbon group having 1 to 12 inclusive carbon 40 atoms, or an alkoxy or alkoxyaikoxy group in which each alkoxy group has up to 7 carbon atoms and c has the value 0, 1, 2 or 3.
  3. 3. A method according to Claim 1 or Claim 2 wherein the polysiloxane is a substantially linear material according to the average formula 45 HO(R2SiOW in which R represents an alkyl group having 1 to 6 carbon atoms or a phenyl group and n has a value in the range 600 to 1700.
  4. 4. A method according to Claim 3 wherein n has a value of about 1100 100. 50
  5. 5. A method according any one of the preceding Claims wherein the keratinous material is human hair, the hair is padded to a substantially dry condition, the colorant system applied to the hair whilst in this substantially dry condition and the polysiloxane is applied to the hair in the form of an aqueous emulsion before or after application of the colorant system to the hair.
  6. 6. A method of colouring hair substantially as hereinbefore described especially with refer- 55 ence to the Examples.
    Printed for Her Majesty's Stationery Office by Burgess & Son (Abingdon) Ltd, Dd 8991685, 1987.
    Published at The Patent Office, 25 Southampton Buildings, London, WC2A 1 AY, from which copies may be obtained.
GB8700620A 1986-02-26 1987-01-12 Colouring keratinous material Expired - Lifetime GB2186890B (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
CA000529779A CA1290105C (en) 1986-02-26 1987-02-16 Colouring keratinous material
US07/015,185 US4898595A (en) 1986-02-26 1987-02-17 Coloring keratinous material
FR878702295A FR2594688B1 (en) 1986-02-26 1987-02-23 COLORING PROCESS FOR KERATIN MATERIAL
DE19873706053 DE3706053A1 (en) 1986-02-26 1987-02-25 METHOD FOR COLORING KERATINE-LIKE MATERIAL

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GB08604705A GB2186889A (en) 1986-02-26 1986-02-26 Colouring keratinous material

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GB8700620D0 GB8700620D0 (en) 1987-02-18
GB2186890A true GB2186890A (en) 1987-08-26
GB2186890B GB2186890B (en) 1990-05-16

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GB8700620A Expired - Lifetime GB2186890B (en) 1986-02-26 1987-01-12 Colouring keratinous material

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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2910298A1 (en) * 2006-12-20 2008-06-27 Oreal Composition for coloring keratinic fibers, especially hair, comprises a fluorescent dye or optical brightener and two silicones that react together by hydrosilylation, condensation or crosslinking
FR2910297A1 (en) * 2006-12-20 2008-06-27 Oreal Dyeing composition for keratin fibers, especially human hair, comprises silicone-forming reactive components, hydrophilic direct dye and optionally organic solvent
US7740664B2 (en) 2006-12-20 2010-06-22 L'oreal S.A. Composition comprising at least one silicone compound and at least one organosilane
US7780742B2 (en) 2006-12-20 2010-08-24 L'oreal S.A. Composition comprising a compound X and A compound Y, at least one of which is a silicone, and a hydrophobic direct dye
FR3097439A1 (en) * 2019-06-24 2020-12-25 L'oreal Composition comprising at least one alkoxysilane, at least one non-aminated silicone and water, the alkoxysilane / non-aminated silicone mass ratio varying from 95: 5 to 5: 95
WO2020260273A1 (en) * 2019-06-24 2020-12-30 L'oreal Composition comprising at least one alkoxysilane, at least one non-amino silicone and water, the alkoxysilane/non-amino silicone mass ratio ranging from 95/5 to 5/95
WO2022129157A1 (en) * 2020-12-17 2022-06-23 L'oreal Composition comprising at least one silicone of formula (i), at least one silicone of formula (ii) and at least one coloring agent
FR3117843A1 (en) * 2020-12-17 2022-06-24 L'oreal Process for dyeing keratin fibers using at least one metallic compound
FR3117860A1 (en) * 2020-12-17 2022-06-24 L'oreal Composition comprising at least one silicone of formula (I), at least one silicone of formula (II), at least one metal compound and at least one coloring agent
FR3117861A1 (en) * 2020-12-17 2022-06-24 L'oreal Composition comprising at least one silicone of formula (I), at least one silicone of formula (II) and at least one coloring agent

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GB2186889A (en) * 1986-02-26 1987-08-26 Dow Corning Colouring keratinous material
AU8900998A (en) * 1998-04-27 1999-11-16 Procter & Gamble Company, The Cosmetic method for treating coloured hair to reduce colour fade
FR2783416B1 (en) 1998-08-26 2002-05-03 Oreal DYE COMPOSITION FOR KERATINIC FIBERS WITH CATIONIC DIRECT DYE AND SILICONE
US6986886B2 (en) 2000-12-13 2006-01-17 The Procter & Gamble Company Hair conditioning compositions and their use in hair coloring compositions
WO2002047632A2 (en) * 2000-12-13 2002-06-20 The Procter & Gamble Company Hair conditioning compositions comprising aminofunctiona polysiloxanes
US7056351B2 (en) 2000-12-13 2006-06-06 The Procter & Gamble Company Oxidative hair dye composition containing polyakyleneglyco(n)alkylamine and a solid fatty compound
FR2860715B1 (en) * 2003-10-10 2006-03-03 Oreal COSMETIC COMPOSITION CONTAINING AN AMINO SILICONE AND A THICKENING AGENT COMPRISING AT LEAST ONE SUGAR PATTERN AND USES THEREOF
EP1642569A1 (en) * 2004-09-24 2006-04-05 The Procter & Gamble Company Method of pre-treatment for hair colourants and bleaches
WO2006036746A1 (en) * 2004-09-24 2006-04-06 The Procter & Gamble Company Method of pre-treatment for hair colourants and bleaches

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Cited By (11)

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FR2910298A1 (en) * 2006-12-20 2008-06-27 Oreal Composition for coloring keratinic fibers, especially hair, comprises a fluorescent dye or optical brightener and two silicones that react together by hydrosilylation, condensation or crosslinking
FR2910297A1 (en) * 2006-12-20 2008-06-27 Oreal Dyeing composition for keratin fibers, especially human hair, comprises silicone-forming reactive components, hydrophilic direct dye and optionally organic solvent
EP1952800A3 (en) * 2006-12-20 2008-10-15 L'Oréal Dye composition containing a reactive silicone and a fluorescent dye, and dyeing process using the composition
US7740664B2 (en) 2006-12-20 2010-06-22 L'oreal S.A. Composition comprising at least one silicone compound and at least one organosilane
US7780742B2 (en) 2006-12-20 2010-08-24 L'oreal S.A. Composition comprising a compound X and A compound Y, at least one of which is a silicone, and a hydrophobic direct dye
FR3097439A1 (en) * 2019-06-24 2020-12-25 L'oreal Composition comprising at least one alkoxysilane, at least one non-aminated silicone and water, the alkoxysilane / non-aminated silicone mass ratio varying from 95: 5 to 5: 95
WO2020260273A1 (en) * 2019-06-24 2020-12-30 L'oreal Composition comprising at least one alkoxysilane, at least one non-amino silicone and water, the alkoxysilane/non-amino silicone mass ratio ranging from 95/5 to 5/95
WO2022129157A1 (en) * 2020-12-17 2022-06-23 L'oreal Composition comprising at least one silicone of formula (i), at least one silicone of formula (ii) and at least one coloring agent
FR3117843A1 (en) * 2020-12-17 2022-06-24 L'oreal Process for dyeing keratin fibers using at least one metallic compound
FR3117860A1 (en) * 2020-12-17 2022-06-24 L'oreal Composition comprising at least one silicone of formula (I), at least one silicone of formula (II), at least one metal compound and at least one coloring agent
FR3117861A1 (en) * 2020-12-17 2022-06-24 L'oreal Composition comprising at least one silicone of formula (I), at least one silicone of formula (II) and at least one coloring agent

Also Published As

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GB8700620D0 (en) 1987-02-18
GB2186890B (en) 1990-05-16
GB2186889A (en) 1987-08-26
JPH039086B2 (en) 1991-02-07
JPS62209015A (en) 1987-09-14
GB8604705D0 (en) 1986-04-03

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