EP1796984A1 - Duftendes kit mit kosmetischem mittel - Google Patents
Duftendes kit mit kosmetischem mittelInfo
- Publication number
- EP1796984A1 EP1796984A1 EP05752286A EP05752286A EP1796984A1 EP 1796984 A1 EP1796984 A1 EP 1796984A1 EP 05752286 A EP05752286 A EP 05752286A EP 05752286 A EP05752286 A EP 05752286A EP 1796984 A1 EP1796984 A1 EP 1796984A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- acid
- hair
- instructions
- amino
- cosmetic
- 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.)
- Ceased
Links
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- 238000006116 polymerization reaction Methods 0.000 description 10
- 229910052708 sodium Inorganic materials 0.000 description 10
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- 125000000129 anionic group Chemical group 0.000 description 9
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- KJCVRFUGPWSIIH-UHFFFAOYSA-N 1-naphthol Chemical compound C1=CC=C2C(O)=CC=CC2=C1 KJCVRFUGPWSIIH-UHFFFAOYSA-N 0.000 description 8
- OSCJHTSDLYVCQC-UHFFFAOYSA-N 2-ethylhexyl 4-[[4-[4-(tert-butylcarbamoyl)anilino]-6-[4-(2-ethylhexoxycarbonyl)anilino]-1,3,5-triazin-2-yl]amino]benzoate Chemical compound C1=CC(C(=O)OCC(CC)CCCC)=CC=C1NC1=NC(NC=2C=CC(=CC=2)C(=O)NC(C)(C)C)=NC(NC=2C=CC(=CC=2)C(=O)OCC(CC)CCCC)=N1 OSCJHTSDLYVCQC-UHFFFAOYSA-N 0.000 description 8
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Classifications
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- A61Q5/10—Preparations for permanently dyeing the hair
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- B65D85/00—Containers, packaging elements or packages, specially adapted for particular articles or materials
- B65D85/70—Containers, packaging elements or packages, specially adapted for particular articles or materials for materials not otherwise provided for
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- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21H—PULP COMPOSITIONS; PREPARATION THEREOF NOT COVERED BY SUBCLASSES D21C OR D21D; IMPREGNATING OR COATING OF PAPER; TREATMENT OF FINISHED PAPER NOT COVERED BY CLASS B31 OR SUBCLASS D21G; PAPER NOT OTHERWISE PROVIDED FOR
- D21H17/00—Non-fibrous material added to the pulp, characterised by its constitution; Paper-impregnating material characterised by its constitution
- D21H17/03—Non-macromolecular organic compounds
- D21H17/05—Non-macromolecular organic compounds containing elements other than carbon and hydrogen only
- D21H17/17—Ketenes, e.g. ketene dimers
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K2800/00—Properties of cosmetic compositions or active ingredients thereof or formulation aids used therein and process related aspects
- A61K2800/80—Process related aspects concerning the preparation of the cosmetic composition or the storage or application thereof
- A61K2800/87—Application Devices; Containers; Packaging
Definitions
- the present application relates to a kit containing at least one cosmetic agent.
- the application relates to a kit comprising at least one cosmetic agent, at least one packaging and at least one instructions for use.
- the packaging In addition to the protection of the sales article contained therein, the packaging also often has the function of presenting the article in an appealing manner.
- packages are usually designed so that they are visually appealing and provide the consumer already essential information about the product.
- the fragrance of a product is information that packaging can barely convey, rather packaging often just prevents the customer from perceiving the fragrance of the product.
- the fragrance of a cosmetic agent is an essential information, since this fragrance influences, for example, in the case of shower gels, shampoos or conditioners, the fragrance of the skin or hair cleaned therewith.
- fragrance is an essential part of the aesthetic sensation that a cosmetic product induces in the consumer.
- the European patent application EP 004 463 A1 proposes the application or spraying of fragrances or solutions of such fragrances onto the interior of packaging cartons. Problems with using this method are that the fragrances thus applied are absorbed by most cardboard materials only slowly and accordingly run along the cardboard and form visible stains. Furthermore, in particular the spraying of the fragrances and the associated fragrance misting leads to considerable loss of substance and an odor nuisance of the environment.
- German Patent Application DE 32 01 941 A1 proposes incorporating the fragrance into a higher-viscosity paste before application and applying this paste to the packaging material by spraying, knife-coating or brushing.
- Preferred pastes contain a gelling agent, wherein highly dispersed silicic acid is used as the gelling agent.
- the absorbency of the packaging materials is of great importance, since these pastes lead to poorly absorbent materials to stains or noses or remain as a greasy layer. With the use of such absorbent packages, it has been shown in practice that due to the interactions of the fragrances with the cardboard materials, sometimes unpleasant fragrances can arise.
- a film-forming agent for scenting non-absorbent plastic materials is described in the published patent application DE 32 47 708.
- the composition contains film-forming, odorless, organic polymers, especially polyvinyl acetate or vinyl acetate-containing copolymers, fragrances and water and / or other solvents. These solutions or suspensions are applied by spraying, brushing or knife coating on the plastic materials to be scented and form after drying a non-adhesive film, which slowly releases the fragrance.
- silica is preferably added again.
- German Offenlegungsschrift DE 32 47 709 describes the use of adhesives containing perfume substances for the production of detergent and cleaning agent packages made of cardboard and / or paper materials.
- the adhesive used is an aqueous dispersion of a homo- or copolymer of vinyl acetate and / or vinyl propionate. which has a viscosity of between 800 and 2500 mPas at room temperature.
- This scented adhesive is used in particular for bonding the head flaps of detergent packaging use.
- the production of the necessary perforation represents an additional process step, which requires a conversion of the entire packaging production.
- German Patent Application DE 198 10 886 A1 describes a container for aqueous bleaching agents based on hypochlorite, consisting of a hollow plastic body with pouring opening and a closure lid, wherein the closure lid consists at least proportionally of a plastic which contains one or more fragrances encapsulated with citrus flavor. The lid releases the fragrances with a time delay into the interior, so that the bleach still has the citrus fragrance even after months, although the fragrance is not stable to hypochlorite.
- the present invention has for its object to overcome these disadvantages of the prior art.
- the present invention is in a first embodiment, a cosmetic kit comprising at least one cometic agent, - at least one packaging and at least one instructions for use and / or at least one auxiliary agent for the use of the cosmetic product, characterized in that the instructions for use and / or the auxiliary agent for the application of the cosmetic product are fragrant.
- the kit according to the invention contains at least one cosmetic agent. While there used to be a distinction between “personal care” and “beautification” in terms of “body care” and “decorative cosmetics”, today these products are collectively defined as “cosmetic products”.
- Cosmetic products within the meaning of this Act are substances or preparations of substances intended to be used externally on the human or in the oral cavity for cleaning, care or to influence the appearance or odor of the body or to convey olfactory impressions unless they are primarily intended to relieve or eliminate illness, suffering, bodily injury or pathological condition.
- ⁇ 4 LMBG is not yet adapted to the EU Cosmetics Directive, the cosmetics six functions (cleanse, perfume, change appearance, affect body odor, protect and keep in good condition) zuwel.
- the cosmetic products are substances or preparations made of substances for the cleaning or care of dentures same.
- Cosmetic products are not substances or preparations of substances intended to influence body shape. " Depending on the field of application, therefore, a distinction is made between a wide range of cosmetic products, for example for skin care (bath preparations, skin washing and cleaning agents, skin care products, ocular cosmetics, lip care products, nail care products, personal hygiene products, foot care products), those having a specific action (sunscreens, skin tanning agents, depigmenting agents, deodorants , Antihidrotika, depilatories, shaving, fragrance), such as dental &. Oral care (dentifrice and oral hygiene products, dentifrices, denture adhesives) and those for hair care (shampoos, hair care products, hair hardening agents, hair shaping agents, color change agents).
- skin care bath preparations, skin washing and cleaning agents, skin care products, ocular cosmetics, lip care products, nail care products, personal hygiene products, foot care products
- those having a specific action unsunscreens, skin tanning agents, depigmenting agents, deodorants ,
- Kits preferred according to the invention are characterized in that the cosmetic agent is selected from the group of shower gels, shower baths, dentifrices, mouthwashes, hair shampoos, hair conditioners, conditioning shampoos, hairsprays, hair conditioners, hair treatments, hair wraps, hair tonics, perming solutions, hair dye shampoos, Hair dyes, hair fixatives, hair dressings, hair styling preparations, hair lotions, mousses, hair gels, hair waxes or combinations thereof.
- the cosmetic agent is selected from the group of shower gels, shower baths, dentifrices, mouthwashes, hair shampoos, hair conditioners, conditioning shampoos, hairsprays, hair conditioners, hair treatments, hair wraps, hair tonics, perming solutions, hair dye shampoos, Hair dyes, hair fixatives, hair dressings, hair styling preparations, hair lotions, mousses, hair gels, hair waxes or combinations thereof.
- kits of the invention comprise at least one package.
- This packaging is used for not even dimensionally stable cosmetic products for their storage and facilitates their dosage and application.
- Packaging preferred according to the invention are, for example, tubes, dispensers, bottles, cans, pots, pots, spray cans, boxes, boxes, buckets, boxes, tubs, etc. They can be made of a wide variety of materials, for example paper, cardboard, plastic, metal, glass
- Cosmetic product packaging is widely described in the art and, depending on the cosmetic product to be packaged, there is a wide variety of commercial packaging in a variety of shapes and sizes.
- kit according to the invention contains several cosmetic agents, it may be preferable to package them separately from one another in order to avoid incompatibilities of ingredients or to increase the storage stability.
- the sequential use of two different cosmetic agents can be visualized and facilitated by separate packaging.
- Such separate packages are customary in particular for hair colorants, where coloring cream, Oxidation solution and optionally a shampoo and / or a conditioner each separately packaged offered to the consumer.
- Such separately packaged cosmetic agents may be provided in a kit with a common outer packaging. It is of course also possible to provide an individually packaged cosmetic product with an additional outer packaging - but for cost reasons, this is practiced only with higher quality cosmetic products.
- the outer packaging can be made from a wide variety of materials and can take on a wide variety of shapes. For higher quality products, a tinplate can with removable lid can recommend. Also plastic boxes are possible embodiments. These outer packaging have the advantage of being appropriately decorated and used as a storage container after consumption. For products whose outer packaging is to be disposed of after use, a cardboard box is recommended. Cardboards have the advantage of low cost and easy printability. Colored and formal designs can be widely varied in these outer packaging.
- kits which have at least one packaging directly surrounding the cosmetic product and an outer packaging containing this packaging, which is preferably selected from cardboard, are preferred according to the invention.
- the kit according to the invention in a first embodiment of the present invention comprises an instruction manual which gives the consumer instructions for use of the cosmetic product.
- "Instructions for use” in the sense of the present application can not only be written versions in any language, but also visual representations such as pictograms.
- the instructions for use may be permanently attached to or attached to the packaging.
- the instructions for use may be applied to the outside of the package.
- the instructions for use are fragrant when the kit according to the invention contains no fragrant auxiliary for the application of the cosmetic product. It is crucial that not the entire packaging is scented here, but only the instructions for use is fragrant. In the case of kits according to the invention which contain a perfumed auxiliary agent for the application of the cosmetic agent, it is possible to dispense with the fragrant embodiment of the instructions for use.
- the instructions for use may also be applied to the inside of the package in preferred embodiments of the present invention. This embodiment is particularly recommended in kits according to the invention, which have an outer packaging.
- the instructions for use may be printed directly on the outside and / or inside of the packaging, but it is also possible and, preferably, separately prefabricated instructions for use, which may be designed fragrant, adherent to the packaging to connect.
- These include, but are not limited to the sticking of labels, shrinking of films, the mechanical attachment of labels, papers, boxes, cards, etc. by means , Schnapp ⁇ or Klemmtagenen.
- the scope of design for packaging developers here is almost limitless.
- kits according to the invention which have an additional outer packaging.
- the separate instructions for use can be made on paper, cardboard, plastic, etc. in the form of sheets, sheets, cards, cards, flyers, fanfolds, etc.
- the separate instructions for use has the advantage that the consumer can fix them in an exposed position and read repeatedly when using the agent. Also, such a separate instruction manual can be taken out of the packaging and read several times in changing places, without always the complete kit must be carried. Kits according to the invention, in which the instructions for use are designed as a separate supplement, are a further preferred embodiment of the present invention.
- kits according to the invention which comprise both a fragrantly designed instructions for use and a perfumed auxiliary for the application of the cosmetic product, an additional olfactory experience can be generated by dividing the fragrance contents or by the diversity of the fragrances.
- the kit according to the invention in another embodiment of the present invention comprises an adjuvant for the application of the cosmetic product.
- This aid serves the consumer in the application of the cosmetic product. It may be an applicator, with the help of which the cosmetic agent is brought to its place of action or distributed there, but it is also possible that the aid is an agent that the contact of certain areas with the cosmetic product prevention.
- saids are therefore all objects which facilitate or make possible the use of the cosmetic product and its successful application.
- “Aids” in the sense of the present application are, for example, mixing vessels or the like. such as cups, applicators such as brushes, sponges, combs, spatulas, needles, spoons, etc. as well as means to prevent soiling of body or hair or environment such as cloaks, covers, hoods, patches, tape, gloves, overshoes, etc.
- Kits preferred according to the invention are characterized in that they contain at least one auxiliary agent for the application of the cosmetic agent, which is selected from the group of sponges, brushes, combs, spatulas, needles, hoods, gloves, or other applicators, with preferred aids being fragrant are.
- the instructions for use and / or the aid for the application of the cosmetic product are fragrant according to the invention.
- fragrances or perfume mixtures are incorporated in or applied to these.
- fragrance compounds e.g. the synthetic products of the ester, ether, aldehyde, ketone, alcohol and hydrocarbon type are used.
- Fragrance compounds of the ester type are known e.g. Benzyl acetate, phenoxyethyl isobutyrate, p-tert-butylcyclohexyl acetate, linalyl acetate,
- DMBCA Dimethylbenzylcarbinylacetate
- phenylethylacetate phenylethylacetate
- benzylacetate ethylmethylphenylglycinate
- allylcyclohexylpropionate styrallylpropionate
- the ethers include, for example, benzyl ethyl ether and ambroxane, to the aldehydes e.g. the linear alkanals having 8-18 C atoms, citral, citronellal, citronellyloxyacetaldehyde, cyclamen aldehyde, lilial and bourgeonal, to the ketones e.g.
- the alcohols include anethole, citronellol, eugenol, geraniol, linalool, phenylethyl alcohol and terpineol;
- the hydrocarbons mainly include the terpenes such as limonene and pinene.
- mixtures of different fragrances are used, which together produce an attractive fragrance.
- perfume oils may also contain natural fragrance mixtures such as are available from vegetable sources, e.g. Pine, citrus, jasmine, patchouly, rose or ylang-ylang oil. Also suitable are Muskateller sage oil, chamomile oil, clove oil, lemon balm oil, mint oil, cinnamon leaf oil, lime blossom oil, juniper berry oil, vetiver oil, olibanum oil, galbanum oil and labdanum oil and orange blossom oil, neroliol, orange peel oil and sandalwood oil.
- a fragrance must be volatile, whereby besides the nature of the functional groups and the structure of the chemical compound, the molecular weight also plays an important role , For example, most odorants have molecular weights up to about 200 daltons, while molecular weights of 300 daltons and above are more of an exception.
- the smell of a perfume or fragrance composed of several fragrances changes during evaporation, whereby the odor impressions in "top note", “middle note or body”
- the top note of a perfume or fragrance consists not only of volatile compounds, while the base note for the most part from less volatile
- more volatile fragrances may be bound to certain fixatives, thereby preventing them from evaporating too rapidly
- the more volatile fragrances are incorporated into the press agglomerate be incorporated, i st such a method for fragrance fixation.
- Adhesive-resistant fragrances which can be used in the context of the present invention are, for example, the essential oils such as angelica root oil, aniseed oil, amicaceous oil, basil oil, bay oil, bergamot oil, Champacablütenöl, Edeltannöl, Edeltannenzapfenapfen, Elemiöl, eucalyptus oil, fennel oil, spruce algae oil, galbanum oil, geranium oil, gingergrass oil, Guaiac wood oil, gurdy balm oil, helichrysum oil, ho oil, ginger oil, iris oil, cajeput oil, calamus oil, chamomile oil, camphor oil, kanaga oil, cardamom oil, cassia oil, pine oil, copa ⁇ va balsam oil, coriander oil, spearmint oil, caraway oil, cumin oil, lavender oil, lemongrass oil, lime oil, tangerine oil, lemon balm oil, Musk Grain Oil, Myrrh Oil
- fragrances can be used in the context of the present invention as adherent fragrances or fragrance mixtures, ie fragrances.
- These compounds include the following compounds and mixtures thereof: ambrettolide, ⁇ -amylcinnamaldehyde, anethole, anisaldehyde, anisalcohol, anisole, methyl anthranilate, acetophenone, benzylacetone, benzaldehyde, ethyl benzoate, benzophenone, benzyl alcohol, benzyl acetate, benzyl benzoate, benzyl formate, benzyl valerate, borneol , Bornyl acetate, ⁇ -bromostyrene, n-decyl aldehyde, n-dodecyl aldehyde, eugenol, eugenol methyl ether, eucalyptol,
- the more volatile fragrances include in particular the lower-boiling fragrances of natural or synthetic origin, which can be used alone or in mixtures.
- Examples of more readily volatile fragrances are alkyl isothiocyanates (alkyl mustard oils), butanedione, limonene, linalool, linayl acetate and propionate, menthol, menthone, methyl-n-heptenone, phellandrene, phenylacetaldehyde, terpinyl acetate, citral, citronellal.
- the fragrances or perfume oils can be incorporated or applied in or on the instructions for use and / or in or on the aid for the application of the cosmetic product.
- perfume oil or the fragrance is applied or incorporated depends, for example, on the material of the instructions for use or the adjuvant.
- instructions for use made of paper or cardboard or other absorbent materials can easily be sprayed with fragrances.
- a spraying of spatulas made of wood is easily possible.
- a preferred embodiment of the present invention therefore provides that the instructions for use are fragrant by the addition of at least one perfume, with instructions for use sprayed with perfume (s) being preferred.
- perfumes in the instructions for use or the aid.
- instructions for use this is for example possible because they are printed with a printing ink or a varnish containing fragrance (s).
- Inventive kits in which the instructions for use are fragrant by printing with a fragrance-containing printing ink and / or a perfume-containing paint, are inventively preferred.
- the adhesive can also be scented so that the instructions for use are fragrant.
- Corresponding kits according to the invention in which the instructions for use are fragrant by bonding to a perfume-containing adhesive are likewise preferred embodiments of the present invention.
- fragrances or perfume oils can also be incorporated in the instructions for use and / or in the aid for the application of the cosmetic product. This procedure is particularly recommended when the instructions for use or the aid for the application of the cosmetic agent at least partially made of plastics, since the plastics can be added to the plastics already during the manufacturing or molding process fragrances.
- plastics characterizes materials whose essential constituents consist of such macromolecular organic compounds which are produced synthetically or by modification of natural products and are in many cases meltable and formable under certain conditions (heat and pressure) Plastics are thus in principle organic polymers and can be classified either according to their physical properties (thermoplastics, thermosets and elastomers), the nature of the reaction of their preparation (polymers, polycondensates and polyadducts) or according to their chemical nature (polyolefins, polyesters, polyamides, polyols). urethanes, etc.).
- Polyolefins preferably polyethylene or polypropylene, have proved to be particularly suitable as plastic materials.
- Polyethylene (PE) are polymers belonging to the polyolefins with groupings of the type
- Polyethylenes are made by polymerizing ethylene according to two fundamentally different methods, the high pressure and the low pressure process.
- the resulting products are accordingly often referred to as high pressure polyethylene and low pressure polyethylene, respectively; they differ mainly in their degree of branching and, consequently, in their degree of crystallinity and their density. Both methods can be carried out as solution polymerization, emulsion polymerization or gas phase polymerization.
- high-pressure method branched low-density polyethylenes fall (about 0.915 to 0.935 g / cm 3) and crystallinity of about 40-50%, which is referred to as LDPE types.
- HMW-LDPE high molecular weight
- the macromolecules of the polyethylenes from low-pressure process are largely linear and unbranched.
- These polyethylenes (HDPE) have degrees of crystallinity of 60-80% and a density of about 0.94-0.965 g / cm 3 . They are particularly suitable as pin materials.
- Polypropylene are thermoplastic polymers of propylene with repeat units of the type
- Polypropylenes can be prepared by stereospecific polymerization of propylene in the gas phase or in suspension to give highly crystalline isotactic or less crystalline syndiotactic or amorphous atactic polypropylenes, respectively. Of particular technical importance is the isotactic polypropylene, in which all methyl groups are located on one side of the polymer chain. Polypropylene is characterized by high hardness, resilience, stiffness and heat resistance and is therefore an ideal journal material in the context of the present invention.
- polyamides are preferably usable materials in the context of the present invention.
- Polyamides are high molecular compounds that consist of blocks linked by peptide bonds.
- the synthet. Polyamides (PA) are, with a few exceptions, thermoplastic, chain-like polymers with recurring acid amide groups in the main chain.
- PA Polyamides
- AS aminocarboxylic acid types
- AA-SS diamine-dicarboxylic acid types
- S denotes carboxy groups.
- the former are formed from one building block by polycondensation (amino acid) or polymerization (D-lactam), the latter from two building blocks by polycondensation (diamine and dicarboxylic acid).
- the polyamides are coded from unbranched aliphatic building blocks according to the number of carbon atoms.
- PA 6 is the polyamide composed of D-aminocaproic acid or D-caprolactam
- PA 12 is a poly (D-laurolactam) from D-laurolactam.
- PA 66 polyhexamethylene adipamide
- PA 610 polyhexamethylene sebacinamide
- PA 612 polyhexamethylenedodecanamide
- the polyamide types mentioned are preferred materials for the pin in the context of the present invention.
- Polyurethanes are polymers (polyadducts) which can be obtained by polyaddition from dihydric and higher alcohols and isocyanates with groupings of the type
- R 1 stands for a low molecular weight or polymeric diol residue and R 2 stands for an aliphatic or aromatic group.
- one or more aids for the application of the cosmetic product with an instruction manual
- Another embodiment of the present invention provides that the aid for the application of the cosmetic product is attached to the instructions for use.
- This embodiment can be realized, for example, by a separate manual with or attached adhesive.
- kits according to the invention are preferred in which the instructions for use contain a device attached to the instructions for use for the application of the cosmetic product.
- kits according to the invention are characterized in that the instructions for use are perfumed by scenting the auxiliary agent and / or the attachment means for the auxiliary.
- a preferred embodiment of this embodiment provides that the instruction for use is a separate sheet, which may be folded and to which one or more aids are attached.
- This embodiment is particularly preferred in the case of hair dyes in which the instructions for use have disposable gloves attached to it.
- the cosmetic agents may contain a variety of ingredients. These are described below. If the term "agent according to the invention” is used below, this always means the cosmetic agent in the kits according to the invention.
- Hair cleansing preparations may contain, for example, foaming anionic, zwitterionic, ampholytic and nonionic surfactants.
- Hair rinses and softeners preferably contain cationic surfactants and water-soluble polymers with quaternary ammonium groups to reduce static chargeability and improve combability.
- Perming agents preferably contain oxidizing agents such as. As potassium bromate or hydrogen peroxide.
- Hair dye shampoos contain direct hair dyes or oxidation dye precursors.
- Hair fixatives and hair dressings as well as other hairstyling preparations usually contain film-forming in aqueous or aqueous-alcoholic media-soluble polymers, optionally together with cationic surfactants or cationic polymers.
- surfactants (E) in the compositions according to the invention has proved to be particularly advantageous.
- the agents according to the invention therefore contain surfactants.
- surfactants is understood as meaning surface-active substances which form adsorption layers on the upper and boundary surfaces or which can aggregate in volume phases to give micelle colloids or lyotropic mesophases.
- anionic surfactants consisting of a hydrophobic radical and a negatively charged hydrophilic head group
- amphoteric surfactants which carry both a negative and a compensating positive charge
- cationic surfactants which, in addition to a hydrophobic radical, have a positively charged hydrophilic group
- nonionic surfactants which have no charges but strong dipole moments and are highly hydrated in aqueous solution.
- Suitable anionic surfactants (E1) in preparations according to the invention are 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.
- anionic surfactants are, in each case in the form of the sodium, potassium and ammonium as well as the mono-, di- and trialkanolammonium salts having 2 to 4 C atoms in the alkanol group, linear and branched fatty acids having 8 to 30 C atoms (Soap),
- Acyl isethionates having 8 to 24 C atoms in the acyl group, sulfosuccinic acid mono- and dialkyl esters having 8 to 24 C atoms in the alkyl group and sulfosuccinic acid monoalkylpolyoxyethyl esters having 8 to 24 C atoms in the alkyl group and 1 to 6 oxyethyl groups,
- Esters of tartaric acid and citric acid with alcohols which are addition products of about 2-15 molecules of ethylene oxide and / or propylene oxide onto fatty alcohols having 8 to 22 C atoms, alkyl and / or alkenyl ether phosphates of the formula (E 1-1),
- R 2 is hydrogen, a radical (CH 2 CH 2 O) n R 2 or X, n for
- Numbers from 1 to 10 and X is hydrogen, an alkali 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 (E1-II)
- R 7 CO (AIkO) n SO 3 M (EI-II) in the R 7 CO- for a linear or branched, aliphatic, saturated and / or unsaturated acyl radical having 6 to 22 C atoms, Alk for CH 2 CH 2 ,
- n is from 0.5 to 5 and M is a cation
- Typical examples of 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) in which R 8 CO is a linear acyl radical having 8 to 18 carbon atoms are preferably used,
- 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 carbon atoms in the alkyl group and 1 to 6 oxyethyl groups, Monoglycerdisulfate, alkyl and Alkenyletherphosphate and
- Zwitterionic surfactants are surface-active compounds which contain in the molecule at least one quaternary ammonium group and at least one -COO 0 - or -SO carry 3 0 group.
- Particularly suitable zwitterionic surfactants are the so-called betaines, such as the N-alkyl-N, N-dimethylammonium glycinates, for example the cocoalkyldimethylammonium glycineate, N-acylaminopropyl-N, N-dimethylammonium glycinates, for example the cocoacylaminopropyl-dimethylammonium glycinate, and 2-alkyl-3-carboxymethyl-3-hydroxyethyl-imidazolines each having 8 to 18 carbon 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.
- Ampholytic surfactants (E3) are understood as meaning those surface-active compounds which contain, in addition to a C 8 -C 24 -alkyl or -acyl group, at least one free amino group and at least one -COOH or -SO 3 H group in the molecule and for forming internal Salts are capable.
- ampholytic surfactants 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 ampholytic surfactants are N-cocoalkylaminopropionate, cocoacylaminoethylaminopropionate and C 12 -C 18 acylsarcosine.
- Nonionic surfactants (E4) contain as 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
- Adducts of 5 to 60 moles of ethylene oxide with castor oil and hydrogenated castor oil Adducts of 5 to 60 moles of ethylene oxide with castor oil and hydrogenated castor oil
- R 2 is hydrogen or
- R 3 is a linear or branched alkyl radical having 1 to 4 carbon atoms and w is a number from 1 to 20,
- Sorbitan fatty acid esters such as the polysorbates
- 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 monoglycerides and oligoglycosides, and stands for a number between 1 and 10.
- the value p for a certain alkyloligoglycoside is an analytically determined arithmetical variable, which usually represents a fractional number. Preference is given to using alkyl and / or alkenyl oligoglycosides having a mean degree of oligomerization p of from 1.1 to 3.0. From an application point of view, preference is given to those alkyl and / or alkenyl oligoglycosides whose oligomerization degree is less than 1.7 and in particular between 1, 2 and 1.4.
- 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 their technical mixtures, as obtained, for example, in the hydrogenation of technical fatty acid methyl esters or in the hydrogenation of aldehydes from Roelen's oxosynthesis.
- 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.
- Trains t Bevor ⁇ are alkyl oligoglucosides based on hydrogenated C12 / i 4 coconut alcohol with a DP of 1 to 3
- 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
- [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-alkylpolyhydroxyalkylamides are known substances which are customarily 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 derived from reducing sugars having 5 or 6 carbon atoms, especially glucose.
- the preferred fatty acid N-alkylpolyhydroxyalkylamides provide 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, Palmoleinklare, stearic acid, isostearic acid, oleic acid, elaidic acid, petroselinic acid, linoleic acid, linolenic acid, arachidic acid, gadoleic acid, behenic acid or erucic acid or their technical nischer 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, Palmoleinklare, stearic acid, isostearic acid, oleic acid,
- 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 C 12/14 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 each having from 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.
- oxo-alcohols compounds with an odd number of carbon atoms in the alkyl chain predominate.
- nonionic surfactants are the sugar surfactants. These may preferably be present in the agents used according to the invention in amounts of from 0.1 to 20% by weight, based on the total agent. Quantities of 0.5 - 15% by weight are preferred, and very particularly preferred amounts are from 0.5 to 7.5% by weight.
- the compounds used as surfactant with alkyl groups may each be uniform substances. However, it is usually preferred to start from the production of these substances from native plant or animal raw materials, so as to obtain substance mixtures with different, depending on the particular raw material alkyl chain lengths.
- both products with a "normal” homolog distribution and those with a narrow homolog distribution can be used.
- "normal” homolog distribution are meant mixtures of homologues which are obtained as catalysts in the reaction of fatty alcohol and alkylene oxide using Alka ⁇ limetallen, alkali metal hydroxides or alkali metal alcoholates. Narrowed homolog distributions, on the other hand, are obtained when, for example, hydrotalcites, alkaline earth metal salts of ether carboxylic acids, alkaline earth metal talloxide, hydroxides or alcoholates are used as catalysts.
- the use of products with narrow homolog distribution may be preferred.
- Cationic surfactants of the quaternary ammonium compound type, the esterquats and the amidoamines can be used according to the invention.
- Preferred quaternary ammonium compounds are ammonium halides, in particular chlorides and bromides, such as alkyltrimethylammonium chlorides, dialkyldimethylammonium chlorides and trialkylmethylammonium chlorides, eg.
- the long alkyl chains of the above-mentioned surfactants preferably have 10 to 18 carbon atoms.
- QAV QAV with behenyl radicals, in particular those known as behentrimonium chloride or bromide (Docosanyltrimethylammonium chloride or bromide) known substances.
- Other preferred QAV's have at least two behenyl residues, with QAV being particularly preferred, which are two behenyl residues on an imidazolinium backbone.
- these substances are, for example, under the names Genamin ® KDMP (Clariant) and Crodazosoft ® DBQ (Crodauza). ,
- 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 that available under the name Tegoamid ® S 18 commercially stearamidopropyldimethylamine is dimethylamine.
- the cationic surfactants are contained in the agents according to the invention preferably in amounts of 0.05 to 10 wt .-%, based on the total agent. Amounts of 0.1 to 5 wt .-% are particularly preferred
- the surfactants (E) are used in amounts of 0.1-45% by weight, preferably 0.5-30% by weight and very particularly preferably 0.5-25% by weight, based on the total agent used according to the invention ,
- anionic, nonionic, zwitterionic and / or amphoteric surfactants and mixtures thereof may be preferred according to the invention.
- the agents according to the invention may contain emulsifiers (F).
- 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.
- An emulsion is to be understood as meaning a droplet-like distribution (dispersion) of a liquid in another liquid under the expense of energy in order to create stabilizing phase interfaces by means of surfactants.
- 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
- alkyl (oligo) glucosides for example, the commercially available product ® Montanov 68,
- Adducts of 5 to 60 moles of ethylene oxide with castor oil and hydrogenated castor oil Adducts of 5 to 60 moles of ethylene oxide with castor oil and hydrogenated castor oil
- 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. - Phospholipids. These include, in particular, the glucose phospholipids which are obtained, for example, as lecithins or phosphatidylcholines from, for example, egg yolks or plant seeds (for example soybeans).
- Fatty acid esters of sugars and sugar alcohols such as sorbitol
- polyglycerols and polyglycerol derivatives such as polyglycerol poly-12-hy- droxystearat (Dehymuls ® PGPH commercial product)
- the agents according to the invention preferably contain the emulsifiers in amounts of 0.1-25% by weight, in particular 0.5-15% by weight, based on the total agent.
- compositions according to the invention may preferably contain at least one nonionic emulsifier having an HLB value of 8 to 18.
- Nonionic emulsifiers having an HLB value of 10 to 15 may be particularly preferred according to the invention.
- polymers (G) are included in the inventive compositions.
- polymers are added to the compositions used according to the invention, both cationic, anionic, amphoteric and nonionic polymers having proven effective.
- Cationic or amphoteric 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.
- "permanently cationic” refers to those polymers which have a cationic group, irrespective of the pH of the agent. These are usually 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 bonded via a C 1-4 hydrocarbon group to a polymer main chain constructed from acrylic acid, methacrylic acid or their derivatives have proven to be particularly suitable.
- Homopolymers of the general formula (G1-I) are examples of the general formula (G1-I),
- R 1 -H or -CH 3
- R 2 , R 3 and R 4 are independently selected from C 1-4 -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
- copolymers consisting essentially of the monomer units listed in formula (G 1-1) and nonionic monomer units are particularly preferred cationic polymers those are preferred according to the invention for which at least one of the following conditions applies:
- R 1 is a methyl group
- R 2 , R 3 and R 4 are methyl groups
- Suitable physiologically tolerated 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 is given to halide ions, in particular chloride.
- a particularly suitable homopolymer is the, if desired crosslinked, poly (methacryloyloxyethyltrimethylammonium chloride) with the INCI name polyquaternium-37.
- Such products are available, for example under the names Rheocare ® CTH (Cosmetic Rheologies) and Synthalen® ® CR (Ethnichem) in trade.
- 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 nonaqueous polymer dispersion which should not have a polymer content of less than 30% by weight.
- Such polymer dispersions are available 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 (G 1-1) contain as nonionic monomer units preferably acrylamide, methacrylamide, acrylic acid C 1-4 -alkyl esters and methacrylic acid-C 1-4 -alkyl esters.
- nonionic monomers preferably acrylamide, methacrylamide, acrylic acid C 1-4 -alkyl esters and methacrylic acid-C 1-4 -alkyl esters.
- the acrylamide is particularly preferred.
- These copolymers can also be crosslinked, as described above in the case of the homopolymers.
- a preferred copolymer 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, commercially available as about 50% non-aqueous polymer dispersion under the name Salcare ® SC 92nd
- cationic alkyl polyglycosides according to DE-PS 44 13 686, cationized honey, for example the commercial product Honeyquat ® 50, cationic guar derivatives, in particular the products sold under the trade names cos media ® guar and Jaguar ®, polymeric dimethyldiallylammonium salts and their copolymers with esters and amides of acrylic acid and methacrylic acid.
- cationic guar derivatives in particular the products sold under the trade names cos media ® guar and Jaguar ®, polymeric dimethyldiallylammonium salts and their copolymers with esters and amides of acrylic acid and methacrylic acid.
- Merquat ® 100 Poly (dimethyldiallylammonium chloride)
- Merquat ® 550 dimethyldiallylammonium chloride-acrylamide copolymer
- Such Verbin ⁇ are applications available under the names Gafquat ® 734 and Gafquat ® 755 commercially,
- copolymers of vinylpyrrolidone such as the commercial products Copolymer 845 (manufactured by ISP), Gaffix ® VC 713 (manufactured by ISP), Gafquat ® ASCP 1011, Gafquat ® HS 110, Luviquat ® 8155 and Luviquat ® MS 370 available are.
- cationic polymers which can be used in the agents according to the invention are the so-called "temporary cationic" polymers. These polymers usually contain an amino group which, at certain pH values, is present as quaternary ammonium group and thus cationic. Preferably, for example, are chitosan and its derivatives, such as 101 are freely available commercially, for example under the trade names Hydagen CMF ®, Hydagen HCMF ®, Kytamer ® PC and Chitolam ® NB /.
- preferred 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 commercially available product ® Honeyquat 50, cationic Alkylpolyglycodside according to DE-PS 44 13 686, and polymers of the type Polyquaternium-37.
- 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.
- 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 hydrolyzates 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, Washington, DC 20036-4702) and commercially available products: Cocodimonium Hydroxypropyl Hydrolyzed Collagen, Cocodimopnium Hydroxypropyl Hydrolyzed Casein, 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 /
- the agents according to the invention can also contain amphoteric polymers. These additionally have at least one negatively charged group in the molecule and are also referred to as zwitterionic polymers. In the context of the present invention, preferably usable zwitterionic polymers are composed essentially together
- R 1 -CH CR 2 -CO-Z- (C n H 2n) -N (+)
- R 1 and R 2 are independently of each other, hydrogen or a methyl group and R 3 , R ⁇ and R ⁇ independently represent alkyl groups having 1 to 4 carbon atoms, Z is an NH group or an oxygen atom, n is an integer of 2 to 5 and A ( " ) is the anion of an organic or inorganic acid
- R ⁇ and R ⁇ independently of one another are hydrogen or methyl groups.
- Suitable starting monomers are, for. Dimethylaminoethylacrylamide, dimethylaminoethylmethacrylamide, dimethylaminopropylacrylamide,
- the monomers containing a tertiary amino group are then quaternized in a known manner, methyl chloride, dimethyl sulfate or diethyl sulfate being particularly suitable as alkylating reagents.
- the quaternization reaction can be carried out in aqueous solution or in the solvent.
- those monomers of formula (ZI) are used which are derivatives of acrylamide or methacrylamide. Preference is furthermore given to those monomers which contain halide, methoxysulfate or ethoxysulfate ions as counterions. Also preferred are those monomers of the formula (ZI) in which R 3 , R 4 and R 5 are methyl groups.
- the acrylamidopropyltrimethylammonium chloride is a very particularly preferred monomer of the formula (ZI).
- Suitable monomeric carboxylic acids of the formula (Z-II) are acrylic acid, methacrylic acid, crotonic acid and 2-methylcrotonic acid. Preference is given to using acrylic or methacrylic acid, in particular acrylic acid.
- the zwitterionic polymers which can be used according to the invention are prepared from monomers of the formulas (Z-I) and (Z-II) by polymerization processes known per se.
- the polymerization can be carried out either in aqueous or aqueous-alcoholic solution.
- the alcohols used are alcohols having 1 to 4 carbon atoms, preferably isopropanol, which simultaneously serve as polymerization regulators.
- other components than regulators may also be added to the monomer solution, eg.
- formic acid or mercaptans such as thioethanol and thioglycolic acid.
- the initiation of the polymerization takes place with the aid of free-radical-forming substances.
- redox systems and / or thermally decomposing radical formers of the azo compound type such as azoisobutyronitrile, azo-bis (cyanopentanoic acid) or azo-bis (amidinopropane) dihydrochloride can be used.
- redox systems are z. B. combinations of hydrogen peroxide, potassium or ammonium peroxodisulfate and tertiary butyl hydroperoxide with sodium sulfite, sodium dithionite or hydroxylamine hydrochloride as a reduction component.
- the polymerization can be carried out isothermally or under adiabatic conditions, depending on the concentration ratios by the heat of polymerization released, the temperature range for the course of the reaction between 20 and 200 0 C may vary, and the reaction may optionally be carried out under autogenous pressure.
- the reaction temperature is between 20 and 100 0 C.
- the pH during the copolymerization may vary within a wide range.
- polymerization is carried out at low pH values; however, pH values above the neutral point are also possible.
- an aqueous base e.g. As sodium hydroxide, potassium hydroxide or ammonia, to a pH between 5 and 10, preferably 6 to 8 set. Further details of the polymerization process can be found in the examples.
- the cationic or amphoteric polymers are preferably contained in the agents according to the invention in amounts of from 0.05 to 10% by weight, based on the total agent. Amounts of 0.1 to 5 wt .-% are particularly preferred.
- the anionic polymers (G2) are anionic polymers which have carboxylate and / or sulfonate groups.
- anionic monomers from which such polymers may consist are acrylic acid, methacrylic acid, crotonic acid, maleic anhydride and 2-acrylamido-2-methylpropanesulfonic acid.
- the acidic groups may be wholly or partly present as sodium, potassium, ammonium, mono- or triethanolammonium salt.
- Preferred monomers are 2-acrylamido-2-methylpropanesulfonic acid and acrylic acid.
- Anionic polymers which contain 2-acrylamido-2-methylpropanesulfonic acid as the sole or co-monomer can be found to be particularly effective, it being possible for all or some of the sulfonic acid group to be present as sodium, potassium, ammonium, mono- or triethanolammonium salt ,
- the homopolymer of 2-acrylamido-2 ⁇ methyl propane sulfonic acid which is available for example under the name Rheothik ® 11-80 is commercially.
- copolymers of at least one anionic monomer and at least one nonionic monomer are preferable to use copolymers of at least one anionic monomer and at least one nonionic monomer.
- anionic monomers the above referenced substances.
- Preferred nonionic monomers are acrylamide, methacrylamide, acrylic esters, methacrylic esters, vinylpyrrolidone, vinyl ethers and vinyl esters.
- Preferred anionic copolymers are acrylic acid-acrylamide copolymers and in particular polyacrylamide copolymers with sulfonic acid-containing monomers.
- a particularly preferred anionic copolymer consists of 70 to 55 mol% of acrylamide and 30 to 45 mol% of 2-acrylamido-2-methylpropanesulfonic acid, wherein the sulfonic acid group is wholly or partly in the form of sodium, potassium, ammonium, mono- or triethanolammonium Salt is present.
- This copolymer may also be crosslinked, with crosslinking agents preferably polyolefinically unsaturated compounds such as tetraallyloxyethane, allylsucrose, allylpentaerythritol and methylenebisacrylamide are used.
- crosslinking agents preferably polyolefinically unsaturated compounds such as tetraallyloxyethane, allylsucrose, allylpentaerythritol and methylenebisacrylamide are used.
- crosslinking agents preferably polyolefinically unsaturated compounds such as tetraallyloxyethane, allylsucrose, allylpentaerythritol and methylenebisacrylamide are used.
- Such a polymer is contained in the commercial product Sepigel ® 305 from SEPPIC.
- Simulgel ® 600 as a compound with isohexadecane and polysorbate-80 Natriumacryloyldimethyltaurat copolymers have proved to be particularly effective according to the invention.
- anionic homopolymers are uncrosslinked and crosslinked polyacrylic acids. Allyl ethers of pentaerythritol, sucrose and propylene may be preferred crosslinking agents. Such compounds are for example available under the trademark Carbopol ® commercially.
- Copolymers of maleic anhydride and methyl vinyl ether are also color-retaining polymers.
- a cross-linked with 1, 9-Decadiene-maleic acid methyl vinyl ether copolymer is available under the name Stabileze® ® QM.
- amphoteric polymers (G3) can be used as polymers for increasing the activity of the active ingredient complex (A) according to the invention.
- amphoteric polymers both those polymers containing both free amino groups in the molecule and free -COOH or SO 3 H groups and to Formation of internal salts, as well as zwitterionic polymers containing in the molecule quaternary ammonium groups and -COO " - or -SO 3 ' groups, and summarized those polymers containing -COOH or SO 3 H groups and quaternary ammonium groups.
- amphopolymer suitable is that available under the name Amphomer ® acrylic resin which is a copolymer of tert-butylaminoethyl methacrylate, N- (1, 1, 3,3-tetramethylbutyl) -acrylamide and two or more monomers from the group acrylic acid, methacrylic and their simple esters.
- Amphomer ® acrylic resin which is a copolymer of tert-butylaminoethyl methacrylate, N- (1, 1, 3,3-tetramethylbutyl) -acrylamide and two or more monomers from the group acrylic acid, methacrylic and their simple esters.
- amphoteric polymers are those polymers which are composed essentially
- R 1 -CH CR 2 -CO-Z- (C n H 2n ) -N (+)
- R 1 and R 2 independently of one another are hydrogen or a methyl group and R 3 , R 4 and R 5 independently of one another are alkyl groups having 1 to 4 carbon atoms, Z is an NH group or an oxygen atom, n is an integer from 2 to 5 and A is the anion of an organic or inorganic acid, and
- R 6 and R 7 are independently hydrogen or methyl groups.
- These compounds can be used both directly and in salt form, which is obtained by neutralization of the polymers, for example with an alkali metal hydroxide, according to the invention.
- Very particular preference is given to those polymers in which monomers of the type (a) are used in which R 3 , R 4 and R 5 are methyl groups, Z is an NH group and A H is a halide, methoxysulfate or ethoxysulfate ion ; Acrylamidopropyl-trimethyl-ammonium chloride is a particularly preferred monomer (a).
- Acrylic acid is preferably used as monomer (b) for the stated polymers.
- the agents according to the invention may contain nonionic polymers (G4).
- Suitable nonionic polymers are, for example:
- Vinylpyrrolidone / Vinylester copolymers as are marketed, for example under theress ⁇ sign Luviskol ® (BASF).
- Luviskol ® VA 64 and Luviskol ® VA 73, each vinylpyrrolidone / vinyl acetate copolymers are also preferred ceremoni ⁇ ionic polymers.
- Cellulose ethers such as hydroxypropyl cellulose, hydroxyethyl cellulose and hydroxypropylcellulose Methylhy- as they are for example sold under the trademark Culminal® ® and Benecel ® (AQUALON) and Natrosol ® grades (Hercules).
- Starch and its derivatives in particular starch, such as Structure XL ® (National Starch), a multifunctional, salt-tolerant starch;
- siloxanes can be both water-soluble and water-insoluble. Both volatile and nonvolatile siloxanes are suitable, nonvolatile siloxanes being understood as meaning those compounds whose boiling point is above 200 ° C. under normal pressure.
- Preferred siloxanes are polydi- alkylsiloxanes, such as, for example, polydimethylsiloxane, polyalkylarylsiloxanes, such as, for example, polyphenylmethylsiloxane, ethoxylated polydialkylsiloxanes and polydialkylsiloxanes which contain amine and / or hydroxyl groups.
- the preparations used contain a plurality of, in particular two different polymers of the same charge and / or in each case an ionic and an amphoteric and / or nonionic polymer.
- the polymers (G) are contained in the agents according to the invention preferably in amounts of from 0.05 to 10% by weight, based on the total agent. Amounts of 0.1 to 5, in particular from 0.1 to 3 wt .-%, are particularly preferred.
- an agent according to the invention may also contain UV filters (I).
- the UV filters to be used according to the invention 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 lies 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 used 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-methoxy-benzophenone
- the water-insoluble compound in the teaching of the invention has the higher effect compared to such water-soluble compounds that differ from it by one or more additional ionic groups.
- water-insoluble of the invention are those UV filters to be understood in the context that does not dissolve at 20 0 C for more than 1 wt .-%, in particular more than 0.1% by weight, in water.
- these compounds should be used in usual cosmetic Oil components at room temperature to be at least 0.1, in particular at least 1 wt .-% soluble). 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 in principle be derived from the known UV filters which can be used in the cosmetics sector, in which a group, generally a hydrogen atom, of the UV filter is replaced by a cationic group Q, in particular having a quaternary amino function. is replaced.
- 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 selected such that the absorption maximum of the UV filters are both in the UVA (315-400 nm) and in the UVB (280-315 nm) or in the UVC ( ⁇ 280 nm) range can. 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 such 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 a quaternary ammonium group as the cationic 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 ) X -N + R 1 R 2 R 3 X " , where x is an integer from 1 to 4, R 1 and R 2 independently of one another are C 1 -4 alkyl groups, R 3 represents a Ci -22 alkyl group or a benzyl group and x 'is a physiologically acceptable anion.
- x is preferably the number 3
- R 1 and R 2 each represents a methyl group and R 3 is either a methyl group or a saturated or unsaturated, linear or branched hydrocarbon chain having 8 to 22, especially 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.
- 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 compounds keeps handy er ⁇ as commercial products cinnamic acid-trimethylammonium chloride (quat Incro- ® UV-283) and dodecyldimethylaminobenzamidopropyldimethylammonium dimethylammoniumtosy- lat (EscaIol ® 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 with a cationic group is preferred.
- the UV filters (I) are contained in the compositions according to the invention usually in amounts of 0.1-5 wt .-%, based on the total agent. Amounts of from 0.4 to 2.5% by weight are preferred.
- compositions of the invention may further contain a 2-pyrrolidinone-5-carboxylic acid and its derivatives (J).
- a 2-pyrrolidinone-5-carboxylic acid and its derivatives Preference is given to the sodium, potassium, calcium, magnesium or ammonium salts in which the ammonium ion carries, in addition to hydrogen, one to three C 1 - to C 4 -alkyl groups.
- the sodium salt is most preferred.
- the amounts used in the compositions according to the invention are preferably from 0.05 to 10% by weight, based on the total composition, particularly preferably from 0.1 to 5, and in particular from 0.1 to 3,% by weight.
- compositions according to the invention may also contain plant extracts (L).
- 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.
- According to the invention are especially the extracts of green tea, oak bark, stinging nettle, witch hazel, hops, henna, chamomile, burdock root, horsetail, white dome, lime blossom, almond, aloe vera, spruce needle, horse chestnut, sandalwood, juniper, coconut, mango, apricot, lime , Wheat, kiwi, melon, orange, grapefruit, sage, rosemary, birch, mallow, meadowfoam, quenelle, yarrow, thyme, lemon balm, toadstool, coltsfoot, marshmallow, meristem, ginseng and ginger root.
- Especially suitable for the use according to the invention are the extracts of green tea, almond, aloe vera, coconut, mango, apricot, lime, wheat, kiwi and melon.
- alcohols and mixtures thereof can be used as extraction agent for the preparation of said plant extracts water.
- the alcohols are lower alcohols such as ethanol and isopropanol, but especially polyhydric alcohols such as ethylene glycol and propylene glycol, both as sole extractant and in admixture with water, are preferred.
- Plant extracts 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.
- compositions according to the invention mixtures of several, especially two, different plant extracts.
- compositions according to the invention contain penetration aids and / or swelling agents (M).
- M penetration aids and / or swelling agents
- M include, for example, urea and urea derivatives, guanidine and its derivatives, arginine and its derivatives, water glass, imidazole and its derivatives, histidine and its derivatives, benzyl alcohol, glycerol, glycol and glycol ethers, propylene glycol and propylene glycol, for example
- 1, 2-diols and 1, 3-diols such as 1, 2-propanediol, 1, 2- Pentanediol, 1, 2-hexanediol, 1, 2-dodecanediol, 1, 3-propanediol, 1, 6-hexanediol, 1, 5-pentanediol, 1, 4-butanediol.
- short-chain carboxylic acids may additionally support the active substance complex (A) from at least one apolar ingredient and at least one protein-complexed trace element from the group Zn, Mg, Cu, Mn, Si, K, Fe.
- 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.
- the short-chain carboxylic acids according to the invention may have one, two, three or more carboxy groups.
- Preferred within the meaning of the invention are 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 according to the invention may of course be substituted along the carbon chain or the ring skeleton.
- the substituents of the carboxylic acids according to the invention are, for example, C 1 -C 8 -alkyl, C 2 -C 8 -alkenyl, aryl, aralkyl and aralkenyl, hydroxymethyl, C 2 -C 8 -hydroxyalkyl, C 2 -C 8 -hydroxyalkenyl, Aminomethyl, C 2 -C 8 -aminoalkyl, cyano, formyl, oxo, thioxo, hydroxy, mercapto, amino, carboxy or imino groups.
- Preferred substituents are C 1 -C 8 alkyl, hydroxymethyl, hydroxy, amino and carboxy groups. Particular preference is given to substituents in the D position.
- substituents 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 examples 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, 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, Bicarbaminklad, 4,4 '- dicyano-6, 6
- Propanetricarboxylic acid a dicarboxylic acid selected from the group formed by compounds of general formula (N-I),
- n is a number from 4 to 12 and one of the two groups X and Y is a COOH 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 formally from the dicarboxylic acids according to formula (NI) by addition of a molecule of water to the double bond in the cyclohexene ring.
- 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.
- Acrylic acid but also, for example, methacrylic acid and crotonic acid are particularly preferred as the monocarboxylic acid component.
- mixtures of isomers are formed in which one component is present in excess. 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 formation 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).
- carboxylic acids of the invention listed above by way of example, their physiologically tolerable salts can also be used according to the invention.
- examples of such 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.
- 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 together with the active compound (A). It has been shown that besides 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 acid esters are esters of ⁇ -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 C12-C15 fatty alcohols are particularly preferred. Esters of this type are commercially available, eg under the trademark Cosmacol® ® EniChem, Augusta Industriale. Especially preferred
- Polyhydroxypolycarboxylic acids are polylactic acid and polyuric acid and their esters.
- hydroxycarboxylic acid esters are full esters of glycolic acid, lactic acid, malic acid, tartaric acid or citric acid.
- suitable hydroxycarboxylic esters are esters of ⁇ -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.
- the amount of hydroxycarboxylic acid ester used is 0.1-15% by weight, based on the agent, preferably 0.1-10% by weight, and very particularly preferably 0.1-5% by weight.
- the agents according to the invention furthermore contain at least one solid, in particular at least one fatty substance, in nanoparticulate form.
- a solid is for example, hydrogenated castor oil.
- the size of the nanoparticles is preferably about 100 nm or below.
- dyeing comprises all processes known to the person skilled in the art in which a colorant is applied to the hair, which may have been moistened, and left on the hair either for a period of a few minutes to about 45 minutes and then with water or a surfactant-containing agent is rinsed or left completely on the hair. It is in this context explicitly on the known monographs, z. B. Kh. Schrader, bases and formulations of cosmetics, 2nd edition, Wegig book Verlag, Heidelberg, 1989, referenced that reflect the corresponding knowledge of the expert.
- composition of the dyeing or toning agent is not subject to any principal
- developer components are usually primary aromatic amines with another, located in the para or ortho position free or substituted hydroxy or amino group, diaminopyridine derivatives, heterocyclic hydrazones, 4-aminopyrazolone derivatives and 2,4,5,6-tetraaminopyrimidine and its derivatives used.
- m-phenylenediamine derivatives naphthols, resorcinol and resorcinol derivatives, pyrazolones, m-aminophenols and substituted pyridine derivatives are generally used.
- ⁇ -naphthol 1, 5, 2,7- and 1, 7-dihydroxynaphthalene, 5-amino-2-methylphenol, m-aminophenol, resorcinol, resorcinol monomethyl ether, m-phenylenediamine, 2,4 are suitable as coupler substances Diaminophenoxyethanol, 2-amino-4- (2-hydroxyethylamino) -anisole (Lehmann's Blue), 1-phenyl-3-methyl-pyrazol-5-one, 2,4-dichloro-3-aminophenol, 1, 3 Bis (2,4-diaminophenoxy) propane, 2-chlororesorcinol, 4-chlororesorcinol, 2-chloro-6-methyl-3-aminophenol, 2-methylresorcinol, 5-methylresorcinol, 3-amino-6 methoxy-2-methylaminopyridine and 3,5-diamino-2,6-dimethoxypyridine.
- the agents according to the invention may contain one or more dye precursors.
- agents according to the invention which comprise at least one developer-type oxidation dye precursor and / or optionally at least one coupler-type oxidation dye precursor are preferred.
- the present invention is not subject to any restrictions.
- the agents according to the invention can be used as further dye precursors
- Developer and / or coupler-type oxidation dye precursors and precursors of naturally-occurring dyes, such as indole and indoline derivatives, and mixtures of representatives of these groups.
- the agents according to the invention contain at least one developer component.
- developer components are usually primary aromatic amines with a further, located in the para or ortho position, free or substituted hydroxy or amino group, Diaminopyridine derivatives, heterocyclic hydrazones, 4-aminopyrazole derivatives and 2,4,5,6-tetraaminopyrimidine and its derivatives used.
- p-phenylenediamine derivatives of the formula (E1) it may be preferred according to the invention to use as the developer component a p-phenylenediamine derivative or one of its physiologically acceptable salts. Particular preference is given to p-phenylenediamine derivatives of the formula (E1)
- G 1 is a hydrogen atom, a C 1 - to C 4 -alkyl radical, a C 1 - to C 4 -
- Monohydroxyalkyl radical a C 2 - to C 4 -polyhydroxyalkyl radical, a (C 1 - to C 4 ) -
- G 2 is a hydrogen atom, a C 1 - to C 4 -alkyl radical, a C 1 - to C 4 -
- Monohydroxyalkyl radical a C 2 - to C 4 -polyhydroxyalkyl radical, a (C 1 - to C 4 ) -
- G 3 represents a hydrogen atom, a halogen atom, such as a chlorine, bromine, iodine or fluorine atom, a C 1 - to C 4 -alkyl radical, a C 1 - to C 4 -
- Monohydroxyalkyl radical a C 2 - to C 4 -polyhydroxyalkyl radical, a C 1 - to C 4 -
- Hydroxyalkoxy radical a C 1 - to C 4 -Acetylaminoalkoxyrest, a C 1 - to C 4 -
- G 4 represents a hydrogen atom, a halogen atom or a C 1 - to C 4 -
- C 1 - to C 4 -alkyl radicals mentioned as substituents in the compounds according to the invention are the groups methyl, ethyl, propyl, isopropyl and butyl. Ethyl and methyl are preferred alkyl radicals.
- C 1 -C 4 -alkoxy radicals which are preferred according to the invention are, for example, a methoxy or an ethoxy group.
- a C 1 to C 4 hydroxyalkyl group there may be mentioned a hydroxymethyl, a 2-hydroxyethyl, a 3-hydroxypropyl or a 4-hydroxybutyl group. A 2-hydroxyethyl group is particularly preferred.
- a particularly preferred C 2 to C 4 polyhydroxyalkyl group is the 1,2-dihydroxyethyl group.
- halogen atoms are according to the invention F, Cl or Br atoms, Cl atoms are very particularly preferred.
- the other terms used are derived according to the invention from the definitions given here.
- nitrogen-containing groups of the formula (E1) are in particular the amino groups, C 1 to C 4 monoalkylamino groups, C 1 to C 4 dialkylamino groups, C 1 to C 4 trialkylammonium groups, C 1 to C 4 monohydroxyalkylamino groups, Imidazolinium and ammonium.
- Particularly preferred p-phenylenediamines of the formula (E 1) are selected from p-phenylenediamine, p-toluenediamine, 2-chloro-p-phenylenediamine, 2,3-dimethyl-p-phenylenediamine, 2,6-dimethyl-p-phenylenediamine, 2,6-diethyl-p-phenylenediamine, 2,5-dimethyl-p-phenylenediamine, N, N-dimethyl-p-phenylenediamine, N, N-diethyl-p-phenylenediamine, N, N-dipropyl-p-phenylenediamine, 4-amino-3-methyl- (N, N-diethyl) -aniline, N, N-bis- ( ⁇ -hydroxyethyl) -p-phenylenediamine, 4-N, N-bis ( ⁇ -hydroxyethyl) amino-2 -methylaniline, 4-N, N-bis (
- Very particular preferred p-phenylenediamine derivatives of the formula (E1) according to the invention are p-phenylenediamine, p-toluenediamine, 2- ( ⁇ -hydroxyethyl) -p-phenylenediamine, 2- ( ⁇ , ⁇ -dihydroxyethyl) -p-phenylenediamine and N, N-bis ( ⁇ -hydroxyethyl) -p-phenylenediamine.
- developer component compounds which contain at least two aromatic nuclei which are substituted by amino and / or hydroxyl groups.
- binuclear developer components which can be used in the compositions according to the invention, mention may be made in particular of the compounds which correspond to the following formula (E2) and their physiologically tolerated salts:
- Z 1 and Z 2 independently of one another represent a hydroxyl or NH 2 radical which is optionally substituted by a C 1 - to C 4 -alkyl radical, by a C 1 - to C 4 -hydroxyalkyl radical and / or by a bridge Y.
- the bridge Y is an alkylene group having 1 to 14 carbon atoms, such as a linear or branched alkylene chain or an alkylene ring, which is one or more nitrogen-containing groups and / or one or more heteroatoms such as oxygen , Sulfur or nitrogen atoms may be interrupted or terminated and may possibly be substituted by one or more hydroxyl or C 1 - to C 8 -alkoxy radicals, or a direct bond,
- G 5 and G 6 independently of one another represent a hydrogen or halogen atom, a C 1 - to C 4 -alkyl radical, a C 1 - to C 4 -monohydroxyalkyl radical, a C 2 - to C 4 -hydroxyalkyl radical, a C 1 - to C 4 -aminoalkyl radical or a direct compound for bridging Y, G 7 , G 8 , G 9 , G 10 , G 11 and G 12 are each independently
- Hydrogen atom a direct bond to the bridging Y or a C 1 - to C 4 -
- Preferred binuclear developer components of the formula (E2) are in particular: N, N'-bis ( ⁇ -hydroxyethyl) -N, N'-bis (4'-aminophenyl) -1,3-diamino-propan-2-ol I N, N'-bis-C ⁇ -hydroxyethyl O-N, N'-bis-C 1 -aminophenyl O-ethylenediamine, N, N'-bis (4-aminophenyl) tetramethylenediamine, N, N'-bis ( ⁇ -) hydroxyethyl) -N, N'-bis (4-aminophenyl) tetramethylenediamine, N, N'-bis (4-methylaminophenyl) tetramethylenediamine, N, N'-diethyl-N, N'-bis ( 4- l -amino-3'-methylphenyl) -ethylenediamine, bis (2-hydroxy-5-aminophenyl
- Very particularly preferred binuclear developer components of the formula (E2) are N, N'-bis ( ⁇ -hydroxyethyl) -N, N'-bis (4'-aminophenyl) -1,3-diamino-propan-2-ol, Bis (2-hydroxy-5-aminophenyl) methane, 1,3-bis (2,5-diaminophenoxy) -propan-2-ol, N, N'-bis (4'-aminophenyl) -1, 4-diazacycloheptane and 1, 10-bis- (2 ', 5'-diaminophenyl) -1,4,7,10-tetraoxadecane or one of its physiologically acceptable salts.
- p-aminophenol derivatives of the formula (E3) it may be preferred according to the invention to use as the developer component a p-aminophenol derivative or one of its physiologically tolerable salts. Particular preference is given to p-aminophenol derivatives of the formula (E3)
- G 13 represents a hydrogen atom, a halogen atom, a C 1 - to C 4 -alkyl radical, a C 1 - to C 4 -monohydroxyalkyl radical, a C 2 - to C 4 -polyhydroxyalkyl radical, a (C 1 - to C 4 ) - alkyl, alkoxy (C r to C 4) a C 1 - to C 4 aminoalkyl radical, a Hy (JrOXy- (C 1 - to C 4) -aIkylaminorest, a C 1 - to C 4 -Hydroxyalkoxyrest, a C -aminoalkyirest to C 4 hydroxyalkyl (C 1 to C 4), or (di-C 1 - - to C 4 -alkylamino) - 1 (C r to C 4) alkyl, and
- G 14 is a hydrogen or halogen atom, a C 1 - to C 4 -alkyl radical, a C 1 - to C 4 -monohydroxyalkyl radical, a C 2 - to C 4 -polyhydroxyalkyl radical, a (C 1 - to C 4 ) - Alkoxy (C r to C 4 ) -alkyl radical, a C 1 - to C 4 -aminoalkyl radical or a C 1 - to C 4 -cyanoalkyl radical,
- G 15 is hydrogen, C 1 - to C 4 alkyl, C 1 - to C 4 - monohydroxyalkyl radical, a C 2 - to C 4 polyhydroxyalkyl radical, a phenyl radical or a benzyl radical, and
- G 16 is hydrogen or a halogen atom.
- Preferred p-aminophenols of the formula (E3) are, in particular, p-aminophenol, N-methyl-p-aminophenol, 4-amino-3-methylphenol, 4-amino-3-fluorophenol, 2-hydroxymethylamino-4-aminophenol, 4 -Amino-3-hydroxymethylphenol, 4-amino-2- (D-hydroxyethoxy) -phenol, 4-amino-2-methylphenol, 4-amino-2-hydroxymethylphenol, 4-amino-2-methoxymethyl-phenol, 4-amino -2-aminomethylphenol, 4-amino-2- ( ⁇ -hydroxyethyl-aminomethyl) phenol, 4-amino-2- ( ⁇ , ⁇ -dihydroxyethyl) phenol, 4-amino-2-fluorophenol, 4-amino-2 -chlorophenol, 4-amino-2,6-dichlorophenol, 4-amino-2- (diethyl-aminomethyl) -phenol and their physiological
- Very particularly preferred compounds of the formula (E3) are p-aminophenol, 4-amino-3-methylphenol, 4-amino-2-aminomethylphenol, 4-amino-2- ( ⁇ , ⁇ -dihydroxyethyl) -phenol and 4-amino 2- (diethylaminomethyl) -phenol.
- the developer component may be selected from o-aminophenol and its derivatives such as 2-amino-4-methylphenol, 2-amino-5-methylphenol or 2-amino-4-chlorophenol.
- the developer component may be selected from heterocyclic developer components such as the pyridine, pyrimidine, pyrazole, pyrazole pyrimidine derivatives and their physiologically acceptable salts.
- Preferred pyridine derivatives are in particular the compounds 2,5-diamino-pyridine, 2- (4'-methoxyphenyl) amino-3-amino-pyridine, 2,3-diamino-6-methoxypyridine, 2- ( ⁇ -methoxyethyl ) amino-3-amino-6-methoxy-pyridine and 3,4-diamino-pyridine.
- Preferred pyrimidine derivatives are in particular 2,4,5,6-tetraaminopyrimidine, 4-hydroxy-2,5,6-triaminopyrimidine, 2-hydroxy-4 > 5,6-triaminopyrimidine, 2-dimethylamino-4,5,6- triaminopyrimidine, 2,4-dihydroxy-5,6-diaminopyrimidine and 2,5,6-triaminopyrimidine.
- Particularly preferred pyrazole derivatives are 4,5-diamino-1-methylpyrazole, 4,5-diamino-1- ( ⁇ -hydroxyethyl) pyrazole, 3,4-diaminopyrazole, 4,5-diamino-1 - (4 1 - chlorobenzyl) pyrazole, 4,5-diamino-1,3-dimethylpyrazole, 4,5-diamino-3-methyl-1-phenylpyrazole, 4,5-diamino-1-methyl-3-phenylpyrazole, 4-amino-1 , 3-dimethyl-5-hydrazinopyrazole, 1-benzyl-4,5-diamino-3-methylpyrazole, 4,5-diamino-3-tert-butyl-1-methylpyrazole, 4,5-diamino-1-tert.
- D- to C 4 alkyl radical, an aryl radical, a hydroxyalkyl radical to C 4, a C 2 - - G 17, G 18, G 19 and G 20 are independently a hydrogen atom, a C 1 to C 4 - polyhydroxyalkyl a (C 1 - to C 4) alkoxy (C r to C 4) - alkyl group, a C 1 - to C 4 -aminoalkyl radical, which may be optionally protected by an acetyl ureide or a sulfonyl residue, , alkyl group alkylamino (Cr to C4) a Di - - a (C 1 - to C 4) [(C r to C 4) alkyl] - (C 1 - to C 4) - aminoalkyl, wherein the dialkyl Radicals optionally form a carbon cycle or a heterocycle having 5 or 6 chain members, a C 1 - to C 4 - hydroxyalkyl or
- 1 and n has the value 0 or 1, with the proviso that the sum of p + q is not equal to 0, if p + q equals 2, n has the value O, and the groups NG 17 G 18 and NG 19 G 20 occupy the positions (2, 3); (5,6); (6,7); (3,5) or (3,7); when p + q is 1, n is 1, and the groups NG 17 G 18 (or NG 19 G 20 ) and the group OH occupy the positions (2, 3); (5,6); (6,7); (3,5) or (3,7);
- the pyrazolo [1, 5-a] -pyrimidines of the above formula (E4) can be prepared as described in the literature by cyclization from an aminopyrazole or from hydrazine.
- the agents according to the invention contain at least one coupler component.
- coupler components m-phenylenediamine derivatives, naphthols, resorcinol and resorcinol derivatives, pyrazolones and m-aminophenol derivatives are generally used.
- Suitable coupler substances are in particular 1-naphthol, 1, 5, 2,7- and 1, 7-dihydroxynaphthalene, 5-amino-2-methylphenol, m-aminophenol, resorcinol, resorcinomonomethylether, m-phenylenediamine, 1-phenyl 3-methyl-pyrazolone-5, 2,4-dichloro-3-aminophenol, I, S-bis-C, C''-diaminophenoxy propane, 2-chloro-resorcinol, 4-chloro-resorcinol, 2-chloro-6 -methyl-3-aminophenol, 2-amino-3-hydroxypyridine, 2-methylresorcinol, 5-methylresorcinol and 2-methyl-4-chlor
- Preferred coupler components according to the invention are m-aminophenol and its derivatives, such as, for example, 5-amino-2-methylphenol, N-cyclopentyl-3-aminophenol, 3-amino-2-chloro-6-methylphenol, 2-hydroxy-4-aminophenoxyethanol, 2 6-dimethyl-3-aminophenol, 3-trifluoroacetylamino-2-chloro-6-methylphenol, 5-amino-4-chloro-2-methylphenol, 5-amino-4-methoxy-2-methylphenol, 5- (2'- Hydroxyethyl) amino-2-methylphenol, 3- (diethylamino) -phenol, N-cyclopentyl-3-aminophenol, 1, 3-dihydroxy-5- (methylamino) -benzene, 3-ethylamino-4-methylphenol and 2,4- Dichloro-3-aminophenol, o-aminophenol and its derivatives, m-diaminobenzene and its derivatives such as
- Resorcinol monomethyl ether 2-methylresorcinol, 5-methylresorcinol, 2.5-
- Pyridine derivatives such as 2,6-dihydroxypyridine, 2-amino-3-hydroxypyridine, 2-amino-5-chloro-3-hydroxypyridine, 3-amino-2-methylamino-6-methoxypyridine, 2,6-dihydroxy-3, 4-dimethylpyridine, 2,6-dihydroxy-4-methylpyridine, 2,6-diaminopyridine, 2,3-diamino-6-methoxypyridine and 3,5-diamino-2,6-dimethoxypyridine,
- Naphthalene derivatives such as 1-naphthol, 2-methyl-1-naphthol, 2-
- Morpholine derivatives such as 6-hydroxybenzomorpholine and 6-aminobenzomorpholine,
- Quinoxaline derivatives such as 6-methyl-1,2,3,4-tetrahydroquinoxaline, pyrazole derivatives such as 1-phenyl-3-methylpyrazol-5-one, indole derivatives such as 4-hydroxyindole, 6-hydroxyindole and 7-hydroxyindole,
- Pyrimidine derivatives such as 4,6-diaminopyrimidine, 4-amino-2,6-dihydroxypyrimidine, 2,4-diamino-6-hydroxypyrimidine, 2,4,6-trihydroxypyrimidine, 2-
- Methylenedioxybenzene derivatives such as, for example, 1-hydroxy-3,4-methylenedioxybenzene, 1-amino-3,4-methylenedioxybenzene and 1- (2'-methylenedioxybenzene)
- coupler components according to the invention are 1-naphthol, 1, 5, 2,7- and 1, 7-dihydroxynaphthalene, 3-aminophenol, 5-amino-2-methylphenol, 2-amino-3-hydroxypyridine, resorcinol, 4-chlororesorcinol , 2-chloro-6-methyl-3-aminophenol, 2-methylresorcinol, 5-methylresorcinol, 2,5-dimethylresorcinol and 2,6-dihydroxy-3,4-dimethylpyridine.
- precursors of naturally-analogous dyes 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.
- the agents may carry further substituents, e.g. Example in the form of etherification or esterification of the hydroxy group or alkylation of the amino group.
- the agents contain at least one indole and / or indoline derivative.
- Particularly suitable precursors of naturally-analogous hair dyes are derivatives of 5,6-dihydroxyindoline of the formula (IIIa),
- R 1 is hydrogen, a C r C 4 -alkyl group or a C 1 -C 4 -hydroxy-alkyl group
- R 2 is hydrogen or a -COOH group, wherein the -COOH group may also be present as a salt with a physiologically compatible cation
- R 3 is hydrogen or a C 1 -C 4 -alkyl group
- R 4 is hydrogen, a C C 1 -C 4 -alkyl group or a group -CO-R 6 , in which
- R 6 represents a C 1 -C 4 -alkyl group
- R 5 represents one of the groups mentioned under R 4 , as well as physiologically tolerable 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.
- derivatives of the 5,6-dihydroxyindole of the formula (IIIb) are also suitable as precursors of naturally-analogous hair dyes.
- R 1 is hydrogen, a C r C 4 -alkyl group or a C 1 -C 4 -hydroxyalkyl group
- R 2 is hydrogen or a -COOH group, wherein the -COOH group may also be present as a salt with a physiologically compatible cation,
- R 3 is hydrogen or a C 1 -C 4 -alkyl group
- R 4 is hydrogen, a C r C 4 alkyl group or a group -CO-R 6 , in which R 6 is a C r C 4 alkyl group, and
- R 5 is one of the groups mentioned under R 4 , as well as physiologically acceptable 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 agents used in the process according to the invention both as free bases and in the form of their physiologically acceptable salts with inorganic or organic acids, eg. As the 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 amino acid is advantageously an ⁇ -amino acid; Very particularly preferred ⁇ -amino acids are arginine, ornithine, lysine, serine and histidine, in particular arginine.
- Preferred agents according to the invention are characterized in that they contain at least one dye precursor from the groups of aromatic and heteroaromatic diamines, aminophenols, naphthols, polyphenols CH-acidic coupler components and their derivatives in amounts of from 0.01 to 25% by weight, preferably 0.5 to 10 wt.%, In particular from 1 to 5 wt .-%, each based on the total agent included.
- formulation (A) may contain one or more substantive dyes for shade.
- Direct dyes are usually nitrophenylenediamines, nitroaminophenols, azo dyes, anthraquinones or indophenols.
- Preferred substantive dyes are those having the international designations or trade names HC Yellow 2, HC Yellow 4, HC Yellow 5, HC Yellow 6, HC Yellow 12, Acid Yellow 1, Acid Yellow 10, Acid Yellow 23, Acid Yellow 36, HC Orange Disperse Orange 3, Acid Orange 7, HC Red 1, HC Red 3, HC Red 10, HC Red 11, HC Red 13, Acid Red 33, Acid Red 52, HC Red BN, Pigment Red 57: 1, HC Blue 2, HC Blue 12, Disperse Blue 3, Acid Blue 7, Acid Green 50, HC Violet 1, Disperse Violet 1, Disperse Violet 4, Acid Violet 43, Disperse Black 9, Acid Black 1, and Acid Black 52 known compounds as well as 1 , 4-diamino-2-nitrobenzene, 2-amino-4-nitrophenol, 1, 4-bis- ( ⁇ -hydroxyethyl) amino-2-nitrobenzene, 3-nitro-4- ( ⁇ -hydroxyethyl) aminophenol, 2- 2'-hydroxyethyl) amino-4,6-dinitrophenol, 1- (2'-hydroxyethyl) amino-4-methyl-2-nitro
- Ureidoethyl) amino-4-nitrobenzene 4-amino-2-nitrodiphenylamine-2'-carboxylic acid, 6-nitro-1,2,3,4-tetrahydroquinoxaline, 2-hydroxy-1,4-naphthoquinone, picramic acid and their derivatives Salts, 2-amino-6-chloro-4-nitrophenol, 4-ethylamino-3-nitrobenzoic acid and 2-chloro-6-ethylamino-1-hydroxy-4-nitrobenzene.
- Corresponding agents according to the invention which are characterized in that they contain at least one substantive dye from the cationic group (basic) dyes, preferably Basic Blue 6, Cl-No. 51,175; Basic Blue 7, Cl-No. 42.595; Basic Blue 9, Cl-No. 52.015; Basic Blue 26, Cl-No. 44.045; Basic Blue 41, Cl-No. 11, 154; Basic Blue 99, Cl-No. 56.059; Basic Brown 4, Cl-No. 21, 010; Basic Brown 16, Cl-No. 12.250; Basic Brown 17, Cl-No. 12,251; Basic Green 1, Cl-No. 42.040; Basic Orange 31; Basic Red 2, Cl-No. 50.240; Basic Red 22, Cl-No. 11.055; Basic Red 46; Basic Red 51; Basic Red 76, Cl-No.
- Basic Blue 6 cationic group
- dyes some representatives are particularly preferred, for which reason further preferred agents according to the invention are characterized in that they comprise at least one direct-puller selected from Basic Blue 7, Basic Blue 99, Basic Violet 14, Basic Brown 16, Basic Brown 17, Basic Orange 31, Basic Red 46, Basic Red 51, Basic Red 76, Basic Yellow 57, Basic Yellow 87, Acid Black 1, Acid Blue 7, Acid Violet 43, Acid Red 23, Acid Red 52, Acid Orange 7, Acid Yellow Disperse Blue 1, Disperse Blue 3, Disperse Violet 1, Disperse Violet 4, HC Orange 1, HC Red 1, HC Red 1, Acid Yellow 10, Acid Yellow 36, Food Green 3, Pigment Red 57-1, Disperse Black 9, Disperse Blue 1 3, HC Red 13, HC Yellow 2, HC Yellow 4, Na Pikramat, 1,4-bis (2 '-hydroxyethyl) amino-2-nitro-p-phenylenediamine, HC Yellow 5, HC Blue 2, HC Blue 12, 4-amino-3-nitrophenol, HC Yellow 6, HC Yellow 12, 2-nitro-1- (2 'hydroxyethyl)
- agents according to the invention may contain a cationic substantive dye. Particularly preferred are
- 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 direct 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 ® are, according to the invention also very particularly preferred cationic direct dyes.
- the agents according to the invention according to this embodiment contain the substantive dyes preferably in an amount of 0.01 to 20 wt .-%, based on the total agent.
- preparations of the invention may also naturally occurring dyes such as henna red, henna neutral, henna black, chamomile, sandalwood, black tea, buckthorn bark, sage, bluewood, madder root, Catechu, Sedre and alkano root are included.
- oxidation dye precursors or the direct dyes it is not necessary for the oxidation dye precursors or the direct dyes to be in each case homogeneous compounds. Rather, in the inventive compositions, due to the production process for the individual dyes, in minor amounts, 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 oxidation dye can also be applied to the hair together with a catalyst which activates the oxidation of the dye precursors, for example by atmospheric oxygen.
- catalysts are, for example, metal ions, iodides, quinones or certain enzymes.
- Suitable metal ions are, for example, Zn 2+ , Cu 2+ , Fe 2+ , Fe 3+ , Mn 2+ , Mn 4+ , Li + , Mg 2+ , Ca 2+ and Al 3+ .
- Particularly suitable are Zn 2+ , Cu 2+ and Mn 2+ .
- the metal ions can in principle be used in the form of any physiologically acceptable salt or in the form of a complex compound.
- Preferred salts are the acetates, sulfates, halides, lactates and tartrates.
- Suitable enzymes are e.g. Peroxidases that can significantly increase the effect of small amounts of hydrogen peroxide. Furthermore, such enzymes are suitable according to the invention which directly oxidize the oxidation dye precursors with the aid of atmospheric oxygen, such as, for example, the laccases, or generate small amounts of hydrogen peroxide in situ and thus biocatalytically activate the oxidation of the dye precursors. Particularly suitable catalysts for the oxidation of the dye precursors are the so-called 2-electron oxidoreductases in combination with the specific substrates, e.g.
- Alcohol oxidase and alcohol (MeOH, EtOH), lactate oxidase and lactic acid and their salts, tyrosinase oxidase and tyrosine,
- coloring agents are offered as a combination pack containing a coloring cream and a separately packaged oxidizing solution. Shortly before use, both components are mixed together and the prepared mixture is applied to the hair to be dyed. The mixing ratio of the two components can be chosen freely. Appropriately, the Preparation of the oxidizing agent then mixed immediately before the dyeing of the hair with the preparation with the dye precursors.
- the resulting ready-to-use hair dye preparation should preferably have a pH in the range of 6 to 10. Particularly preferred is the use of the hair dye in a weakly alkaline medium.
- the application temperatures may range between 15 and 40 ° C., preferably at the temperature of the scalp.
- the hair dye is removed by rinsing of the hair to be dyed.
- Nach ⁇ wash with a shampoo is eliminated if a strong surfactant-containing carrier, eg. As a dyeing shampoo was used.
- the preparation with the dye precursors can be applied to the hair without prior mixing with the oxidation component.
- the oxidation component is then applied, if appropriate after an intermediate rinse.
- the corresponding agent is adjusted to a pH of about 4 to 7.
- an air oxidation is initially desired, wherein the applied agent preferably has a pH of 7 to 10.
- the use of acidified peroxydisulfate solutions may be preferred as the oxidizing agent.
- nonionic polymers such as vinylpyrrolidone / vinyl acrylate copolymers, polyvinylpyrrolidone and vinylpyrrolidone / vinyl acetate copolymers, anionic polymers such as polyacrylic and polymethacrylic acids in the form of their copolymers with acrylic and methacrylic esters and amides, polyoxycarboxylic acids, such as polyketo- and polyaldehydocarboxylic acids and their salts, as well as polymers and copolymers of crotonic acid with esters and amides of acrylic and methacrylic acid, such as vinyl acetate-crotonic acid and vinyl acetate-vinyl propionate-crotonic acid copolymers, Structurants such as glucose and maleic acid, hair conditioning compounds such as phospholipids, for example
- Soy lecithin, egg lecithin and cephalins Soy lecithin, egg lecithin and cephalins,
- Perfume oils in particular those having the fragrance of a fruit, such as apple, pear, strawberry, peach, apricot, pineapple, banana, cherry, kiwi,
- Scent of a stimulant such as tobacco, cola, chewing gum,
- Solubilizers such as ethanol, isopropanol, ethylene glycol, propylene glycol,
- Glycerol diethylene glycol and ethoxylated triglycerides
- Anti-dandruff agents such as climbazole, piroctone olamine and zinc omadine,
- Active ingredients such as bisabolol, allantoin, panthenol, niacinmide, tocopherol and
- Bodying agents such as sugar esters, polyol esters or polyol alkyl ethers,
- Fats and waxes such as spermaceti, beeswax, montan wax, paraffins, esters,
- Swelling and penetration substances such as PCA, glycerol, propylene glycol monoethyl ether,
- Opacifiers such as latex or styrene / acrylamide copolymers
- Pearlescing agents such as ethylene glycol mono- and distearate or PEG-3-distearate,
- Reducing agents e.g. Thioglycolic acid and its derivatives, thiolactic acid,
- Oxidizing agents such as hydrogen peroxide, potassium bromate and sodium bromate
- Propellants such as propane-butane mixtures, N 2 O, dimethyl ether, CO 2 and air and
- Preservative With regard to the manner in which the active ingredient used according to the invention or the active compound combinations according to the invention are applied to the hair and / or to the skin, there are no fundamental restrictions. For example, creams, lotions, solutions, waters, emulsions such as W / O, O / W, PIT emulsions (called phase inversion emulsions, PIT), microemulsions and multiple emulsions, nanoemulsions, coarse, unstable, single or multi-phase shaking mixtures, gels, sprays, aerosols and foam aerosols suitable. These are usually formulated on an aqueous or aqueous-alcoholic basis.
- emulsions such as W / O, O / W, PIT emulsions (called phase inversion emulsions, PIT)
- microemulsions and multiple emulsions nanoemulsions
- coarse, unstable, single or multi-phase shaking mixtures gels, sprays, aerosols and foam aerosols suitable.
- alcoholic component As alcoholic component while lower alkanols and polyols such as propylene glycol and glycerol are used. Ethanol and isopropanol are preferred alcohols.
- Water and alcohol may be present in the aqueous alcoholic base in a weight ratio of 1:10 to 10: 1.
- Water and aqueous-alcoholic mixtures which contain up to 50% by weight, in particular up to 25% by weight, of alcohol, based on the mixture of alcohol and water, can be preferred bases according to the invention.
- the pH of these preparations can in principle be between 2 and 11. It is preferably between 2 and 7, values of 3 to 6 being particularly preferred. To adjust this pH, virtually any acid or base that can be used for cosmetic purposes can be used. Usually, acids are used as acids.
- Acid acids are understood to mean those acids which are absorbed as part of normal food intake and have positive effects on the human organism.
- Exotic acids are, for example, acetic acid, lactic acid, tartaric acid, citric acid, malic acid, ascorbic acid and gluconic acid.
- citric acid and lactic acid is particularly preferred.
- Preferred bases are ammonia, alkali hydroxides, monoethanolamine, triethanolamine and N, N, N ', N'-tetrakis (2-hydroxypropyl) ethylenediamine.
- Another object of the present invention is a method for scenting packaged cosmetic products, in which the cosmetic product is added a fragrant configured instructions for use and / or a fragrant designed aid for the application of the cosmetic product.
- the cosmetic product is added a fragrant configured instructions for use and / or a fragrant designed aid for the application of the cosmetic product.
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- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Animal Behavior & Ethology (AREA)
- General Health & Medical Sciences (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Birds (AREA)
- Epidemiology (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Oral & Maxillofacial Surgery (AREA)
- Cosmetics (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102004044371A DE102004044371A1 (de) | 2004-09-10 | 2004-09-10 | Kit mit kosmetischem Mittel |
| PCT/EP2005/006459 WO2006027036A1 (de) | 2004-09-10 | 2005-06-16 | Duftendes kit mit kosmetischem mittel |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP1796984A1 true EP1796984A1 (de) | 2007-06-20 |
Family
ID=34970382
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP05752286A Ceased EP1796984A1 (de) | 2004-09-10 | 2005-06-16 | Duftendes kit mit kosmetischem mittel |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP1796984A1 (de) |
| DE (1) | DE102004044371A1 (de) |
| WO (1) | WO2006027036A1 (de) |
Family Cites Families (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS5312475B1 (de) * | 1971-06-30 | 1978-05-01 | ||
| FR2617212B1 (fr) * | 1987-06-26 | 1990-04-27 | Arjomari Prioux | Procede de fabrication d'un papier impression-ecriture et produit parfume obtenu |
| US4901851A (en) * | 1988-03-29 | 1990-02-20 | Martincic Gerry | Cleaning package |
| DE4127429A1 (de) * | 1991-08-19 | 1993-02-25 | Pasquale Mongiello | Hygieneverpackung mit zahnbuerste |
-
2004
- 2004-09-10 DE DE102004044371A patent/DE102004044371A1/de not_active Withdrawn
-
2005
- 2005-06-16 EP EP05752286A patent/EP1796984A1/de not_active Ceased
- 2005-06-16 WO PCT/EP2005/006459 patent/WO2006027036A1/de not_active Ceased
Non-Patent Citations (1)
| Title |
|---|
| See references of WO2006027036A1 * |
Also Published As
| Publication number | Publication date |
|---|---|
| DE102004044371A1 (de) | 2006-03-16 |
| WO2006027036A1 (de) | 2006-03-16 |
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