WO2004084853A2 - Photoresponsive fragrances - Google Patents
Photoresponsive fragrances Download PDFInfo
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- WO2004084853A2 WO2004084853A2 PCT/US2004/008610 US2004008610W WO2004084853A2 WO 2004084853 A2 WO2004084853 A2 WO 2004084853A2 US 2004008610 W US2004008610 W US 2004008610W WO 2004084853 A2 WO2004084853 A2 WO 2004084853A2
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- alkoxy
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K8/00—Cosmetics or similar toiletry preparations
- A61K8/18—Cosmetics or similar toiletry preparations characterised by the composition
- A61K8/30—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
- A61K8/40—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing nitrogen
- A61K8/42—Amides
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K8/00—Cosmetics or similar toiletry preparations
- A61K8/18—Cosmetics or similar toiletry preparations characterised by the composition
- A61K8/30—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds
- A61K8/33—Cosmetics or similar toiletry preparations characterised by the composition containing organic compounds containing oxygen
- A61K8/37—Esters of carboxylic acids
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61Q—SPECIFIC USE OF COSMETICS OR SIMILAR TOILETRY PREPARATIONS
- A61Q13/00—Formulations or additives for perfume preparations
Definitions
- This invention relates to photoresponsive fragrance compositions, and more particularly, to compositions that can be applied to textiles, skin, and hair, which produce a pleasant smell when exposed to sunlight.
- the invention provides such photosensitive fragrance compositions comprising a carrier for topical administration or direct administration or via routine washing, and an organic photoresponsive fragrance agent capable of undergoing efficient photorearrangement to convert the agent molecules and release a desired fragrance.
- fragrance for scenting textiles
- Detergents used for these purposes contain a variety of fragrance molecules to give a pleasant smell.
- Effective fragrances must be volatile in order that they may be scented. This requirement poses a storage issue in that textiles will not retain fragrances for long periods of time, for example during traveling or storage in a closet or otherwise.
- lotions, body washes, and shampoos commonly contain fragrances, where the lotions, body washes and shampoos lose scent over time.
- compositions that contain nonvolatile fragrances that are released upon exposure to sunlight.
- textiles can be stored for extended periods of time and then upon modest exposure to sunlight will begin releasing a desired fragrance.
- textiles can be stored for long periods of time and still maintain a just washed freshness in scent.
- This invention further provides cosmetic products including lotions, soaps, body washes, and shampoos formulated so that fragrances are continually released following routine washing so that skin and hair maintain a fresh smell.
- the invention provides photoactive compounds as ingredients in photoresponsive fragrance compositions described herein.
- photoresponsive fragrance compositions are provided for application to clothes, textiles, skin and hair, comprising a nonvolatile carrier for administration during routine washing or as a spray application.
- the photoresponsive fragrance compositions of the invention comprise derivatives of 3',5'- dimethoxybenzoin having the structure:
- R 1 , R 3 , and R 5 are as defined below.
- FIG. 1 depicts the synthesis of exemplary compounds of the invention.
- FIG. 2 is an ultraviolet spectrograph showing the steady-state photolysis of 3',5'-dimethoxybenzoin ethyl carbonate from 0 to 150 seconds.
- a 53.5 microM solution of the benzoin derivative in acetonitrile was irradiated with an Oriel 6601 1 Hg vapor lamp using UG 11 and WG320 filters. These results demonstrated the efficiency of the photoconversion and release of the desired fragrance.
- FIG. 3 is an ultraviolet spectrograph showing the steady-state photolysis of
- This invention provides photoresponsive fragrance compositions and methods of use thereof for treating textiles, skin and/or hair of mammals (especially humans or companion animals such as dogs, cats, hamsters, gerbils, etc.) and other materials to impart a fragrance thereto.
- the photoresponsive fragrance compositions of the invention comprise a photoresponsive fragrance agent and a carrier for administration.
- Photoresponsive fragrance agents are capable of undergoing intramolecular photorearrangements to release volatile fragrance.
- These photolabile compounds can be used in textile washing compositions to provide at least one element whose volatile fragrance increases with the amount of light present.
- the photoresponsive fragrance agents can be utilized in body lotions, soaps and shampoos to provide at least one element whose volatile fragrance increases with the amount of light present.
- the photoresponsive fragrance agents can be used alone or in combination with known fragrance agents. Many photolabile compounds are available. Compounds having photolytic properties, including benzoin esters of carboxylates and phosphates (Corrie et ai, 1992, J. Chem. Soc. Perkin. Trans.
- FIG. 2 shows steady-state photolysis results for 3',5'- dimethoxybenzoin ethyl carbonate.
- FIG. 3 shows steady-state photolysis results for O-acetyl-3'-carbamylmethoxybenzoin.
- compositions comprise a first nonvolatile fragrance agent that undergoes intramolecular photorearrangement, initiated by ultraviolet radiation, preferably between about 250 and about 400 n , releasing a volatile fragrance agent.
- photorearrangement rates and therefore release of fragrance are adjusted by including additives that compete for light.
- fragrance compositions comprise photoresponsive fragrance agents and a carrier for topical administration, thereby aiding in the application of appropriate amounts of fragrance agent to the skin, hair or textiles.
- fragrance compositions are preferably nontoxic and nonirritating to the skin tissue.
- textiles applications preferred embodiments can be applied during routine washing.
- Preferred topical compositions may be in the form of creams, gels, lotions, oils, soaps, shampoos or other solutions comprising as the active agents prephotolysis compounds (Formula 3), post-photolysis compounds (Formula 4), or a combination of the two.
- the compositions are preferably formulated using homogeneous solutions, such as anhydrous solvents, or heterogeneous mixtures, such as emulsions.
- Topical carriers and general methods of formulation and manufacture of sunscreen such compositions are known in the art. See, for example, U.S. Pat. Nos. 4,522,807 and 4,822,600, both of which are expressly incorporated herein by reference.
- suitable topical carriers are, but are not limited to, water, lower monoalcohols as well as their mixtures, or aqueous alcoholic or oil/alcohol solutions, the preferred alcohols including ethanol, isopropyl alcohol, propylene glycol, glycerol, and sorbitol, and the preferred aqueous alcoholic mixtures being mixtures of water and ethyl alcohol.
- a carrier element to aid in distribution of the photoresponsive fragrance agent onto the skin or hair some embodiments may include additives to improve the cosmetic properties of the fragrance composition.
- compositions of this invention include but are not limited to thickeners, softeners, superfatting agents, waterproofing agents, emollients, wetting agents, and surface-active agents, as well as preservatives, anti-foam agents, fragrance, or any other compatible ingredient usually employed for cosmetics. Certain of these additives and components are also useful in embodiments provided for imparting scent to textiles.
- Film-forming agents and cosmetic resins are also useful in the practice of the present invention, including for example polyvinylpyrrolidone; vinylpyrrolidone/vinyl acetate copolymers, wherein monomers ratios range from about 70:30 to about 30:70; vinyl acetone/unsaturated carboxylic acid copolymers such as a copolymer containing 90% of vinyl acetate and 10% of crotonic acid, terpolymers of methyl methacrylate/stearyl methacrylate/dimethylaminoethyl methacrylate, completely quaternised with dimethyl sulfate, wherein useful monomers are advantageously included in monomer ratios of about 20:23:57, and a terpolymer of vinyl acetate/allyl stearate/allyloxyacetic acid, especially in the ratio of 80: 15:5, maleic anhydride/methyl vinyl ether copolymers such as those commercially referred to as "Gantrex AN" as well as
- photoresponsive fragrance compositions may comprise individual photoresponsive fragrance agents, combinations of two or more photoresponsive fragrance agents of the invention, or combinations of one or more photoresponsive fragrance agents with one or more known fragrance agents.
- the photoresponsive fragrance agents of this invention may be combined with one or more known fragrance agents.
- Preferable known fragrance agents include but are not limited to: Angelica root oil, Anisylidene acetone (4-(4- methoxphenyl)-3-buten-2-one), Asarone ((E)-and(Z)-2,4,5-Trimethoxypropen- 1-yl benzene), Benzylidene acetone (4-Phenyl-3-buten-2-one),Bergamot oil expressed, Birch wood pyrolysate, Bitter Orange Peel Oil Expressed, Butyl- dihydrocinnamaldehyde (Bourgeonal), Butylphenol, Cade oil, Carvone oxide, Cassia oil, Cinnamic alcohol, Cinnamic aldehyde, Cinnamic aldehyde - Methyl anthranilate Schiff base, Cinnamon bark oil, Ceylon, Cinnamyl Nitrile, Citral (Lemarome), Citrus oils
- Trimethylcyclohexenyl/cyclohexadienyl)-2-buten-l-ones Rose ketones
- Verbena absolute Verbena oil
- fragrance agents of the invention such as the benzoin derivatives of Formula 3 should be stored in a dark container to prevent premature photo-rearrangement.
- such compositions containing benzoin derivatives should be stored in a dark, preferably black, container that significantly limits exposure of the composition to light.
- benzoin compounds are sensitive to light. Therefore it is helpful to have a stable form of the compound for storage purposes.
- Benzoin compounds are preferably protected from light by storage as their dithiane derivatives (Formula 2).
- the dithiane protecting group can be removed by contact with mercuric perchlorate, or via other methods known to those skilled in the art. Removal of the dithiane protecting group gives the benzoin compound (Fo ⁇ nula 3).
- the benzoin compound is converted to the benzofuran compound (Fo ⁇ nula 4) by exposure to light.
- the present invention provides novel photolabile precursor compounds as generally depicted in Fo ⁇ nula 2:
- is hydroxy, carbonate, substituted ester (— OC(O)R), a phosphorus-containing group, a sulfur-containing group, a fluorescent label, or a fragrance molecule or a molecule that imparts a fragrance.
- R 2 , R 3 , R , R 5 , R 6 , R 7 , R 8 , R , Rio, and Rn are each hydrogen, alkyl, aryl, alkoxy, substituted alkoxy, or halide. At least one of R 2 or R 6 is hydrogen. At least one of R 2 , R 3 , R4, R 5 and R 6 is hydroxy or substituted alkoxy.
- the present invention provides the co ⁇ esponding photolabile benzoin compounds, as generically depicted below in Formula 3 :
- R 2 , R3, R , R 5 , R 6 , R 7 , R 8 , Rq, Rio, and Rn are each hydrogen, alkyl, aryl (such as phenyl), alkoxy, substituted alkoxy, or halide. At least one of R 2 or R 6 is hydrogen. At least one of R 2 , R 3 , R4, R 5 and R 6 is hydroxy or substituted alkoxy.
- the generic compound depicted in Formula 3 is generally made by removing the dithiane adduct to form the ketone. This is accomplished as is generally known in the art, using mercuric perchlorate or bis(trifluoroacetoxy)- iodobenzene; see for example Greene et al. (1991, PROTECTIVR GROUPS IN ORGANIC SYNTHESIS, John Wiley and Sons, New York, pp. 203-205, hereby incorporated by reference). In this manner, the dithiane adduct serves as a protecting group of the photolabile benzoin, during subsequent manipulations or until photolysis is desired. At the appropriate time, the dithiane adduct is removed, and then photolysis is initiated as needed.
- the present invention includes the corresponding photorearranged benzofuran compounds as generally depicted in Formula 4:
- Isomeric compounds 4A and 4B of Formula 4 differ only in that the furan ring formation occurs at the R 6 and R 2 positions, respectively.
- R 2 is hydrogen and R 6 is not hydrogen
- 4B will be formed.
- R 6 is hydrogen and R 2 is not hydrogen
- 4A will be formed.
- both R 2 and R 6 are hydrogen
- a mixture of 4A and 4B will be fo ⁇ ned.
- 4 A and 4B will be identical compounds unless R 3 and R 5 in the benzoin precursor are different (see FIG. 1, compounds 8 and 9).
- R 2 , R3, R , R5, Rf voyage R7, R 8 , RQ, R IO a Rn are each hydrogen, alkyl, aryl, alkoxy, substituted alkoxy, or halide. At least one of R 2 , R 3 , R ⁇ R 5 and R 6 is hydroxy or substituted alkoxy.
- the furan products are formed from the substituted benzoins after exposure to light.
- Formula 1 depicts the furan formed by attack at the R 2 (4B) or R 6 (4A) positions, one of which are necessarily hydrogen.
- carbonate herein is meant -OC(O)OR ⁇ 2 group, where R
- substituted ester herein is meant a --OC(O) R [ 2 group, where R
- may be a carbamate of the fo ⁇ nula — OC(O)NR'R", where R' and R" may be the same or different and include hydrogen, alkyl, and aryl.
- R' is a substituted ester
- R ⁇ 2 is fragrance or molecule that imparts a fragrance.
- alkyl or “alkyl group” or grammatical equivalents herein is meant a straight or branched chain alkyl group, with straight chain alkyl groups being preferred. If branched, it may be branched at one or more positions, and unless specified, at any position. Also included within the definition of an alkyl group are cycloalkyl groups such as C5 and C6 rings. In some cases, two R groups may be part of the same ring structure, that is, they may be linked to form a cyclic structure, including heterocyclic structures. For example, R 3 and R and/or R 9 and Rio may be joined to form a methylene dioxy, five-membered ring (as described in Pillai, Synthesis, January 1980, pp.
- R groups may form an aryl group; for example, R and R ) 0 may form a benzyl group, such that a naphthyl group is formed (as described in U.S. Pat. No. 4,469,774, incorporated by reference).
- Alkyl groups as disclosed as substituents of the formulae of this invention may range in size from about 1 to 100 carbon atoms (Ci-Cioo), with a preferred embodiment utilizing from about 1 to about 20 carbon atoms (C1-C20), with about Ci through about C 8 being most preferred.
- the alkyl group may be larger, particularly if it is a straight chain alkyl.
- Particularly preferred compounds have methyl groups in the R 2 to R 6 positions.
- aryl or "aryl group” herein is meant aromatic rings including phenyl, benzyl, and naphthyl, as well as heterocyclic aromatic rings such as pyridine, furan, thiophene, pyrrole, indole and purine, and other heterocyclic aromatic rings containing carbon, nitrogen, oxygen, sulfur, or phosphorus.
- alkyl and aryl groups as disclosed as substituents of the formulae of this invention may be substituted; for example, a phenyl group may be a substituted phenyl group.
- Suitable substitution groups include, but are not limited to, alkyl groups; alkoxy groups; OCF 3 ; CF 3 ; aryl groups, such as phenyl; halogens such as chlorine, bromine and fluorine; amines; carboxylic acids; amides, amines, and nitro groups.
- amine herein is meant an -N ⁇ R group.
- R 13 and R ⁇ 4 may be the same or different, and may be hydrogen, alkyl or aryl (such as phenyl or naphthyl.)
- a preferred — NR, 3 R ⁇ 4 group is — N ⁇ 2 .
- a secondary amine is -NR ⁇ 3 R ⁇ 4 where either R, 3 or R, 4 , but not both, is hydrogen.
- a tertiary amine is -N ⁇ 3 R ⁇ 4 where neither R
- hydroxy herein is meant an —OH group.
- alkoxy herein is meant an -OR15 group, where R ] 5 is an alkyl group as defined above. Included within the definition of alkoxy is methoxy ( ⁇ OCH 3 ).
- substituted alkoxy herein is meant a -OXC(R ⁇ 6 )( R ⁇ )( R 18 ) group, wherein X is either not present (i.e. substituted methoxy) or a straight or branched chain alkyl group.
- X is a straight chain alkyl group, such that the substituted alkoxy group has the formula — O(CH2) n C(R] 6 )( R1 7 X R ⁇ 8 ), wherein n is 0 (substituted methoxy, which is preferred) or greater, preferably from 0 to 100, with 0 to 20 being especially prefe ⁇ ed.
- 7 and R ⁇ 8 are selected from the group consisting of hydrogen, amino, carboxy, phosphorus- containing groups, sulfur-containing groups, protecting groups such as silyl groups and others known in the art, a fragrance or molecule that imparts a fragrance.
- R ⁇ 6 and R i 7 arc hydrogen, such that there is a single substitution group.
- phosphorus-containing group herein is meant a functional group containing at least one phosphorus atom.
- the phosphorus-containing group is chemically or functionally active, such that further groups may be attached to the compound using the phosphate.
- the phosphorus-containing group is a phosphate ( ⁇ OP(O)(OH) 2 ) group, a pyrophosphate group, or a substituted phosphate group of the formula — OP(O)(OR ⁇ 9 )(OR2o)-
- R ) 9 and R20 include, but are not limited to, hydrogen, alkyl, or aryl (such as phenyl.)
- one of R 19 and R 2 o is hydrogen.
- phosphines — RPR ⁇ 9 R2o
- phosphonates — R ⁇ P(O)(OR 19 )(OR 20 )
- sulfur-containing group herein is meant a functional group containing at least one sulfur atom.
- the sulfur-containing group is preferably chemically or functionally active, such that further groups such as a fragrance or molecule that imparts a fragrance may be attached using the sulfur atom.
- thiols (-RSH), sulfides ( ⁇ RSR ⁇ 9 ), sulfoxides (-RS(O)R, 9 ), sulfones (- -RS(O) 2 R )9 ), sulfates (-ROS(O) 2 OR ⁇ 9 ), and sulfonic acids (-RS(O) 2 OH) are all included within the definition of sulfur-containing groups.
- halide herein is meant a halide atom. Preferred halides include chlorine, fluorine, bromine, and iodine, with chlorine and fluorine being particularly preferred, and chlorine being most preferred.
- R groups for Formulas 2, 3, and 4 are as follows:
- Ri is a fragrance or molecule that imparts a fragrance.
- Ri is attached via a carboxyl, phosphate, sulfate, thiol, or amine (— NRi). More preferably, R ⁇ is — OC(O)ORi 2 -, where R12 is a fragrance or molecule that imparts a fragrance.
- R 2 can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy.
- R 2 is hydrogen.
- R 3 can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy.
- R 3 is alkoxy, substituted alkoxy, or — if R is alkoxy or substituted alkoxy - R 3 is hydrogen. More preferably R 3 is — OMe.
- R can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy.
- R is hydrogen.
- R 5 can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy.
- R 5 is alkoxy or substituted alkoxy. More preferably R 5 is — OMe.
- R 6 can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy. Preferably, R 6 is hydrogen.
- R 7 can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy. Preferably, R 7 is hydrogen.
- R 8 can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy. Preferably, R 8 is hydrogen.
- R 9 can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy.
- R is hydrogen.
- R 10 can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy.
- Rio is hydrogen.
- Rn can be hydrogen, alkyl, aryl (such as phenyl), alkoxy, or substituted alkoxy.
- Ri i is hydrogen.
- At least one of R 2 and R 6 in Formulas 2 and/or 3 are hydrogen. This is required due to the photolysis mechanism depicted in Equation 1 , wherein a furan ring is formed by attack at either the R 2 or R 6 position. Accordingly, at least R 2 or R 6 must be hydrogen; i.e. either R 2 or R 6 must not contain a substitution group. In a prefe ⁇ ed embodiment, both R and R 6 in Formulas 2 and 3 are hydrogen.
- the dithiane-benzoin adducts of Formula 2, and the substituted benzoin compounds of Formula 3 are generally synthesized using the scheme depicted in FIG. 1. Generally, the synthesis comprises contacting the reactants depicted below in Formula 5 (for the formation of Formula 2 compounds):
- the hydroxy group of hydroxybenzaldehyde is protected, using a known protecting group such as a tert-butyldimethylsiloxy group.
- a dithiane adduct can be added, using the Corey-Seebach dithiane addition, to form a dithiane-benzoin compound (FIG. 1, Compound 2).
- the hydroxyl-protecting group is removed, and a chemically-active group is added.
- a substituted alkoxy can be added.
- the substituted alkoxy can be altered to include a chemically reactive group such as a carboxy group (FIG. 1 , Compound 4), or a carbamate (FIG.
- a fragrance molecule or molecule that imparts a fragrance is to be added to the benzyl or benzoyl ring, or at the Ri position, it may be done in a variety of ways depending on the fragrance molecule.
- a fragrance is to be attached to the core compound, it is done in two stages.
- the core compound is made containing two chemically active groups; one at the R
- the core compound is made with amines, carboxy groups, phosphate groups, or sulfhydryl groups.
- the fragrance is made, which also contains a functional group that can be used for attachment.
- other reactive groups of the fragrance agent are protected to prevent them from reacting with the functional group of the core compound.
- amino groups may need to be protected to prevent this group from reacting, although in some embodiments the attachment is done via a functional group of an amino group.
- Protecting groups and techniques are well known in the art. Once the core compound and the fragrance molecule or molecule that imparts a fragrance is made, they can be attached by reacting with the functional groups.
- THF was refluxed over sodium and benzophenone, and was distilled prior to use.
- 3-hydroxybenzaldehyde (Fluka) was dissolved in diethyl ether, filtered through a plug of neutral alumina, and evaporated. All other starting materials were from Aldrich and used without further purification.
- the 1.0 M tetrabutylammonium fluoride (TBAF) solution in THF was dried over 3A molecular sieves. IR spectra were acquired from a thin film of the sample on a polyethylene substrate.
- TBAF tetrabutylammonium fluoride
- the reaction mixture was brought to room temperature and stirred 5 hours. The mixture was filtered and the THF removed under reduced pressure. The oil was repeatedly dissolved in 200 mL portions of THF and evaporated until no more triethylamine hydrochloride precipitated. The oil was then dissolved in 150 mL diethyl ether, filtered through a plug of neutral alumina and activated charcoal to remove the salt and the yellow color, and evaporated.
- the phenolic hydroxyl was conveniently and selectively alkylated by treatment with TBAF in the presence of methyl bromoacetate, to yield the methyl ester.
- the solution was treated with 1 M TBAF in THF (68.25 mL, 68.25 mmol) dropwise.
- the sample was monitored with a 75-W xenon arc lamp filtered with a Schott glass UG11 filter placed between the arc lamp and the cuvette.
- the probe light exiting the cuvette was then wavelength selected by a SA 1690B double monochromator set at 310 nm, and was detected with a photomultiplier.
- the signal was amplified with a Keithly 427 current amplifier, and digitized by a Tektronix R 7 10 200 MHz transient digitizer interfaced to a microcomputer. Samples were acquired at a 10 Hz photolysis pulse repetition rate, and scans represented the average of 20 pulses.
- Dithiane-protected 3',5'-dimethoxybenzoin A solution of 2-phenyl-l,3-dithiane (390 mg, 2 mM) in 20 mL of dry THF was cooled to 0° C. and 1.01 equivalents of nBuLi was added dropwise via syringe with rapid stirring. This solution was allowed to stir for 30 minutes and then 1.0 equivalents of 3,5-dimethoxybenzaldehyde dissolved in 1 ml dry THF was added dropwise. The solution was allowed to warm to room temperature and stir for 1 hr.
- the reaction was quenched by the addition of aqueous NH 4 C1, THF solvent is removed in vacuo and the resultant slurry extracted with dichloromethane.
- the dichloromethane layer was washed with 2. times.20 mL of water and solvent removed in vacuo to yield a pale yellow oil.
- the obtained oils typically crystallize upon standing and are greater than 99% pure based on GC/MS. H NMR and TLC. As such, they can be used for further synthetic transfo ⁇ nations without purification.
- Example 8 The procedure in Example 8 was followed except that 1.0 equivalent of 4- methoxybenzaldehyde was used in place of the 3,5-dimethoxybenzaldehyde.
- Example 8 The procedure in Example 8 was followed except that 1.0 equivalent of 2- ethoxybenzaldehyde was used in place of the 3,5-dimethoxybenzaldehyde.
- Example 8 The procedure in Example 8 was followed except that 1.0 equivalent of 2- methylbenzaldehyde was used in place of the 3,5-dimethoxybenzaldehyde.
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Abstract
Description
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Priority Applications (7)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE602004029453T DE602004029453D1 (en) | 2003-03-21 | 2004-03-22 | ON LIGHT RESPONSIVE FRAGRANCES |
| AT04757952T ATE483447T1 (en) | 2003-03-21 | 2004-03-22 | LIGHT RESPONSIVE FRAGRANCES |
| AU2004224323A AU2004224323B2 (en) | 2003-03-21 | 2004-03-22 | Photoresponsive fragrances |
| EP04757952A EP1617812B1 (en) | 2003-03-21 | 2004-03-22 | Photoresponsive fragrances |
| CA2519943A CA2519943C (en) | 2003-03-21 | 2004-03-22 | Photoresponsive fragrances |
| JP2006501241A JP2006520828A (en) | 2003-03-21 | 2004-03-22 | Light-responsive fragrance |
| AU2008216991A AU2008216991A1 (en) | 2003-03-21 | 2008-09-12 | Photoresponsive fragrances |
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US45687703P | 2003-03-21 | 2003-03-21 | |
| US60/456,877 | 2003-03-21 | ||
| US45723203P | 2003-03-25 | 2003-03-25 | |
| US60/457,232 | 2003-03-25 |
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| WO2004084853A2 true WO2004084853A2 (en) | 2004-10-07 |
| WO2004084853A3 WO2004084853A3 (en) | 2005-02-24 |
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| PCT/US2004/008610 Ceased WO2004084853A2 (en) | 2003-03-21 | 2004-03-22 | Photoresponsive fragrances |
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|---|---|
| US (1) | US20050020459A1 (en) |
| EP (1) | EP1617812B1 (en) |
| JP (1) | JP2006520828A (en) |
| AT (1) | ATE483447T1 (en) |
| AU (2) | AU2004224323B2 (en) |
| CA (1) | CA2519943C (en) |
| DE (1) | DE602004029453D1 (en) |
| WO (1) | WO2004084853A2 (en) |
Cited By (4)
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| JP2009514660A (en) * | 2005-10-28 | 2009-04-09 | ソーラーブレ, インコーポレイテッド | Photo-responsive microencapsulated materials, compositions and methods for their use |
| WO2011067707A2 (en) | 2009-12-02 | 2011-06-09 | L'oreal | A cosmetic treatment method |
| WO2018114073A1 (en) * | 2016-12-21 | 2018-06-28 | Symrise Ag | Fragrance mixture |
| EP3968784A1 (en) * | 2019-05-17 | 2022-03-23 | Symrise AG | Fragrance or flavouring agent mixture |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP5311703B2 (en) * | 2004-10-12 | 2013-10-09 | 株式会社 資生堂 | Cherry blossom-like fragrance composition |
| EP3980477B1 (en) | 2019-06-04 | 2023-01-04 | Unilever IP Holdings B.V. | A polymer and a cosmetic composition comprising the polymer |
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| US5011970A (en) * | 1978-03-20 | 1991-04-30 | Pfw(Nederland)B.V. | Nitriles useful in perfume |
| EP0085334A3 (en) * | 1982-01-25 | 1985-08-07 | PLOUGH, INC. (a Delaware corporation) | Substantive topical compositions |
| US4469774A (en) * | 1983-03-28 | 1984-09-04 | E. I. Du Pont De Nemours And Company | Positive-working photosensitive benzoin esters |
| US4822600A (en) * | 1987-05-27 | 1989-04-18 | Neutrogena Corporation | Infrared blocker |
| US5767288A (en) * | 1996-01-05 | 1998-06-16 | California Institute Of Technology | Photolabile linkers and probes |
| GB9617918D0 (en) * | 1996-08-28 | 1996-10-09 | British Steel Plc | Railway sleepers |
| DE19635655A1 (en) * | 1996-09-03 | 1998-03-05 | Haarmann & Reimer Gmbh | Use of substituted 2-acetylbenzofurans as fragrances |
| ZA985396B (en) * | 1997-06-21 | 1999-01-25 | Givaudan Roure Int | Fragrance precursor compounds |
| US6022529A (en) * | 1997-08-06 | 2000-02-08 | California Institute Of Technology | Photoresponsive sunscreen compositions |
| EP0952142B1 (en) * | 1998-04-20 | 2006-10-18 | Givaudan SA | Compounds with protected hydroxy groups |
| SG104266A1 (en) * | 2000-04-10 | 2004-06-21 | Givaudan Sa | Fragrance precursors |
| US6610646B2 (en) * | 2000-06-01 | 2003-08-26 | The Procter & Gamble Company | Enhanced duration fragrance delivery system having a non-distorted initial fragrance impression |
| US20020094938A1 (en) * | 2000-11-08 | 2002-07-18 | The Procter & Gamble Company | Photo-labile pro-fragrance conjugates |
| US6956013B2 (en) * | 2001-04-10 | 2005-10-18 | The Procter & Gamble Company | Photo-activated pro-fragrances |
| US20030004072A1 (en) * | 2001-04-10 | 2003-01-02 | The Procter & Gamble Company | Photo-activated pro-fragrances |
| FR2833259B1 (en) * | 2001-12-10 | 2004-08-27 | Oreal | PROCESS FOR THE PREPARATION OF 2-ARYLBENZOFURANES, INTERMEDIATE COMPOUNDS, 2-ARYLBENZOFURANES AND COMPOSITIONS COMPRISING THE SAME |
-
2004
- 2004-03-22 AT AT04757952T patent/ATE483447T1/en not_active IP Right Cessation
- 2004-03-22 AU AU2004224323A patent/AU2004224323B2/en not_active Ceased
- 2004-03-22 WO PCT/US2004/008610 patent/WO2004084853A2/en not_active Ceased
- 2004-03-22 EP EP04757952A patent/EP1617812B1/en not_active Expired - Lifetime
- 2004-03-22 US US10/805,898 patent/US20050020459A1/en not_active Abandoned
- 2004-03-22 CA CA2519943A patent/CA2519943C/en not_active Expired - Fee Related
- 2004-03-22 JP JP2006501241A patent/JP2006520828A/en active Pending
- 2004-03-22 DE DE602004029453T patent/DE602004029453D1/en not_active Expired - Lifetime
-
2008
- 2008-09-12 AU AU2008216991A patent/AU2008216991A1/en not_active Abandoned
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2009514660A (en) * | 2005-10-28 | 2009-04-09 | ソーラーブレ, インコーポレイテッド | Photo-responsive microencapsulated materials, compositions and methods for their use |
| WO2011067707A2 (en) | 2009-12-02 | 2011-06-09 | L'oreal | A cosmetic treatment method |
| WO2018114073A1 (en) * | 2016-12-21 | 2018-06-28 | Symrise Ag | Fragrance mixture |
| CN110099990A (en) * | 2016-12-21 | 2019-08-06 | 西姆莱斯股份公司 | spice blend |
| US10988434B2 (en) | 2016-12-21 | 2021-04-27 | Symrise Ag | Fragrance mixture |
| EP3968784A1 (en) * | 2019-05-17 | 2022-03-23 | Symrise AG | Fragrance or flavouring agent mixture |
Also Published As
| Publication number | Publication date |
|---|---|
| CA2519943C (en) | 2011-01-18 |
| EP1617812B1 (en) | 2010-10-06 |
| US20050020459A1 (en) | 2005-01-27 |
| JP2006520828A (en) | 2006-09-14 |
| CA2519943A1 (en) | 2004-10-07 |
| ATE483447T1 (en) | 2010-10-15 |
| AU2004224323A1 (en) | 2004-10-07 |
| AU2004224323B2 (en) | 2008-06-12 |
| EP1617812A2 (en) | 2006-01-25 |
| AU2008216991A1 (en) | 2008-10-09 |
| WO2004084853A3 (en) | 2005-02-24 |
| DE602004029453D1 (en) | 2010-11-18 |
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