Patent classifications
A61K8/604
SUNSCREEN COSMETIC
An objective of the invention is to provide a sunscreen cosmetic that increases the ultraviolet protection power of ultraviolet protectants, thereby achieving high ultraviolet protection power using only a small amount of ultraviolet protectants, while simultaneously providing an excellent texture and placing little strain on the skin. The sunscreen cosmetic according to the present invention contains the following components (A) to (C): (A) an ultraviolet protectant; (B) silica having a particle size of 0.3 to 1 .Math.m; and (C) a powder having a particle size of 1 to 30 .Math.m; wherein the (C) powder is of one or more types selected from the group consisting of silica, aluminum starch octenyl succinate, cellulose or derivatives thereof, waxes, mica, sericite and biodegradable resins.
RESHAPING COMPOSITION FOR KERATIN FIBERS
Reshaping compositions, methods or processes, and kits-of-part reshape keratin fibers. The reshaping composition is a non-reducing, non-oxidizing composition for keratin fibers having a pH in the range of 7 to 12, and comprising a) one or more organic alkalizing agents having a pK.sub.a of less than 9.0, b) one or more lipophilic compounds being liquid at 25° C. and atmospheric pressure, at a total concentration in the range of 10% to 80% by weight, calculated to a total weight of the composition, c) one or more surfactants, and d) one or more thickening agents.
Use of propoxylated surfactant or polymer in foaming applications to control viscoelasticity in highly active liquid formulations
Antimicrobial or non-antimicrobial compositions, sanitizing compositions and other compositions combining use of a propoxylated EO/PO block copolymer surfactant and/or propoxylated polymer in combination with at least one additional anionic and/or nonionic surfactant to provide concentrated compositions having a desired viscoelasticity at an active level of at least 18% are disclosed. Non-antimicrobial applications combining use of a propoxylated surfactant and/or propoxylated polymer in combination with at least one additional anionic and/or nonionic surfactant to provide compositions having a desired viscoelasticity are also disclosed. Methods of using concentrated and use compositions having desired foaming enhancement and stabilization are also disclosed.
HAIR CLEANSING CONDITIONER
Hair cleansing conditioners which include—in relation to the weight of the total composition— a) from about 0.0001 to about 10 wt. % of a cationic 3-acrylamidopropyl trimethylammonium salt homopolymer, and b) from about 0.01 to about 20 wt. % of at least one non-ionic surfactant and/or at least one amphoteric surfactant
are exemplified by an excellent cleansing and conditioning effect. Hair treated with the hair cleansing conditioners has volume and fullness even after repeated use. There is no weighing-down of the hair (no build-up effect). In addition, treated hair has an improved feel and improved styling properties and improved combability. Such hair cleansing conditioners can also be easily rinsed out from the hair.
LOW VISCOUS COSMETIC COMPOSITION USING A NATURAL EMULSIFYING AGENT
The present invention relates to a low-viscosity cosmetic composition and methods using a natural emulsifying agent. More specifically, the present invention relates to a cosmetic composition using a naturally derived saccharide-based surfactant in place of a chemical surfactant and realizing a low-viscosity formulation to offer safety to the skin, feel good on the skin with fast absorption, give stability to the formulation and add luster to the skin in an effective manner.
AGENT FOR DYEING KERATINOUS MATERIAL, IN PARTICULAR HUMAN HAIR, CONTAINING AMINOSILICONES, PIGMENTS AND ALKYLPOLYGLYCOSIDES
An agent for dying (e.g. coloring) keratinous material, in particular human hair, is disclosed. The agent comprises (a1) at least one alkyl (poly)glycoside, (a2) at least one pigment, and (a3) at least one amino-functionalized silicone polymer. A process for dyeing keratinous material with the agent is also disclosed. The process comprises preparing an application mixture comprising, applying the application mixture to keratinous material for a time sufficient to expose the keratinous material to the agent, and then rinsing the application mixture from the keratinous material with water. A multicomponent packaging unit (kit-of-parts) for dyeing keratinous material with the agent is also disclosed.
Hygiene Product Pod and Methods of Using Same
Disclosed herein are hygiene product pods and a method of using the hygiene product pods. A hygiene product pod can include a water-soluble envelope and a hygiene product sealed in the water-soluble envelope. A hygiene product as described herein can comprise a non-aqueous carrier. A non-aqueous carrier as described herein can comprise a polyol solvent and a polyglyceryl fatty acid ester (PGEs) chassis.
Oral care product formulation
A three-part method of cleaning a user's teeth and/or gums is disclosed. First, a user applies a tonic of essential oils to the user's teeth and/or gums by either brushing, rubbing, rinsing and/or flossing with the tonic thereby destroying harmful bacteria. Second, the user brushes with a toothpaste having nano-hydroxyapatite being particles of 50 nanometers or smaller. The nano-hydroxyapatite is absorbed into the surface opening inside dentinal tubules of the teeth. Third, the user seeds their mouth with an oral probiotic having beneficial bacteria. The third step must come after both the first and second steps.
METHOD FOR THE COSMETIC TREATMENT OF KERATIN FIBRES COMPRISING A STAGE OF APPLICATION OF A RARE EARTH METAL COMPOSITION AND A STAGE OF APPLICATION OF A COMPOSITION COMPRISING SURFACTANTS
The invention relates to a method for the cosmetic treatment of keratin fibres, in particular human keratin fibres, such as the hair, comprising a stage of application of a composition comprising at least one metal compound, the metal of which belongs to the group of the rare earth metals, and then a stage of application of a shampoo comprising at least one surfactant.
SURFACTANT PREPARATION PROCESS
An enzymatic process for the preparation of C16 alkyl polyglycosides and/or C18 alkyl polyglycosides by reacting C16 alkyl glycoside and/or C18 alkyl glycoside with a glycosyl donor containing monosaccharide residues to form an alkyl polyglycoside intermediate which can be fractionated to form an alkyl polyglycoside product, wherein the mole-average degree of polymerization mean DP) of the glycoside chains is greater than or equal to 3.0 units and the molar concentration of alkyl triglycoside (DP3) is greater than alkyl monoglycoside (DPI). The C16/C18 alkyl polyglycoside product is particularly useful in health care formulations, especially in combination with and/or as a solubilizer for active pharmaceutical ingredients (APIs).