A61K8/8188

PERSONAL CARE COMPOSITIONS CONTAINING COMPLEXING POLYELECTROLYTES
20190091129 · 2019-03-28 ·

Compositions of the invention contain, in a cosmetically acceptable aqueous medium, a) a cationic polyelectrolyte, b) at least one surfactant; and (c) from about 0.01 to about 1.2 weight percent of an anionic polyelectrolyte, where the weight ratio of the anionic polyelectrolyte to the cationic polyelectrolyte is from about 0.05 to about 1.2, and where the composition exhibits a viscosity change that is below a minimum significant-change-threshold (??min) and exhibits no measurable yield stress or increase in yield stress value when compared to a substantially identical composition that does not contain from about 0.01 to about 1.2 weight percent of the anionic polyelectrolyte, at a weight ratio of anionic polyelectrolyte to cationic polyelectrolyte of from about 0.05 to about 1.2.

Low viscosity emulsion cosmetic composition
12036304 · 2024-07-16 · ·

The salt-stable cosmetic composition is in the form of a low viscosity emulsion (oil in water) and is especially stable at high electrolyte contents and includes a salt-stable polymeric system comprising a polymer blend such that the salt-stable cosmetic composition resists phase separation, pilling and gellifying at high salt content, conferring a flowable, lightweight lotion-type texture.

COMPOUND TO TREAT SJOGREN'S SYNDROME
20190060462 · 2019-02-28 ·

The present invention includes compositions and methods for providing a therapeutically acceptable dose of an active pharmaceutical agent for once a day delivery of the active pharmaceutical compound in an amount effective to treat at least one of: Sjogren's syndrome, Xerostomia, dry mouth, hypo-salivation, or dental carries due to reduced or compromised salivation, wherein both the peak and trough times in the blood level at 8 hours is greater than 25% of the peak value in the blood level concentration.

WATER-IN-OIL POLYMERIC EMULSION COMPOSITION AND METHOD FOR MANUFACTURING WATER-IN-OIL POLYMERIC EMULSION COMPOSITION

The present invention provides a water-in-oil polymeric emulsion composition, including: (a) 25 to 65 wt % of a cross-linked polymer, (b) 15 to 40 wt % of an oil; (c) 1 to 12 wt % of a surfactant; and (d) 1 to 40 wt % of water, wherein (a) the cross-linked polymer is polymerized by using 35 to 85 mol % of a 2-arylamido-2-methylpropane-sulfonic acid totally or partially salified by an alkali metal or ammonium, 15 to 65 mol % of acryloyl morpholine, and 0.005 to 1 mol % of a polyethylenic monomer used as a cross-linking agent.

WATER-IN-OIL POLYMERIC EMULSION COMPOSITION AND METHOD FOR MANUFACTURING WATER-IN-OIL POLYMERIC EMULSION COMPOSITION

The present invention provides a water-in-oil polymeric emulsion composition, including: (a) 25 to 65 wt % of a cross-linked polymer; (b) 15 to 40 wt % of an oil; (c) 1 to 12 wt % of a surfactant; and (d) 1 to 40 wt % of water, wherein (a) the cross-linked polymer is polymerized by using 35 to 85 mol % of a 2-acrylamido-2-methylpropane-sulfonic acid totally or partially salified by an alkali metal or ammonium, 10 to 50 mol % of acryloyl morpholine, 2 to 25 mol % of an acrylic acid totally or partially salified by an alkali metal or ammonium, and 0.005 to 1 mol % of a polyethylenic monomer used as a cross-linking agent.

Personal care compositions containing complexing polyelectrolytes

Compositions of the invention contain, in a cosmetically acceptable aqueous medium, a) a cationic polyelectrolyte, b) at least one surfactant; and (c) from about 0.01 to about 1.2 weight percent of an anionic polyelectrolyte, where the weight ratio of the anionic polyelectrolyte to the cationic polyelectrolyte is from about 0.05 to about 1.2, and where the composition exhibits a viscosity change that is below a minimum significant-change-threshold (??min) and exhibits no measurable yield stress or increase in yield stress value when compared to a substantially identical composition that does not contain from about 0.01 to about 1.2 weight percent of the anionic polyelectrolyte, at a weight ratio of anionic polyelectrolyte to cationic polyelectrolyte of from about 0.05 to about 1.2.

Methods of increasing the volume of a fiber, such as mammalian hair, and/or altering the structure of a fiber with a chitosan polyelectrolyte complex

The invention includes methods of increasing the volume of a fiber by applying to the fiber a chitosan cross linked with or complexed to an aldehyde-bearing compound, and a polyanion. The fiber is then dried forming a chitosan polyelectrolyte complex on the hair that increases the dimension of the fiber. The fiber may be wet prior to application and may be a mammalian hair. Also included are method of semi-permanently altering the structure of hair that includes topically applying to hair a chitosan cross linked with or complexed to an aldehyde-bearing compound, and a polyanion. Also contemplated within the scope of the invention is a hair care polyelectrolyte complex that includes a chitosan cross linked with or complexed to an aldehyde-bearing compound, and a polyanion. Systems for hair treatment are also encompassed within the scope of the invention and include at least two formulations: a first formulation comprising a chitosan cross linked with or complexed to an aldehyde-bearing compound, and a second formulation comprising a polyanion. Such systems may be included in hair care kits.

Gel stabilized O/W emulsion with alpha-arbutin and azelaic acid dispersion

A skin care composition includes a gel stabilized emulsion comprising a combination of actives that include azelaic acid, at least one hydroquinone derivative, and niacinamide, at least one anionic polymer thickener, and at least one fatty compound. The provides a hydrating formula that is comfortable for the wearer and is oil free, without appearing shiny or greasy on the skin, and includes actives to treat the appearance of dark spots and inflammatory lesions, including acne, for all skin types. The skin care composition is free or essentially free of monoalcohols, silicones, silicone oils, and oils other than fatty compounds that comprise emollient esters, hydrogenated polyisobutene, and squalane.

AMPHIPHILIC THICKENER FOR PERSONAL CARE
20250017843 · 2025-01-16 · ·

The present invention relates to a thickener that may be used in cosmetics and the like, and more specifically, to a thickener that may provide moisture with less stickiness.

In the present invention, a thickener in the form of homogeneous fine particles whose surface is coated with a silicone polymer may be prepared using phase inversion temperature (PIT) polymerization while allowing the polymerization reaction to proceed in a uniform reverse phase emulsion with a small particle size. In addition, the thickener may be prepared using precipitation polymerization.

In addition, the spherical particle-shaped thickener prepared by the present invention has the advantage of high moisture retention due to the coated silicone polymer, which is the shell, while maintaining the shape of the particle even when swelling in moisture, and the spherical particles, whose surface is coated with the silicone polymer, have high dispersibility in an oil phase, which helps to maintain makeup, and the spherical polymer has the effect of reducing stickiness and staining.

COMPOSITION COMPRISING CONDITIONING AND/OR STYLING POLYMER

A personal care conditioning and/or styling composition for a keratin substrate comprising: (i) about 50 wt. % to 95 wt. % of at least one cationic or pseudo-cationic monomer selected from the group consisting of acrylamidopropyl trimethylammonium chloride (APTAC) and/or Vinylpyrrolidone (VP); (ii) about \ wt. % to 30 wt. % of at least one anionic monomer selected from the group consisting of (a) acrylic acid (AA), (b) acrylamido methylpropyl sulfonate (AMPS), and/or (c) sodium methyl allyl sulfonate (SMAS); and (iii) about 0.1 wt. % to 20 wt. % of at least one hydrophobic monomer selected from the group consisting of (a) polyoxyethylene (PEG)-18-behenylether-methacrylate (BEM) (b) Lauryl-ethoxylated-methacrylate (LEM), (c) stearyl acrylate (SA), (d) Stream-10-allyl-ether, (e) Vinylcaprolactam (V-cap), and/or (f) Hydroxyethyl-pyrrolidone-methacrylate (M06). Also described is a process of preparing said polymer, and its method of use.