Patent classifications
A61K8/925
SELF-ASSEMBLED AMINO ACID SUPRAMOLECULAR POLYMER, PREPARATION THEREFOR, AND APPLICATION THEREOF
Provided are a self-assembled amino acid supramolecular polymer and a preparation method therefor. Further provided is an application of the self-assembled amino acid supramolecular polymer in the fields of daily chemical, agricultural, and pharmaceutical industries. The provided self-assembled amino acid supramolecular polymer has good performance, and has obvious effects in aspects such as bacteriostasis, pesticide removal, and odor elimination. The provided self-assembled amino acid supramolecular polymer is applicable to toothpastes, skin care compositions, laundry detergents, soaps, washing powders, detergents, masks, etc.
HAIR LIGHTENING COMPOSITIONS PROVIDING DAMAGE PROTECTION AND SENSORIAL BENEFITS AND METHODS OF USE
Hair treatment and hair lightening compositions, methods of making and use, and to kits comprising the compositions. The components of the hair treatment compositions may be included in hair lightening compositions and used to lighten and/or color hair. The hair treatment compositions include: (a) one or more polycarboxylic acids, and/or a salt thereof; (b) one or more amino acids, and/or a salt thereof; and (c) one or more antioxidant comprising an aromatic ring having two alcohol functional groups. The hair lightening compositions further include (d) one or more bleaching agents.
Composition for keratin fibers
The present invention relates to a composition comprising: (a) at least one botanical butter; (b) at least one alkaline agent comprising at least one primary amino group and at least three hydroxyl groups; (c) at least one wax; and (d) water. The composition according to the present invention does not produce NDELA, because it does not need to use TEA, but it can provide keratin fibers such as eyelashes with enhanced or improved cosmetic effects or properties, such as excellent volumizing effects (e.g., the thickness of keratin fibers is increased) and even application effects (e.g., the composition can be applied evenly onto keratin fibers to clean appearance of the keratin fibers).
Pasteurisation process for microbial cells and microbial oil
An improved pasteurisation protocol for pasteurising microbial cells is disclosed. The protocol has three stages, a first heating stage, a second plateau stage at which the cells are held at a (maximum and) constant temperature, and a third cooling stage. Both the heating and the cooling stages are rapid, with the temperature of the cells passing through 40 to 80° C. in no more than 30 minutes in the heating stage. The heating rate is at least 0.5° C./minute and during cooling is at least −0.5° C./minute. The plateau maximum temperature is from 70 to 85° C. By plotting the pasteurisation protocol on a time (t, minutes) versus temperature (T, ° C.) graph, one obtains a trapezium having an area less than 13,000° C. minute. Not only does this result in a smaller energy input (and so a reduction in costs), but a better quality (and less oxidised) oil results having a peroxide value (POV) of less than 1.5 and an anisidine value (AnV) of less than 1.0.
LOOSE WAX POWDER AND PROCESS FOR MANUFACTURING SUCH A POWDER
The present invention relates to a loose wax powder obtained from renewable materials, in which the particles have a particle size such that: the D90v is less than 20 microns the SPAN calculated by the formula (D90-D10)/D50 is less than 1.8 the volume percentage of particles with a diameter of at least 30 microns is less than 5%. The present invention also relates to a process for preparing such a powder.
Topical composition
A topical composition comprising at least one retinoid, alfalfa extract, and at least one carrier and uses thereof.
NOVEL SELF-ASSEMBLED AMINO ACID SUPRAMOLECULAR POLYMER, PREPARATION METHOD THEREFOR, AND APPLICATION THEREOF
Disclosed are a novel self-assembled amino acid supramolecular polymer, a preparation method therefor, and an application thereof. The self-assembled supramolecular polymer is N-lauroyl-L-alanyl-L-alanine or a salt thereof, and the salt thereof comprises sodium N-lauroyl-L-alanyl-L-alaninate and potassium N-lauroyl-L-alanyl-L-alaninate. The disclosed polymer is more effective at inhibiting bacteria and removing pesticides, and can be widely applied to the daily chemical, agricultural, and pharmaceutical industries. Further disclosed are three methods for preparing the compound. The methods produce products in high yields and are suitable for industrial production.
COMPOSITION FOR DYEING
The present invention relates to a composition for dyeing. The composition for dyeing according to the present invention forms a covalent bond without damaging skin, hair, nails, fibers, or leather by using a reaction promoting additive for promoting peptide bond formation in addition to a carbodiimide-based compound, thereby providing a desired semi-permanent dyeing effect.
METHOD FOR MAKING COMPOSITION FOR ENAMEL REGENERATION
A method for making a composition for enamel regeneration proposes to encapsulate soluble calcium and phosphate salts within corresponding internal water phases in respective water-in-oil-in-water emulsions stabilized by solid particles, and add them to a toothpaste, enamel restoring gel or mouth wash base. In this way, the soluble calcium and phosphate salts can be present stably in the toothpaste, enamel restoring gel or mouth wash over a long period of time. When the toothpaste, enamel restoring gel or mouth wash of the present disclosure is used in oral cavity, the water-in-oil-in-water emulsions rapture under the effect of friction and pressing, releasing the soluble calcium and phosphate salts encapsulated within the corresponding internal water phases. As a result, the liquid in the user's oral cavity will contain high concentrations of calcium and phosphate ions, which can enhance the rate of enamel remineralization.
HAIR CARE COMPOSITION
A hair care composition comprising a triglyceride oil having at least about 30% C18:1; and a low melting point wax.