Patent classifications
A01N25/28
Encapsulated antimicrobials and related methods of treatment
The invention provides compositions and methods that comprise encapsulated silver diamine fluoride or other antimicrobial materials for use in treatment of dental caries, for example.
Encapsulated antimicrobials and related methods of treatment
The invention provides compositions and methods that comprise encapsulated silver diamine fluoride or other antimicrobial materials for use in treatment of dental caries, for example.
Polyurea capsules cross-linked with chitosan
An improved process of forming polyurea and chitosan microcapsules encapsulating a benefit agent is described. The process comprises forming a water phase comprising hydrolyzing chitosan in an acidic medium at a pH of 6.5 or less for an extended period and combining with a polyisocyanate. The reaction product of the hydrolyzed chitosan and polyisocyanate yields a microcapsule having improved release characteristics, with enhanced degradation characteristics in OECD test method 301B.
MICROCAPSULES COATED WITH A POLYSUCCINIMIDE DERIVATIVE
The present invention relates to the field of delivery systems. More specifically, the invention concerns microcapsules coated with a polysuccinimide derivative and can be used in several industries, in particular in the perfumery industry. Perfuming compositions and perfumed consumer products comprising these microcapsules are also objects of the invention.
PAINTING WITH BIOCIDES COMPOSITION AND/OR PROLONGED RELEASE PESTICIDES
This invention refers to a paint composition with prolonged release biocides to repel, reduce, and control insects, characterized by: a) A cbp vehicle, preferably a water-based acrylic vinyl paint; b) At least one pyrethroid biocide or its mixture, selected from: b1) microencapsulated deltamethrin as an active ingredient; b2) microencapsulated cypermethrin as an active ingredient; Where said pyrethroid biocides are activated or catalyzed through (PBO) piperonyl butoxide, and Wherein said microcapsules of the active ingredients are obtained through a microencapsulation process by interfacial polymerization, and/or a microencapsulation by ionic gelation process, for a prolonged release with regards to the biocidal active ingredients' interval.
PAINTING WITH BIOCIDES COMPOSITION AND/OR PROLONGED RELEASE PESTICIDES
This invention refers to a paint composition with prolonged release biocides to repel, reduce, and control insects, characterized by: a) A cbp vehicle, preferably a water-based acrylic vinyl paint; b) At least one pyrethroid biocide or its mixture, selected from: b1) microencapsulated deltamethrin as an active ingredient; b2) microencapsulated cypermethrin as an active ingredient; Where said pyrethroid biocides are activated or catalyzed through (PBO) piperonyl butoxide, and Wherein said microcapsules of the active ingredients are obtained through a microencapsulation process by interfacial polymerization, and/or a microencapsulation by ionic gelation process, for a prolonged release with regards to the biocidal active ingredients' interval.
PAINTING WITH BIOCIDES COMPOSITION AND/OR PROLONGED RELEASE PESTICIDES
This invention refers to a paint composition with prolonged release biocides to repel, reduce, and control insects, characterized by: a) A cbp vehicle, preferably a water-based acrylic vinyl paint; b) At least one pyrethroid biocide or its mixture, selected from: b1) microencapsulated deltamethrin as an active ingredient; b2) microencapsulated cypermethrin as an active ingredient; Where said pyrethroid biocides are activated or catalyzed through (PBO) piperonyl butoxide, and Wherein said microcapsules of the active ingredients are obtained through a microencapsulation process by interfacial polymerization, and/or a microencapsulation by ionic gelation process, for a prolonged release with regards to the biocidal active ingredients' interval.
STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES, METHODS OF MAKING STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES, AND METHODS OF USING STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES
Embodiments of the present disclosure provide for compositions including polymer particles, methods of making compositions, methods of using the composition, stimuli-responsive methods of delivering agents, and the like.
STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES, METHODS OF MAKING STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES, AND METHODS OF USING STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES
Embodiments of the present disclosure provide for compositions including polymer particles, methods of making compositions, methods of using the composition, stimuli-responsive methods of delivering agents, and the like.
STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES, METHODS OF MAKING STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES, AND METHODS OF USING STIMULI-RESPONSIVE POLYMERIC NANOPARTICLES
Embodiments of the present disclosure provide for compositions including polymer particles, methods of making compositions, methods of using the composition, stimuli-responsive methods of delivering agents, and the like.