Patent classifications
A23G4/08
Method Of Protecting Teeth Against Erosion
Disclosed are methods of treating and protecting teeth against erosion by use of oral compositions comprising polymeric mineral surface active agents, metal ions such as stannous and zinc and combinations thereof The present methods provide improved resistance of teeth to erosive demineralization or dissolution and prevention of tooth damage by subsequent exposure of teeth to erosive chemicals such as acidic foods and beverages.
SOFT, CHEWABLE AND ORALLY DISSOLVABLE AND/OR DISINTEGRABLE PRODUCTS
A soft, chewable and orally dissolvable and/or disintegrable product includes a biopolymer-sugar based matrix and botanical powder dispersed throughout the biopolymer-sugar based matrix. The biopolymer-sugar based matrix includes at least one biopolymer, at least one sugar and optional additives. Soft, chewable and orally dissolvable and/or disintegrable product can also include flavor beads.
SOFT, CHEWABLE AND ORALLY DISSOLVABLE AND/OR DISINTEGRABLE PRODUCTS
A soft, chewable and orally dissolvable and/or disintegrable product includes a biopolymer-sugar based matrix and botanical powder dispersed throughout the biopolymer-sugar based matrix. The biopolymer-sugar based matrix includes at least one biopolymer, at least one sugar and optional additives. Soft, chewable and orally dissolvable and/or disintegrable product can also include flavor beads.
Method of Protecting Teeth Against Erosion
Disclosed are methods of treating and protecting teeth against erosion by use of oral compositions comprising polymeric mineral surface active agents, metal ions such as stannous and zinc and combinations thereof. The present methods provide improved resistance of teeth to erosive demineralization or dissolution and prevention of tooth damage by subsequent exposure of teeth to erosive chemicals such as acidic foods and beverages.
Method of Protecting Teeth Against Erosion
Disclosed are methods of treating and protecting teeth against erosion by use of oral compositions comprising polymeric mineral surface active agents, metal ions such as stannous and zinc and combinations thereof. The present methods provide improved resistance of teeth to erosive demineralization or dissolution and prevention of tooth damage by subsequent exposure of teeth to erosive chemicals such as acidic foods and beverages.
CHEWING GUM WITH STEVIA
Disclosed is a chewing gum comprising stevia in the percentage of at least 0.05% by weight of the total gum, at least one calcium salt, and one or more high-viscosity elastomers.
CHEWING GUM WITH STEVIA
Disclosed is a chewing gum comprising stevia in the percentage of at least 0.05% by weight of the total gum, at least one calcium salt, and one or more high-viscosity elastomers.
CONTROLLED-RELEASE NICOTINE CHEWING GUM
At least one example embodiment relates to a chewing gum. In at least one example embodiment, the chewing gum comprises a gum base polymer and oil. The gum base polymer includes polyvinyl acetate (PVA) in an amount ranging from 35 weight percent to 55 weight percent of the chewing gum. The oil is present in an amount greater than 8 weight percent of the chewing gum. The oil includes a triglyceride, triacetin, and nicotine or a nicotine derivative. The triglyceride is present in an amount greater than or equal to 5 weight percent of the chewing gum. At least one example embodiment relates to a method of preparing a controlled-release nicotine chewing gum.
CONTROLLED-RELEASE NICOTINE CHEWING GUM
At least one example embodiment relates to a chewing gum. In at least one example embodiment, the chewing gum comprises a gum base polymer and oil. The gum base polymer includes polyvinyl acetate (PVA) in an amount ranging from 35 weight percent to 55 weight percent of the chewing gum. The oil is present in an amount greater than 8 weight percent of the chewing gum. The oil includes a triglyceride, triacetin, and nicotine or a nicotine derivative. The triglyceride is present in an amount greater than or equal to 5 weight percent of the chewing gum. At least one example embodiment relates to a method of preparing a controlled-release nicotine chewing gum.
GUM BASES AND CHEWING GUMS USING THERMOSENSITIVE POLYMERS
The present application discloses compositions of chewing gum base that can include at least one thermosensitive polymer. The thermosensitive polymer can include poly(N-isopropylacrylamides) or triblock copolymer polyoxyethylene-polyoxypropylene-polyoxyethylene. The present application provides for methods of making gum bases and chewing gum formulations.