Abstract:
A chewing gum comprising at least one biodegradable polymer, sweetener in an amount from about 0.5% to about 95% of said chewing gum, one or more flavoring agents, filler in an amount from about 0 to 50% by weight of said chewing gum, further chewing gum ingredients and at least one enzyme, wherein said at least one enzyme is comprised in a hydrophobic enzyme formulation. According to the invention, it has been established that an enzymatically activated degradation may by obtained when applying a hydrophobic enzyme formulation even though the hydrophobic enzyme formulation, e.g. when applying a dispersion of substantially hydrophilic enzymes in a hydrophobic medium such as oil, might be suspected to have a negative influence on the functionality of the enzymes at the active sites of the applied enzyme.
Abstract:
The invention relates to a chewing gum having modified release, said chewing gum comprising at least one resinous polyester polymer in an amount from about 0.1% to about 70% by weight of said chewing gum, and at least one non-polyester elastomer in an amount from about ½% to about 70% by weight of said chewing gum, the amount of natural resins being less than about 2% by weight of said chewing gum and the amount of polyvinyl acetate (PVA) being less than about 14% by weight of said chewing gum. The obtained chewing gum, thus benefits from the advantageous texture properties of e.g. non-polyester elastomer such as butyl rubber, poly isobutylene, SBR or derivatives thereof combined with the advantageous release and textural properties of the polyester polymer when applied with a relatively low amount of PVA and a very low amount of a natural resin
Abstract:
The invention relates to a method of cleaning a surface (1) attached with at least one chewing gum lump (2) whereby said cleaning is at least partly based on an enzymatic degradation of at least one biodegradable polymer in said chewing gum lump (2) and whereby said enzymatic degradation is initiated by the application of at least one enzyme to which said at least one polymer forms substrate and whereby said at least one enzyme is added to said chewing gum lump (2) subsequent to chewing and attachment of said chewing gum lump (2) to said surface (1).
Abstract:
A chewing gum includes a polyester having as polyester-forming components in condensed form: (a) a dicarboxylic acid, (b) a diol and (c) a compound having at least three groups capable of ester formation in an amount of from 0.1 to 10.0% by weight, based on the total weight of components (a), (b) and (c). The polyester includes components (a) and (b) in an amount of at least 90% by weight, based on the total weight of the polyester. The chewing gum includes the polyester in an amount of at least 5% by weight of the chewing gum. The chewing gum further includes a sweetening agent and/or a flavoring agent in an amount of 10 to 95% by weight of the chewing gum. The molar ratio between aromatic acids and aliphatic acids of the dicarboxylic acid is between 0 and 1:4.2.
Abstract:
A chewing gum includes a polyester having as polyester-forming components in condensed form: (a) a dicarboxylic acid, (b) a diol and (c) a compound having at least three groups capable of ester formation in an amount of from 0.1 to 10.0% by weight, based on the total weight of components (a), (b) and (c). The polyester includes components (a) and (b) in an amount of at least 90% by weight, based on the total weight of the polyester. The chewing gum includes the polyester in an amount of at least 5% by weight of the chewing gum. The chewing gum further includes a sweetening agent and/or a flavoring agent in an amount of 10 to 95% by weight of the chewing gum. The molar ratio between aromatic acids and aliphatic acids of the dicarboxylic acid is between 0 and 1:4.2.
Abstract:
The invention relates to a method of cleaning a surface (1) attached with at least one chewing gum lump (2) whereby said cleaning is at least partly based on an enzymatic degradation of at least one biodegradable polymer in said chewing gum lump (2) and whereby said enzymatic degradation is initiated by the application of at least one enzyme to which said at least one polymer forms substrate and whereby said at least one enzyme is added to said chewing gum lump (2) subsequent to chewing and attachment of said chewing gum lump (2) to said surface (1).
Abstract:
The invention relates to a chewing gum comprising at least one biodegradable polymer in an amount of from about 0.1% to about 95%, said biodegradable polymer having a glass transition temperature (Tg) above 37° C. and having a molecular weight (Mn) within the range of approximately 500 to 60000 g/mol and wherein said chewing gum comprises less than approximately 5% by weight of natural resins.
Abstract:
The invention relates to a chewing gum comprising chewing gum ingredients, said chewing gum comprising at least one elastomer and at least one resin, said at least one resin comprising at least one synthetic biodegradable homopolymer resin, the amount of said synthetic biodegradable homopolymer of said chewing gum being from about ½% to 60% by weight of said chewing gum. The obtained non-tack properties combined with acceptable chew feel is according to an embodiment of the invention obtained by a combination of a biodegradable homopolymer and an elastomer in the chewing gum.
Abstract:
The invention relates to a chewable tablet including a polymer system, tobacco powder, flavor and sweetener, at least about 70% by weight of the polymer system being polyvinyl acetate (PVAc) and less than 10% by weight of the polymer system being polymer having a molecular weight (Mw) of greater than about 50000 g/mol.
Abstract:
The invention relates to a toffee gum comprising a polymer system, at least one flavor, and at least one sweetener, said polymer system constituting at least 10% by weight of said toffee gum, at least 70% by weight of said polymer system comprising one or more at least partly biodegradable polymers, and at least one of said at least partly biodegradable polymers having a molecular weight (Mn) in the range of 1000 to 250000 g/mol.