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Recent progress in biopolymer nanoparticle and microparticle formation by heat-treating electrostatic protein-polysaccharide complexes

机译:通过热处理静电蛋白质-多糖复合物形成生物聚合物纳米粒子和微粒的最新进展

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摘要

Functional biopolymer nanoparticles or microparticles can be formed by heat treatment of globular protein-ionic polysaccharide electrostatic complexes under appropriate solution conditions. These biopolymer particles can be used as encapsulation and delivery systems, fat mimetics, lightening agents, or texture modifiers. This review highlights recent progress in the design and fabrication of biopolymer particles based on heating globular protein-ionic polysaccharide complexes above the thermal denaturation temperature of the proteins. The influence of biopolymer type, protein-polysaccharide ratio, pH, ionic strength, and thermal history on the characteristics of the biopolymer particles formed is reviewed. Our current understanding of the underlying physicochemical mechanisms of particle formation and properties is given. The information provided in this review should facilitate the rational design of biopolymer particles with specific physicochemical and functional attributes, as well as stimulate further research in identifying the physicochemical origin of particle formation.
机译:功能性生物聚合物纳米颗粒或微粒可通过在适当的溶液条件下对球状蛋白质-离子多糖静电复合物进行热处理而形成。这些生物聚合物颗粒可以用作包封和递送系统,脂肪模拟物,增亮剂或质地改良剂。这篇综述着重介绍了基于将球形蛋白质-离子多糖复合物加热到蛋白质的热变性温度以上而设计和制造生物聚合物颗粒的最新进展。综述了生物聚合物类型,蛋白质-多糖比率,pH,离子强度和热历史对所形成的生物聚合物颗粒特性的影响。我们目前对颗粒形成和性质的潜在物理化学机理的理解。本综述中提供的信息应有助于合理设计具有特定理化和功能属性的生物聚合物颗粒,并激发进一步的研究以确定颗粒形成的理化来源。

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