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- W2741017923 endingPage "446" @default.
- W2741017923 startingPage "404" @default.
- W2741017923 abstract "Biocompatible and biodegradable-based nanoparticles have found a wide range of application in food delivery systems. Proteins and polysaccharide nanoparticles have been synthesized using several particulation methods, through which desolvation/nanoprecipitation has been considered as the best method due to its ability to fabricate spherical, uniform, and dense nanoparticles with the controlled size. Proteins have affinity to interact with different biomolecules owing to their many functional groups including amine, carboxyl, amide, sulfhydryl, hydrophilic, hydrophobic, etc. through altering which, a wide range of modifications could be made. Fabrication of protein nanoparticles such as gelatin, collagen, albumin, milk proteins, silk protein, zein, gliadin, and so on were reported via desolvation method in the literature. Polysaccharides and their derivatives also have various functional groups, and physical, chemical, and rheological properties. Fabrication of broad range of nanoparticles with specific characteristic from polysaccharides using nanoprecipitation method is an interesting research area. This chapter discusses about the different parameters that could determine the characteristics of biocompatible nanoparticles and the probability of their usage as nanovehicle systems to target delivery of the bioactive components." @default.
- W2741017923 created "2017-08-08" @default.
- W2741017923 creator A5031299351 @default.
- W2741017923 creator A5044757175 @default.
- W2741017923 creator A5049471262 @default.
- W2741017923 creator A5071768673 @default.
- W2741017923 date "2017-01-01" @default.
- W2741017923 modified "2023-09-26" @default.
- W2741017923 title "Nanocapsule formation by individual biopolymer nanoparticles" @default.
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