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scopus(7)
Advances of astaxanthin-based delivery systems for precision nutrition
ReviewAbstract: Background: Astaxanthin is a marine carotenoid which has received widely attention due to its strongPalabras claves:Astaxanthin, Bioavailability, delivery system, Precision nutrition, stabilityAutores:Chen Y., Mingqian Tan, Su W., Tie S., Zhang L.Fuentes:scopusFacile synthesis of food-grade and size-controlled nanocarriers based on self-assembly of procyanidins and phycocyanin
ArticleAbstract: Nanocarriers provide the possibility to overcome the low solubility, poor stability, and low bioavaiPalabras claves:Autores:Chen Y., Cui W., Mingqian Tan, Qiao F., Su W., Tie S., Xiang S.Fuentes:scopusNanocarrier from water extract solution of Auricularia auricula for zinc delivery
ArticleAbstract: Food-borne nanoparticles (FNs) may have potential for microelement delivery due to their good biocomPalabras claves:Auricularia auricula, Biocompatibility, biodistribution, food-borne nanoparticles, nanocarrier, Zinc deliveryAutores:Chen Y., Mingqian Tan, Xing S., Yu D., Yu X.Fuentes:scopusHigh internal phase Pickering emulsions stabilized by a cod protein-chitosan nanocomplex for astaxanthin delivery
ArticleAbstract: High internal phase Pickering emulsions (HIPPEs) stabilized by a food protein have attracted widesprPalabras claves:Autores:Chen Y., Mingqian Tan, Na X., Zhang L., Zhou C.Fuentes:scopusSea bass protein-polyphenol complex stabilized high internal phase of algal oil Pickering emulsions to stabilize astaxanthin for 3D food printing
ArticleAbstract: The protective effect of sea bass protein (SBP)-(−)-epigallocatechin-3-gallate (EGCG) covalent complPalabras claves:3D Printing, Algal oil, Astaxanthin, High internal phase Pickering emulsions, Sea bass protein-(-)-epigallocatechin-3-gallate complex, stabilityAutores:Chen Y., Mingqian Tan, Su W., Wang H., Xing S., Zhang L., Zhou C.Fuentes:scopusZinc delivery system constructed from food-borne nanoparticles derived from Undaria pinnatifida
ArticleAbstract: Food-borne nanoparticles from Undaria pinnatifida (UPFNs) were prepared and successfully applied asPalabras claves:Autores:Chen Y., Hou S., Mingqian Tan, Qiao F., Tie S., Yu X.Fuentes:scopuspH-Responsive Core-Shell Microparticles Prepared by a Microfluidic Chip for the Encapsulation and Controlled Release of Procyanidins
ArticleAbstract: The purpose of this study was to construct a delivery system using a microfluidic chip to protect prPalabras claves:Chitosan, Controlled release, Encapsulation, microfluidic chip, procyanidins, self-assemblyAutores:Chen Y., Mingqian Tan, Su W., Tie S., Zhang X.D., Zhao X.Fuentes:scopus