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scopus(5)
Construction and evaluation of an iron delivery system by ultra-small nanoparticles from roast sturgeon (Acipenser schrenckiid)
ArticleAbstract: Nanoparticles were extensively applied as carriers for bioactive compound delivery to improve theirPalabras claves:Autores:Che T., Hou S., Liu K., Mingqian Tan, Song Y., Su W.Fuentes:scopusMicrofluidic Fabrication of pH-Responsive Nanoparticles for Encapsulation and Colon-Target Release of Fucoxanthin
ArticleAbstract: Improving the stability of fucoxanthin in the gastrointestinal tract is an important approach to enhPalabras claves:Encapsulation, food-derived nanoparticles, fucoxanthin, microfluidics, PH-responsive, Protective effectAutores:Hua Z., Li J., Liang D., Miao S., Mingqian Tan, Su W., Zhao X.Fuentes:scopusMicrofluidic spinning of fucoxanthin-loaded nanofibers for enhancing antioxidation and clarification of fruit juice
ArticleAbstract: Fruit juice is one of the most popular drinks, which requires strict processing conditions to ensurePalabras claves:Autores:Li J., Li Y., Miao S., Mingqian Tan, Su W., Zhang X.D.Fuentes:scopusMicrofluidics-assisted electrospinning of aligned nanofibers for modeling intestine barriers
ArticleAbstract: During electrospinning, the fibers deposited on the collector are usually randomly oriented in a disPalabras claves:Electrospinning, Foodborne nanofibers, Intestine barriers, microfluidics, Nanofiber alignmentAutores:Chen Z., Li Z., Mingqian Tan, Su W., Wang H., Wei W., Zhang M., Zhang W.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