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Co-delivery of hydrophobic astaxanthin and hydrophilic phycocyanin by a pH-sensitive water-in-oil-in-water double emulsion-filled gellan gum hydrogel
ArticleAbstract: Astaxanthin and phycocyanin were recommended for their bioactivities. However, limited stability andPalabras claves:Astaxanthin, Controlled-release, Gellan gum, pH-sensitive, Phycocyanin, Water-in-oil-in-waterAutores:Abd El-Aty A.M., Mingqian Tan, Song Y., Su W., Wang H., Yu H., Zaky A.A.Fuentes:scopusFacile synthesis of nano-nanocarriers from chitosan and pectin with improved stability and biocompatibility for anthocyanins delivery: An in vitro and in vivo study
ArticleAbstract: Anthocyanins is a type of natural pigment with a variety of physiological activities, are unstable aPalabras claves:ANTHOCYANINS, Caenorhabditis elegans, Chitosan, Nanocarriers, Pectin, self-assemblyAutores:Hou S., Mingqian Tan, Rai R., Song Y., Tie S., Wang H., Zhang X.D., Zhao X.Fuentes:scopusHigh internal phase Pickering emulsion stabilized by sea bass protein microgel particles: Food 3D printing application
ArticleAbstract: Food-grade high internal phase Pickering emulsions (HIPPEs) stabilized by protein-based particles haPalabras claves:3D Printing, Astaxanthin, Bioaccessibility, High internal phase Pickering emulsion, Sea bass protein microgel particlesAutores:Abd El-Aty A.M., Chen Y., Mingqian Tan, Su W., Wang H., Zaky A.A., Zhang L., Zhou C.Fuentes:scopusPreparation of high internal phase Pickering emulsion by centrifugation for 3D printing and astaxanthin delivery
ArticleAbstract: Oil in water high internal phase Pickering emulsion (HIPEs) stabilized by edible colloid particles hPalabras claves:3D Printing, Astaxanthin, Gliadin, HIPEs, starchAutores:Mingqian Tan, Song J., Sun Y., Wang H.Fuentes:scopus