纳米凝胶
葡萄糖苷
化学
抗氧化剂
复合数
吸水率
化学稳定性
生物化学
封装(网络)
化学工程
材料科学
药物输送
有机化学
医学
复合材料
计算机网络
替代医学
病理
工程类
计算机科学
作者
Jin Feng,Yinghui Wu,Lixia Zhang,Ying Li,Songbai Liu,Hua Wang,Chunyang Li
标识
DOI:10.1021/acs.jafc.9b04778
摘要
A composite nanogel was developed for cyanidin-3-O-glucoside (C3G) delivery by combining Maillard reaction and heat gelation. The starting materials utilized were ovalbumin, dextran, and pectin. C3G-loaded nanogel was spherical with a diameter of ∼185 nm, which was maintained over a wide range of pH and NaCl concentrations. The composite nanogel enhanced the chemical stability of C3G under accelerated degradation models and a simulated gastrointestinal tract. Clathrin-mediated, caveolae-mediated, and macropinocytosis-related endocytosis contributed to the higher cellular uptake of nano-C3G than that of free-C3G. The apparent permeability coefficients of C3G increased 2.16 times after nanoencapsulation. The transcytosis of the C3G-bearing nanogel occurred primarily through the clathrin-related pathway and macropinocytosis and followed the "common recycling endosomes–endoplasmic reticulum–Golgi complex–basolateral plasma membrane" route. Moreover, nano-C3G was more efficient in restoring the viability of cells and activities of endogenous antioxidant enzymes than free-C3G in oxidative models, which may be attributed to the former's high cellular absorption.
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