Zeta电位
生物利用度
醇溶蛋白
吸附
纳米颗粒
化学工程
化学
白藜芦醇
疏水效应
水溶液
抗氧化剂
溶解度
多酚
壳聚糖
纳米晶
甲壳素
有机化学
生物化学
面筋
工程类
生物
生物信息学
作者
Weiquan Zhong,Zijian Zhi,Jianbo Zhao,Danjie Li,Shan Yu,Mengxia Duan,Jingting Xu,Cailing Tong,Jie Pang,Chunhua Wu
标识
DOI:10.1021/acs.jafc.2c04174
摘要
Resveratrol (RES) is a natural polyphenol with a variety of health beneficial properties, but its application is greatly limited due to low aqueous solubility and poor bioavailability. This study aims to address these issues via gliadin nanoparticles stabilized with oxidized chitin nanocrystals (O-ChNCs) as a delivery system for RES. RES-loaded gliadin nanoparticles (GRNPs) were fabricated by an antisolvent method, and their formation mechanism was elucidated using zeta-potential, FTIR, XRD, and TEM. Furthermore, the effect of O-ChNCs on the colloidal stability and bioactiveness of GRNPs was discussed. The results demonstrate that O-ChNCs are adsorbed onto the surface of GRNPs through hydrogen bonding and electrostatic interactions, leading to the enhanced absolute potential and the improved hydrophobicity of the particles, which in turn facilitates the stability of the GRNPs. Furthermore, the changes in the release profile and antioxidant activity of RES in the simulated gastric and intestinal tracts indicate that the adsorption of O-ChNCs not only delays the release of RES but also has a protective effect on the antioxidant capacity of RES. This study provides significant implications for developing stable gliadin nanoparticles as delivery vehicles for bioactive substances.
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