普鲁兰
溶解度
化学
抗氧化剂
纳米颗粒
化学稳定性
药物输送
粒径
化学工程
色谱法
材料科学
多糖
有机化学
物理化学
工程类
作者
Jing Lu,Long Xie,Anxin Wu,Xian Wang,Youdan Liang,Xiaolin Dai,Yi Cao,Xiaofang Li
标识
DOI:10.1016/j.colsurfb.2022.112682
摘要
Silybin (Sil) is a natural flavonoid that is mostly used clinically in the treatment of cirrhosis. However, its low water solubility and chemical instability hinder its practical application. In this study, zein-pullulan nanoparticles loaded with Sil ([email protected]) were prepared by an anti-solvent precipitation method for the delivery of Sil, thereby improving its low water solubility and chemical instability with a view to expanding its clinical applications. By optimizing the preparation process of [email protected], it was found that when the zein-to-Sil ratio of 10:1 (w/w), Pl (0.5 mg/mL), the [email protected] were uniformly distributed and showed smooth spherical shape with an average particle size of about 115 nm. In addition, [email protected] exhibited high encapsulation efficiency (96.93%), remained stable under extreme environments such as strong acids, high temperatures and high salinity, and did not precipitate or aggregate after many days of storage, probably due to zein being encapsulated by pullulan (Pl) to enhance the stability of the drug delivery system. Finally, in vitro experiments have shown that [email protected] could achieve sustained release of Sil while further enhancing antioxidant capacity. Overall, the present study provides a novel and effective delivery system for chemically unstable hydrophobic compounds such as Sil.
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