脂肪变性
小檗碱
氧化应激
丙二醛
药理学
油酸
超氧化物歧化酶
化学
代谢组学
β氧化
生物化学
脂质代谢
氧化磷酸化
转录组
脂肪肝
活性氧
脂肪酸
脂质氧化
焊剂(冶金)
医学
饮食性肥胖
作者
Xiaoxiao Li,Xiaofeng Miao,Xinrui Zhang,Hailong Tian,L. C. Wang,Jin Liu,Jinyang Zhang,Rui Tan,Jihong Huang
标识
DOI:10.1021/acs.jafc.5c15040
摘要
NAFLD-related hepatic steatosis is a growing global health concern. We developed food-grade gliadin hydrolysate–berberine–chitosan nanoparticles (BBR-NPs) and evaluated their bioactivity in oleic acid-challenged HepG2 cells and high-fat diet (HFD)-fed mice. In vitro, BBR-NPs reduced triglycerides, total cholesterol, and LDL-C, increased HDL-C, and alleviated oxidative stress by decreasing ROS and malondialdehyde while enhancing superoxide dismutase activity. In vivo, oral BBR-NPs attenuated hepatic lipid deposition and improved serum/hepatic lipid indices, ALT/AST, oxidative stress markers, insulin resistance, and inflammatory cytokines, with generally more pronounced effects than free berberine at the same nominal dose in this model. Integrated hepatic metabolomics and transcriptomics suggested coordinated regulation of lipid homeostasis, including fatty acid oxidation, de novo lipogenesis, and cholesterol/bile acid metabolism. Collectively, BBR-NPs represent a scalable oral delivery approach that may enhance berberine’s metabolic benefits in diet-induced steatosis; however, pharmacokinetic and tissue exposure studies are needed to confirm formulation-specific advantages.
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