Hepatoprotection of Lycii Fructus Polysaccharide against Oxidative Stress in Hepatocytes and Larval Zebrafish

氧化应激 斑马鱼 肝保护 幼虫 多糖 化学 生物化学 微生物学 生物 植物 基因 谷胱甘肽
作者
Fang Zhang,Xia Zhang,Yutian Gu,Min Wang,Sheng Guo,Jiazheng Liu,Xiaofei Zhang,Zihan Zhao,Bowen Qian,Yichao Yan,Li Yu,Chunlei Xu,Chunmei Liu,Funing Cao,Dawei Qian,Jin‐Ao Duan
出处
期刊:Oxidative Medicine and Cellular Longevity [Hindawi Publishing Corporation]
卷期号:2021 (1) 被引量:25
标识
DOI:10.1155/2021/3923625
摘要

Scavenging of oxidative stress by antioxidants may provide a therapeutic strategy for nonalcoholic fatty liver disease (NAFLD). Increasing evidence is supporting the potential application of natural resourced polysaccharides as promising prevention or treatment strategies against NAFLD. In the current study, an acidic heteropolysaccharide, LFP‐a1, was isolated and purified from Lycii fructus with successively hot water refluxing extraction, alcohol precipitation, protein removal, and DEAE‐52 cellulose chromatographic separation. LFP‐a1 was a complicated structured polysaccharide with an average MW of 4.74 × 104 Da and composed of 6 monosaccharides and 1 uronic acid. Preexposure of LFP‐a1 could increase the cell viability and reverse the abnormal oxidative stress though inhibition of mitochondrial‐mediated apoptotic pathway and correction of cell cycle progression against H 2 O 2 hepatoxicity in NAFLD model L02 cells. Consistently, in vivo study in thioacetamide‐ (TAA‐) induced NAFLD model zebrafish larvae showed LFP‐a1 preserved the liver integrity and alleviated TAA‐induced oxidative stress through downregulation of abnormal apoptosis. These observations indicated the hepatoprotective activity of LFP‐a1, which may be applied for the prevention or treatment of NAFLD or other oxidative stress‐related diseases.
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