脂肪肝
安普克
医学
二甲双胍
化学
内分泌学
蛋白激酶B
过剩4
内科学
脂肪组织
TXNIP公司
PI3K/AKT/mTOR通路
胰岛素抵抗
白色脂肪组织
氧化应激
药理学
磷酸化
信号转导
胰岛素
生物化学
蛋白激酶A
硫氧还蛋白
疾病
作者
Qiaoping Li,Yaoxing Dou,Ziwei Huang,Hanbin Chen,Yucui Li,Jian-Nan Chen,Yuhong Liu,Xiaoqi Huang,Huifang Zeng,Xiaobo Yang,Ziren Su,Jianhui Xie
出处
期刊:Phytomedicine
[Elsevier]
日期:2021-03-18
卷期号:85: 153550-153550
被引量:51
标识
DOI:10.1016/j.phymed.2021.153550
摘要
Berberine (BBR) has been widely used to treat non-alcoholic fatty liver disease (NAFLD). The metabolites of BBR were believed to contribute significantly to its pharmacological effects. Oxyberberine (OBB), a gut microbiota-mediated oxidative metabolite of BBR, has been firstly identified in our recent work. Here, we aimed to comparatively investigate the anti-NAFLD properties of OBB and BBR. The anti-NAFLD effect was evaluated in high-fat diet-induced obese NAFLD rats with biochemical/ELISA tests and histological staining. The related gene and protein expressions were detected by qRT-PCR and Western blotting respectively. Molecular docking and dynamic simulation were also performed to provide further insight. Results indicated OBB remarkably and dose-dependently attenuated the clinical manifestations of NAFLD, which (100 mg/kg) achieved similar therapeutic effect to metformin (300 mg/kg) and was superior to BBR of the same dose. OBB significantly inhibited aberrant phosphorylation of IRS-1 and up-regulated the downstream protein expression and phosphorylation (PI3K, p-Akt/Akt and p-GSK-3β/GSK-3β) to improve hepatic insulin signal transduction. Meanwhile, OBB treatment remarkably alleviated inflammation via down-regulating the mRNA expression of MCP-1, Cd68, Nos2, Cd11c, while enhancing Arg1 mRNA expression in white adipose tissue. Moreover, OBB exhibited closer affinity with AMPK in silicon and superior hyperphosphorylation of AMPK in vivo, leading to increased ACC mRNA expression in liver and UCP-1 protein expression in adipose tissue. Taken together, compared with BBR, OBB was more capable of maintaining lipid homeostasis between liver and WAT via attenuating hepatic insulin pathway and adipocyte inflammation, which was associated with its property of superior AMPK activator.
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