脂肪变性
脂肪生成
内科学
氧化应激
内分泌学
下调和上调
维生素E
医学
脂质代谢
化学
抗氧化剂
生物化学
基因
作者
Maren C. Podszun,Ahmad S. Alawad,Shilpa Lingala,Nevitt Morris,Wen‐Chun A. Huang,Shanna Yang,Megan Schoenfeld,Adam Rolt,Ronald Ouwerkerk,Kristin Valdez,Regina Umarova,Yanling Ma,Syeda Fatima,Dennis D. Lin,Lakshmi Mahajan,Niharika Samala,Pierre-Christian Violet,Mark Levine,Robert D. Shamburek,Ahmed M. Gharib
出处
期刊:Redox biology
[Elsevier]
日期:2020-09-01
卷期号:37: 101710-101710
被引量:95
标识
DOI:10.1016/j.redox.2020.101710
摘要
Oxidative stress (OS) in non-alcoholic fatty liver disease (NAFLD) promotes liver injury and inflammation. Treatment with vitamin E (α-tocopherol, αT), a lipid-soluble antioxidant, improves liver injury but also decreases steatosis, thought to be upstream of OS, through an unknown mechanism. To elucidate the mechanism, we combined a mechanistic human trial interrogating pathways of intrahepatic triglyceride (IHTG) accumulation and in vitro experiments. 50% of NAFLD patients (n = 20) treated with αT (200-800 IU/d) for 24 weeks had a ≥ 25% relative decrease in IHTG by magnetic resonance spectroscopy. Paired liver biopsies at baseline and week 4 of treatment revealed a decrease in markers of hepatic de novo lipogenesis (DNL) that strongly predicted week 24 response. In vitro, using HepG2 cells and primary human hepatocytes, αT inhibited glucose-induced DNL by decreasing SREBP-1 processing and lipogenic gene expression. This mechanism is dependent on the antioxidant capacity of αT, as redox-silenced methoxy-αT is unable to inhibit DNL in vitro. OS by itself was sufficient to increase S2P expression in vitro, and S2P is upregulated in NAFLD livers. In summary, we utilized αT to demonstrate a vicious cycle in which NAFLD generates OS, which feeds back to augment DNL and increases steatosis. Clinicaltrials.gov: NCT01792115.
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