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胰岛素抵抗使 CYP7B1 失调导致氧化固醇积累:NAFL 向 NASH 转化的途径。

Insulin resistance dysregulates CYP7B1 leading to oxysterol accumulation: a pathway for NAFL to NASH transition.

机构信息

Department of Internal Medicine, Virginia Commonwealth University, Richmond, VA, USA; Department of Veterans Affairs, McGuire Veterans Administration Medical Center, Richmond, VA, USA.

Department of Internal Medicine, Virginia Commonwealth University, Richmond, VA, USA; Department of Veterans Affairs, McGuire Veterans Administration Medical Center, Richmond, VA, USA.

出版信息

J Lipid Res. 2020 Dec;61(12):1629-1644. doi: 10.1194/jlr.RA120000924. Epub 2020 Oct 2.

Abstract

NAFLD is an important public health issue closely associated with the pervasive epidemics of diabetes and obesity. Yet, despite NAFLD being among the most common of chronic liver diseases, the biological factors responsible for its transition from benign nonalcoholic fatty liver (NAFL) to NASH remain unclear. This lack of knowledge leads to a decreased ability to find relevant animal models, predict disease progression, or develop clinical treatments. In the current study, we used multiple mouse models of NAFLD, human correlation data, and selective gene overexpression of steroidogenic acute regulatory protein (StarD1) in mice to elucidate a plausible mechanistic pathway for promoting the transition from NAFL to NASH. We show that oxysterol 7α-hydroxylase (CYP7B1) controls the levels of intracellular regulatory oxysterols generated by the "acidic/alternative" pathway of cholesterol metabolism. Specifically, we report data showing that an inability to upregulate CYP7B1, in the setting of insulin resistance, results in the accumulation of toxic intracellular cholesterol metabolites that promote inflammation and hepatocyte injury. This metabolic pathway, initiated and exacerbated by insulin resistance, offers insight into approaches for the treatment of NAFLD.

摘要

非酒精性脂肪性肝病(NAFLD)是一个重要的公共卫生问题,与糖尿病和肥胖症的广泛流行密切相关。然而,尽管 NAFLD 是最常见的慢性肝病之一,但导致其从良性非酒精性脂肪肝(NAFL)向 NASH 转变的生物学因素仍不清楚。这种知识的缺乏导致难以找到相关的动物模型、预测疾病进展或开发临床治疗方法。在本研究中,我们使用了多种 NAFLD 小鼠模型、人类相关性数据以及在小鼠中选择性过表达类固醇急性调节蛋白(StarD1),以阐明促进从 NAFL 向 NASH 转变的合理机制途径。我们表明,氧化固醇 7α-羟化酶(CYP7B1)控制由胆固醇代谢的“酸性/替代”途径产生的细胞内调节性氧化固醇的水平。具体来说,我们报告的数据表明,在胰岛素抵抗的情况下,无法上调 CYP7B1 会导致有毒的细胞内胆固醇代谢物积累,从而促进炎症和肝细胞损伤。这种由胰岛素抵抗引发和加剧的代谢途径为 NAFLD 的治疗提供了思路。

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