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单酰甘油脂肪酶 1 敲低加剧肝脂肪变性小鼠肝缺血/再灌注损伤。

Monoacylglycerol Acyltransferase 1 Knockdown Exacerbates Hepatic Ischemia/Reperfusion Injury in Mice With Hepatic Steatosis.

机构信息

Departments of Pediatrics Washington University School of Medicine St. Louis MO Medicine Washington University School of Medicine St. Louis MO Pathology and Immunology Washington University School of Medicine St. Louis MO Genome Technology Access Center McDonnell Genome InstituteWashington University School of Medicine St. Louis MO Ionis Pharmaceuticals, Inc. Carlsbad CA Department of Environmental and Occupational HealthFay W. Boozman College of Public Health University of Arkansas for Medical Sciences Little Rock AR Department of Biochemistry and Molecular Biology Saint Louis University School of Medicine St. Louis MO.

出版信息

Liver Transpl. 2021 Jan;27(1):116-133. doi: 10.1002/lt.25886. Epub 2020 Oct 22.

Abstract

Nonalcoholic fatty liver disease (NAFLD) is becoming the most common indication for liver transplantation. The growing prevalence of NAFLD not only increases the demand for liver transplantation, but it also limits the supply of available organs because steatosis predisposes grafts to ischemia/reperfusion injury (IRI) and many steatotic grafts are discarded. We have shown that monoacylglycerol acyltransferase (MGAT) 1, an enzyme that converts monoacylglycerol to diacylglycerol, is highly induced in animal models and patients with NAFLD and is an important mediator in NAFLD-related insulin resistance. Herein, we sought to determine whether Mogat1 (the gene encoding MGAT1) knockdown in mice with hepatic steatosis would reduce liver injury and improve liver regeneration following experimental IRI. Antisense oligonucleotides (ASO) were used to knockdown the expression of Mogat1 in a mouse model of NAFLD. Mice then underwent surgery to induce IRI. We found that Mogat1 knockdown reduced hepatic triacylglycerol accumulation, but it unexpectedly exacerbated liver injury and mortality following experimental ischemia/reperfusion surgery in mice on a high-fat diet. The increased liver injury was associated with robust effects on the hepatic transcriptome following IRI including enhanced expression of proinflammatory cytokines and chemokines and suppression of enzymes involved in intermediary metabolism. These transcriptional changes were accompanied by increased signs of oxidative stress and an impaired regenerative response. We have shown that Mogat1 knockdown in a mouse model of NAFLD exacerbates IRI and inflammation and prolongs injury resolution, suggesting that Mogat1 may be necessary for liver regeneration following IRI and that targeting this metabolic enzyme will not be an effective treatment to reduce steatosis-associated graft dysfunction or failure.

摘要

非酒精性脂肪性肝病 (NAFLD) 正成为肝移植最常见的适应证。NAFLD 患病率的不断上升不仅增加了肝移植的需求,而且还限制了可供使用的器官供应,因为脂肪变性使移植物容易发生缺血/再灌注损伤 (IRI),许多脂肪变性的移植物被丢弃。我们已经表明,单酰基甘油酰基转移酶 (MGAT) 1 是一种将单酰基甘油转化为二酰基甘油的酶,在动物模型和 NAFLD 患者中高度诱导,并且是 NAFLD 相关胰岛素抵抗的重要介质。在此,我们试图确定在肝脂肪变性的小鼠中敲低 MGAT1(编码 MGAT1 的基因)是否会减轻 IRI 后的肝损伤并改善肝再生。反义寡核苷酸 (ASO) 用于敲低 NAFLD 小鼠模型中的 Mogat1 表达。然后,小鼠接受手术以诱导 IRI。我们发现,Mogat1 敲低可减少肝三酰甘油的积累,但令人意外的是,在高脂肪饮食的小鼠中,它会加剧实验性缺血/再灌注手术后的肝损伤和死亡率。肝损伤增加与 IRI 后肝转录组的强烈变化有关,包括促炎细胞因子和趋化因子的表达增强以及参与中间代谢的酶的表达抑制。这些转录变化伴随着氧化应激迹象的增加和再生反应受损。我们已经表明,在 NAFLD 小鼠模型中敲低 Mogat1 会加剧 IRI 和炎症,并延长损伤的缓解,这表明 Mogat1 可能是 IRI 后肝再生所必需的,而靶向这种代谢酶不是一种有效的治疗方法,无法减少脂肪变性相关移植物功能障碍或衰竭。

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