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Non-alcoholic steatohepatitis: What can we learn from animal models?

机译:非酒精性脂肪性肝炎:我们可以从动物模型中学到什么?

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摘要

Non-alcoholic fatty liver disease (NAFLD) is one of the most frequent causes of abnormal liver function and correlates with central adiposity, obesity, insulin resistance, the metabolic syndrome and type 2 diabetes mellitus. The pathological spectrum of NAFLD ranges from fatty liver to non-alcoholic steatohepatitis (NASH), advanced fibrosis, cirrhosis, and even hepatocellular carcinoma. Though NAFLD and NASH are becoming a major public health problem, ethical constraints on obtaining human liver tissue limit the interpretability of the data and the ability to delineate cause and effect from complex, interactive disease pathogenic pathways. Animal models of NASH can provide critical information leading to identify potential drug targets and to understand their molecular mechanisms, and are platforms for compound screening in drug development and for the assessment of novel therapeutic strategies. This review is aimed to offer an updated overview of the nutritional, genetic and pharmacologic animal models of NASH. Though the information derived from these models has clear relevance for the comprehension of the molecular basis of human disease, most of them fail to reproduce the full spectrum of liver pathology and the metabolic context that characterizes human NASH. Consequently, it is necessary to establish animal models that can best mimic the actual etiology, progression, and pathogenesis of the disease, and prove effectiveness for examining and selecting compounds with potential therapeutic benefit in NASH.
机译:非酒精性脂肪肝疾病(NAFLD)是最常见的肝功能异常原因之一,与中枢性肥胖,肥胖,胰岛素抵抗,代谢综合征和2型糖尿病有关。 NAFLD的病理范围从脂肪肝到非酒精性脂肪性肝炎(NASH),晚期纤维化,肝硬化,甚至肝细胞癌。尽管NAFLD和NASH成为主要的公共卫生问题,但是在获取人类肝脏组织方面的伦理约束限制了数据的可解释性以及从复杂的交互式疾病病原体途径描述因果关系的能力。 NASH的动物模型可提供关键信息,从而识别潜在的药物靶标并了解其分子机制,并且是药物开发中化合物筛选和评估新治疗策略的平台。这篇综述旨在提供NASH营养,遗传和药理动物模型的最新概述。尽管从这些模型中获得的信息与人类疾病分子基础的理解具有明显的相关性,但大多数都无法再现人类NASH所特有的肝脏病理学和新陈代谢背景。因此,有必要建立一种动物模型,以最好地模仿疾病的实际病因,病程和发病机理,并证明其对检查和选择对NASH具有潜在治疗益处的化合物有效。

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