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Antioxidant dietary approach in treatment of fatty liver: New insights and updates

机译:抗氧化剂饮食疗法治疗脂肪肝的新见解和更新

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摘要

Non-alcoholic fatty liver disease (NAFLD) is a common clinicopathological condition, encompassing a range of conditions caused by lipid deposition within liver cells. To date, no approved drugs are available for the treatment of NAFLD, despite the fact that it represents a serious and growing clinical problem in the Western world. Identification of the molecular mechanisms leading to NAFLD-related fat accumulation, mitochondrial dysfunction and oxidative balance impairment facilitates the development of specific interventions aimed at preventing the progression of hepatic steatosis. In this review, we focus our attention on the role of dysfunctions in mitochondrial bioenergetics in the pathogenesis of fatty liver. Major data from the literature about the mitochondrial targeting of some antioxidant molecules as a potential treatment for hepatic steatosis are described and critically analysed. There is ample evidence of the positive effects of several classes of antioxidants, such as polyphenols (i.e., resveratrol, quercetin, coumestrol, anthocyanins, epigallocatechin gallate and curcumin), carotenoids (i.e., lycopene, astaxanthin and fucoxanthin) and glucosinolates (i.e., glucoraphanin, sulforaphane, sinigrin and allyl-isothiocyanate), on the reversion of fatty liver. Although the mechanism of action is not yet fully elucidated, in some cases an indirect interaction with mitochondrial metabolism is expected. We believe that such knowledge will eventually translate into the development of novel therapeutic approaches for fatty liver.
机译:非酒精性脂肪性肝病(NAFLD)是一种常见的临床病理学疾病,包括一系列由肝细胞内脂质沉积引起的疾病。迄今为止,尚无批准的药物可用于治疗NAFLD,尽管该药物在西方世界代表着严重且日益严重的临床问题。鉴定导致NAFLD相关脂肪积聚,线粒体功能障碍和氧化平衡障碍的分子机制,有助于开发旨在预防肝脂肪变性的特定干预措施。在这篇综述中,我们将注意力集中在线粒体功能障碍中脂肪肝发病机理中的功能障碍。描述和严格分析了文献中有关一些抗氧化剂分子的线粒体靶向作为肝脂肪变性潜在治疗方法的主要数据。有充分的证据表明多种抗氧化剂的正面作用,例如多酚(即白藜芦醇,槲皮素,香豆雌酚,花色苷,表没食子儿茶素没食子酸酯和姜黄素),类胡萝卜素(即番茄红素,虾青素和岩藻黄质)和芥子油苷(即葡糖苷) ,萝卜硫素,芥子苷和烯丙基异硫氰酸酯)对脂肪肝的逆转。尽管尚未完全阐明其作用机理,但在某些情况下,预期与线粒体代谢间接相互作用。我们相信,这些知识最终将转化为脂肪肝新疗法的发展。

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