Biochemical basis and therapeutic potential of mitochondrial uncoupling in cardiometabolic syndrome.

IF 4.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Bernardo Gindri Dos Santos, Niki F Brisnovali, Leigh Goedeke
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引用次数: 0

Abstract

Mild uncoupling of oxidative phosphorylation is an intrinsic property of all mitochondria, allowing for adjustments in cellular energy metabolism to maintain metabolic homeostasis. Small molecule uncouplers have been extensively studied for their potential to increase metabolic rate, and recent research has focused on developing safe and effective mitochondrial uncoupling agents for the treatment of obesity and cardiometabolic syndrome (CMS). Here, we provide a brief overview of CMS and cover the recent mechanisms by which chemical uncouplers regulate CMS-associated risk-factors and comorbidities, including dyslipidemia, insulin resistance, steatotic liver disease, type 2 diabetes, and atherosclerosis. Additionally, we review the current landscape of uncoupling agents, focusing on repurposed FDA-approved drugs and compounds in advanced preclinical or early-stage clinical development. Lastly, we discuss recent molecular insights by which chemical uncouplers enhance cellular energy expenditure, highlighting their potential as a new addition to the current CMS drug landscape, and outline several limitations that need to be addressed before these agents can successfully be introduced into clinical practice.

线粒体解偶联在心脏代谢综合征中的生化基础和治疗潜力。
氧化磷酸化的轻度解偶联是所有线粒体的固有特性,允许调节细胞能量代谢以维持代谢稳态。小分子解偶联剂因其提高代谢率的潜力而被广泛研究,最近的研究重点是开发安全有效的线粒体解偶联剂来治疗肥胖和心血管代谢综合征(CMS)。在这里,我们简要概述了CMS,并介绍了化学解偶联剂调节CMS相关危险因素和合并症的最新机制,包括血脂异常、胰岛素抵抗、脂肪变性肝病、2型糖尿病和动脉粥样硬化。此外,我们回顾了解偶联剂的现状,重点是fda批准的处于临床前或早期临床开发阶段的药物和化合物。最后,我们讨论了化学解偶联剂增强细胞能量消耗的最新分子见解,强调了它们作为当前CMS药物领域的新成员的潜力,并概述了在这些药物成功引入临床实践之前需要解决的几个限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biochemical Journal
Biochemical Journal 生物-生化与分子生物学
CiteScore
8.00
自引率
0.00%
发文量
255
审稿时长
1 months
期刊介绍: Exploring the molecular mechanisms that underpin key biological processes, the Biochemical Journal is a leading bioscience journal publishing high-impact scientific research papers and reviews on the latest advances and new mechanistic concepts in the fields of biochemistry, cellular biosciences and molecular biology. The Journal and its Editorial Board are committed to publishing work that provides a significant advance to current understanding or mechanistic insights; studies that go beyond observational work using in vitro and/or in vivo approaches are welcomed. Painless publishing: All papers undergo a rigorous peer review process; however, the Editorial Board is committed to ensuring that, if revisions are recommended, extra experiments not necessary to the paper will not be asked for. Areas covered in the journal include: Cell biology Chemical biology Energy processes Gene expression and regulation Mechanisms of disease Metabolism Molecular structure and function Plant biology Signalling
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