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心力衰竭中效率低下的电池:破坏线粒体生态系统的代谢瓶颈。 (注:这里“电池”在医学语境可能是比喻,结合上下文或许是指细胞内能量相关机制等,表述可能不太准确,需结合完整文本理解。)

Inefficient Batteries in Heart Failure: Metabolic Bottlenecks Disrupting the Mitochondrial Ecosystem.

作者信息

Schwartz Brian, Gjini Petro, Gopal Deepa M, Fetterman Jessica L

机构信息

Evans Department of Medicine, Section of Internal Medicine, Boston University School of Medicine, Boston, Massachusetts, USA.

Evans Department of Medicine and Whitaker Cardiovascular Institute, Boston University School of Medicine, Boston, Massachusetts, USA.

出版信息

JACC Basic Transl Sci. 2022 Jul 20;7(11):1161-1179. doi: 10.1016/j.jacbts.2022.03.017. eCollection 2022 Nov.

Abstract

Mitochondrial abnormalities have long been described in the setting of cardiomyopathies and heart failure (HF), yet the mechanisms of mitochondrial dysfunction in cardiac pathophysiology remain poorly understood. Many studies have described HF as an energy-deprived state characterized by a decline in adenosine triphosphate production, largely driven by impaired oxidative phosphorylation. However, impairments in oxidative phosphorylation extend beyond a simple decline in adenosine triphosphate production and, in fact, reflect pervasive metabolic aberrations that cannot be fully appreciated from the isolated, often siloed, interrogation of individual aspects of mitochondrial function. With the application of broader and deeper examinations into mitochondrial and metabolic systems, recent data suggest that HF with preserved ejection fraction is likely metabolically disparate from HF with reduced ejection fraction. In our review, we introduce the concept of the mitochondrial ecosystem, comprising intricate systems of metabolic pathways and dynamic changes in mitochondrial networks and subcellular locations. The mitochondrial ecosystem exists in a delicate balance, and perturbations in one component often have a ripple effect, influencing both upstream and downstream cellular pathways with effects enhanced by mitochondrial genetic variation. Expanding and deepening our vantage of the mitochondrial ecosystem in HF is critical to identifying consistent metabolic perturbations to develop therapeutics aimed at preventing and improving outcomes in HF.

摘要

线粒体异常在心肌病和心力衰竭(HF)的背景下早已被描述,但心脏病理生理学中线粒体功能障碍的机制仍知之甚少。许多研究将HF描述为一种能量缺乏状态,其特征是三磷酸腺苷生成减少,这在很大程度上是由氧化磷酸化受损驱动的。然而,氧化磷酸化的损害不仅仅是三磷酸腺苷生成的简单减少,事实上,它反映了普遍存在的代谢异常,而这些异常无法从对线粒体功能各个方面的孤立、通常是孤立的研究中得到充分认识。随着对线粒体和代谢系统进行更广泛、更深入的研究,最近的数据表明,射血分数保留的HF在代谢上可能与射血分数降低的HF不同。在我们的综述中,我们引入了线粒体生态系统的概念,它包括复杂的代谢途径系统以及线粒体网络和亚细胞位置的动态变化。线粒体生态系统处于微妙的平衡之中,一个组成部分的扰动往往会产生连锁反应,影响上游和下游的细胞途径,而线粒体基因变异会增强这种影响。扩展和深化我们对HF中线粒体生态系统的认识对于识别一致的代谢扰动以开发旨在预防和改善HF结局的治疗方法至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2d0/9849281/71070e00cff7/fx1.jpg

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