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代谢协调生理和病理心脏重构。

Metabolic Coordination of Physiological and Pathological Cardiac Remodeling.

机构信息

From the Center for Translational Medicine, Lewis Katz School of Medicine, Temple University, Philadelphia, PA (A.A.G.).

the Department of Medicine, Institute of Molecular Cardiology, Diabetes and Obesity Center, University of Louisville School of Medicine, KY (B.G.H.).

出版信息

Circ Res. 2018 Jun 22;123(1):107-128. doi: 10.1161/CIRCRESAHA.118.312017.

Abstract

Metabolic pathways integrate to support tissue homeostasis and to prompt changes in cell phenotype. In particular, the heart consumes relatively large amounts of substrate not only to regenerate ATP for contraction but also to sustain biosynthetic reactions for replacement of cellular building blocks. Metabolic pathways also control intracellular redox state, and metabolic intermediates and end products provide signals that prompt changes in enzymatic activity and gene expression. Mounting evidence suggests that the changes in cardiac metabolism that occur during development, exercise, and pregnancy as well as with pathological stress (eg, myocardial infarction, pressure overload) are causative in cardiac remodeling. Metabolism-mediated changes in gene expression, metabolite signaling, and the channeling of glucose-derived carbon toward anabolic pathways seem critical for physiological growth of the heart, and metabolic inefficiency and loss of coordinated anabolic activity are emerging as proximal causes of pathological remodeling. This review integrates knowledge of different forms of cardiac remodeling to develop general models of how relationships between catabolic and anabolic glucose metabolism may fortify cardiac health or promote (mal)adaptive myocardial remodeling. Adoption of conceptual frameworks based in relational biology may enable further understanding of how metabolism regulates cardiac structure and function.

摘要

代谢途径相互整合以支持组织稳态,并促使细胞表型发生变化。特别是,心脏不仅消耗大量的底物来再生用于收缩的 ATP,还消耗大量的底物来维持生物合成反应以替换细胞构件。代谢途径还控制细胞内的氧化还原状态,代谢中间产物和终产物提供信号,促使酶活性和基因表达发生变化。越来越多的证据表明,在发育、运动和妊娠期间以及在病理性应激(如心肌梗死、压力超负荷)期间发生的心脏代谢变化是心脏重构的原因。代谢介导的基因表达变化、代谢物信号以及葡萄糖衍生的碳向合成代谢途径的定向似乎对心脏的生理生长至关重要,代谢效率低下和协调的合成代谢活性丧失正在成为病理性重构的近端原因。本综述整合了不同形式的心脏重构的知识,以提出关于分解代谢和合成代谢葡萄糖代谢之间关系如何增强心脏健康或促进(适应不良的)心肌重构的一般模型。基于关系生物学的概念框架的采用可能会进一步理解代谢如何调节心脏结构和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/101f/6023588/b1f4425eda01/res-123-107-g001.jpg

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