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Metabolismin cardiomyopathy: every substrate matters

机译:心肌病的新陈代谢:每个基板都很重要

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Cardiac metabolism is highly adaptive to changes in fuel availability and the energy demand of the heart. This metabolic flexibility is key for the heart to maintain its output during the development and in response to stress. Alterations in substrate preference have been observed in multiple disease states; a clear understanding of their impact on cardiac function in the long term is critical for the development of metabolic therapies. In addition, the contribution of cellular metabolism to growth, survival, and other signalling pathways through the generation of metabolic intermediates has been increasingly noted, adding another layer of complexity to the impact of metabolism on cardiac function. In a quest to understand the complexity of the cardiac metabolic network, genetic tools have been engaged to manipulate cardiac metabolism in a variety of mouse models. The ability to engineer cardiac metabolism in vivo has provided tremendous insights and brought about conceptual innovations. In this review, we will provide an overview of the cardiac metabolic network and highlight alterations observed during cardiac development and pathological hypertrophy. We will focus on consequences of altered substrate preference on cardiac response to chronic stresses through energy providing and non-energy providing pathways.
机译:心脏代谢对燃料可用性和心脏能量需求的变化很自适应。这种代谢灵活性是心脏在开发过程中保持其产量和应对压力的关键。在多种疾病状态下观察到底物偏好的改变;在长期内清楚地了解他们对心脏功能的影响对于新陈代谢治疗的发展至关重要。此外,通过产生代谢中间体的细胞代谢对生长,存活和其他信号通路的贡献已经越来越命了,添加了另一种复杂性对代谢对心脏功能的影响。在寻求了解心脏代谢网络的复杂性中,遗传工具已经开始操纵各种小鼠模型中的心脏代谢。在体内工程心脏代谢的能力为概念创新提供了巨大的见解。在本综述中,我们将提供心脏代谢网络的概述,并在心脏发育和病理肥大期间观察到的突出改变。我们将专注于通过能量提供和非能量提供途径对血管反应对慢性应力的改变对慢性应激的后果。

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