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A 'pET' area of interest: Myocardial metabolism in human systolic heart failure

机译:感兴趣的“ pET”领域:人类收缩性心力衰竭中的心肌代谢

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Myocardial substrate metabolism provides the energy needed for cardiac contraction and relaxation. The normal adult heart uses predominantly fatty acids (FAs) as its primary fuel source. However, the heart can switch and use glucose (and to a lesser extent, ketones, lactate, as well as endogenous triglycerides and glycogen), depending on the metabolic milieu and superimposed conditions. FAs are not a wholly better fuel than glucose, but they do provide more energy per mole than glucose. Conversely, glucose is the more oxygen-efficient fuel. Studies in animal models of heart failure (HF) fairly consistently demonstrate a shift away from myocardial fatty acid metabolism and toward glucose metabolism. Studies in humans are less consistent. Some show the same metabolic switch away from FA metabolism but not all. This may be due to differences in the etiology of HF, sex-related differences, or other mitigating factors. For example, obesity, insulin resistance, and diabetes are all related to an increased risk of HF and may complicate or contribute to its development. However, these conditions are associated with increased FA metabolism. This review will discuss aspects of human heart metabolism in systolic dysfunction as measured by the noninvasive, quantitative method - positron emission tomography. Continued research in this area is vital if we are to ameliorate HF by manipulating heart metabolism with the aim of increasing energy production and/or efficiency.
机译:心肌底物代谢提供心脏收缩和舒张所需的能量。正常的成年人心脏主要使用脂肪酸(FAs)作为其主要燃料来源。但是,根据代谢环境和叠加条件,心脏可以转换和使用葡萄糖(在较小程度上,是酮,乳酸盐以及内源性甘油三酸酯和糖原)。 FA并不是比葡萄糖完全更好的燃料,但每摩尔确实比葡萄糖提供更多的能量。相反,葡萄糖是氧气效率更高的燃料。对心力衰竭(HF)的动物模型进行的研究相当一致地证明了从心肌脂肪酸代谢向葡萄糖代谢的转变。对人类的研究不太一致。有些显示出与FA代谢相同的代谢转换,但不是全部。这可能是由于HF的病因学差异,性别相关差异或其他缓解因素所致。例如,肥胖,胰岛素抵抗和糖尿病都与HF的风险增加有关,并且可能使其复杂化或对其发展做出贡献。但是,这些情况与FA代谢增加有关。这篇综述将讨论通过无创,定量方法-正电子发射断层摄影术测量的心脏心脏收缩功能障碍中新陈代谢的各个方面。如果我们要通过控制心脏新陈代谢来改善心力衰竭,以增加能量产生和/或效率,这一领域的持续研究至关重要。

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