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LACTATE IN CARDIOGENIC SHOCK - CURRENT UNDERSTANDING AND CLINICAL IMPLICATIONS

机译:乳酸致癌休克-当前的认识及其临床意义。

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Adenosine triphosphate (ATP) is an essential substrate metabolite in human beings. Mitochondrial oxidative phosphorylation provides > 95% of ATP with the remainder derived from glycolysis or tricarboxylic acid cycle (TCA). In normal hearts, acetyl-CoA is synthesized from the b-oxidation of free fatty acids (FFA) and the oxidation of pyruvate. Pyruvate is synthesized from glycolysis and can be submitted either for decarboxylation to acetyl-CoA or for dehydrogenation to lactate. Moreover, pyruvate,as well as lactate, plays a key role in aerobic glucose metabolism which is highly dependent on ubiquitous regulatory mechanisms. Many recent advances in molecular biology, genetics, and physiology have revealed new insights into the metabolic flux of lactate. The initial perception characterized by increased lactate production and accumulation in peripheral tissues in anaerobic conditions has been recently contested. The paradigm of increased lactate concentration in the anaerobic setting is discussed according to contemporary reports. Nevertheless, the clinical role of lactate as a prognostic factor in cardiovascular diseases is undisturbed, especially in the field of innovative technology of left/bi ventricular-assist devices and biochips where it reassured its diagnostic and prognostic impact on the cardiovascular system.
机译:三磷酸腺苷(ATP)是人类必需的底物代谢产物。线粒体氧化磷酸化可提供> 95%的ATP,其余部分则来自糖酵解或三羧酸循环(TCA)。在正常心脏中,乙酰辅酶A由游离脂肪酸的b-氧化(FFA)和丙酮酸的氧化合成。丙酮酸是由糖酵解合成的,可以脱羧成乙酰辅酶A或脱氢成乳酸。此外,丙酮酸以及乳酸盐在有氧葡萄糖代谢中起关键作用,这高度依赖于普遍存在的调节机制。分子生物学,遗传学和生理学的许多最新进展揭示了对乳酸代谢通量的新见解。最近人们对以厌氧条件下乳酸产生和周围组织中乳酸的积累增加为特征的初步认识。根据当代报道,讨论了在厌氧环境中增加乳酸浓度的范例。然而,乳酸作为心血管疾病的预后因素的临床作用并未受到干扰,尤其是在左/双心室辅助设备和生物芯片的创新技术领域中,乳酸可确保其对心血管系统的诊断和预后影响。

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