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Branched-chain amino acids as biomarkers in diabetes

机译:支链氨基酸作为糖尿病的生物标志物

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Purpose of reviewNumerous human studies have consistently demonstrated that concentrations of branched-chain amino acids (BCAAs) in plasma and urine are associated with insulin resistance and have the quality to predict diabetes development. However, it is not known how altered BCAA levels link to insulin action and diabetes. This review addresses some recent findings in BCAA metabolism and discusses their role as reporter molecules of insulin sensitivity and diabetes and their possible contribution to disease progression.Recent findingsChanges in plasma and urine levels result mainly from altered metabolism in tissues and recent studies have thus focused on organ-specific changes in BCAA handling using animal models and human tissue samples. A decreased mitochondrial oxidation has been demonstrated in peripheral tissues and that was shown to be associated with an increased inflammatory tone and changes in adipokine levels (adiponectin and leptin). These changes appear already before insulin resistance is established. Key findings demonstrating the discordance between changes in BCAA and insulin resistance are derived from studies using insulin sensitizers and from data collected in patients undergoing Roux-en-Y bypass bariatric surgery. Intermediates derived from BCAA breakdown rather than BCAA itself were recently proposed to contribute to the development of insulin resistance and studies now explore the biomarker qualities of these metabolites.SummaryUnderstanding the mechanisms and putative causalities in the alterations in BCAA levels as found in obesity, metabolic syndrome and diabetes is crucial for any intervention options but also for the use of BCAA and derivatives as biomarkers in clinical routine.
机译:审查目的许多人体研究一致表明,血浆和尿液中支链氨基酸(BCAA)的浓度与胰岛素抵抗相关,并且具有预测糖尿病发展的质量。但是,尚不知道改变的BCAA水平如何与胰岛素作用和糖尿病相关。本文综述了BCAA代谢中的一些最新发现,并讨论了其作为胰岛素敏感性和糖尿病的报告分子的作用及其对疾病进展的可能贡献。使用动物模型和人体组织样本进行的BCAA处理中器官特定的变化。在周围组织中已证明线粒体氧化减少,这表明与炎性信号增加和脂肪因子水平(脂联素和瘦素)的变化有关。这些变化在建立胰岛素抵抗之前就已经出现。证明BCAA变化与胰岛素抵抗之间不一致的主要发现来自使用胰岛素敏化剂的研究以及来自接受Roux-en-Y旁路减肥手术的患者的数据。最近有人提出了从BCAA分解而不是BCAA本身衍生的中间体来促进胰岛素抵抗的发展,现在研究正在研究这些代谢物的生物标志物质量。总结了解肥胖,代谢综合征中BCAA水平变化的机理和推测的因果关系糖尿病对于任何干预措施都是至关重要的,而且对于在临床常规中使用BCAA和衍生物作为生物标记物也至关重要。

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