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Pathobiochemical Changes in Diabetic Skeletal Muscle as Revealed by Mass-Spectrometry-Based Proteomics

机译:基于质谱的蛋白质组学揭示了糖尿病骨骼肌的病理生化变化

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摘要

Insulin resistance in skeletal muscle tissues and diabetes-related muscle weakness are serious pathophysiological problems of increasing medical importance. In order to determine global changes in the protein complement of contractile tissues due to diabetes mellitus, mass-spectrometry-based proteomics has been applied to the investigation of diabetic muscle. This review summarizes the findings from recent proteomic surveys of muscle preparations from patients and established animal models of type 2 diabetes. The potential impact of novel biomarkers of diabetes, such as metabolic enzymes and molecular chaperones, is critically examined. Disease-specific signature molecules may be useful for increasing our understanding of the molecular and cellular mechanisms of insulin resistance and possibly identify new therapeutic options that counteract diabetic abnormalities in peripheral organ systems. Importantly, the biomedical establishment of biomarkers promises to accelerate the development of improved diagnostic procedures for characterizing individual stages of diabetic disease progression, including the early detection of prediabetic complications.
机译:骨骼肌组织中的胰岛素抵抗和糖尿病相关的肌肉无力是严重的病理生理问题,具有越来越重要的医学意义。为了确定由于糖尿病引起的收缩组织蛋白质补体的整体变化,基于质谱的蛋白质组学已被应用于糖尿病肌肉的研究。这篇综述总结了来自患者肌肉制备物的蛋白质组学调查和已建立的2型糖尿病动物模型的发现。严格审查了糖尿病的新型生物标志物,如代谢酶和分子伴侣的潜在影响。特定于疾病的特征分子可能有助于增进我们对胰岛素抵抗的分子和细胞机制的了解,并可能确定新的治疗选择,以抵消周围器官系统中的糖尿病异常。重要的是,生物标志物的生物医学建立有望加速开发改进的诊断程序,以表征糖尿病疾病进展的各个阶段,包括早期发现糖尿病前期并发症。

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