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Novel pathogenic pathways in diabetic neuropathy

机译:糖尿病神经病的新型致病途径

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Diabetic peripheral neuropathy (DPN) is a common complication affecting more than one third of diabetes mellitus (DM) patients. Although all cellular components participating in peripheral nerve function are exposed to and affected by the metabolic consequences of DM, nodal regions, areas of intense interactions between Schwann cells and axons, may be particularly sensitive to DM-induced alterations. Nodes are enriched in insulin receptors, glucose transporters, Na+ and K+ channels, and mitochondria, all implicated in the development and progression of DPN. Latest results particularly reinforce the idea that changes in ion-channel function and energy metabolism, both of which depend on axon-glia crosstalk, are among the important contributors to DPN. These insights provide a basis for new therapeutic approaches aimed at delaying or reversing DPN.
机译:糖尿病周围神经病变(DPN)是一种常见的并发症,影响了三分之一以上的糖尿病(DM)患者。尽管参与外周神经功能的所有细胞成分均暴露于DM并受其代谢影响,但结节区域,雪旺细胞与轴突之间强烈相互作用的区域可能对DM诱导的变化特别敏感。淋巴结富含胰岛素受体,葡萄糖转运蛋白,Na +和K +通道以及线粒体,所有这些都与DPN的发展和进程有关。最新的结果特别强调了离子通道功能和能量代谢的变化,这两者均取决于轴突-神经胶质细胞的串扰,是DPN的重要贡献者。这些见解为旨在延迟或逆转DPN的新治疗方法提供了基础。

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