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代谢功能障碍仅局限于实验性糖尿病神经病变的坐骨神经。

Metabolic Dysfunction Is Restricted to the Sciatic Nerve in Experimental Diabetic Neuropathy.

机构信息

Faculty of Life Sciences, The University of Manchester, Manchester, U.K. Centre for Advanced Discovery and Experimental Therapeutics (CADET), Central Manchester University Hospitals NHS Foundation Trust, Manchester Academic Health Science Centre, Manchester, U.K.

Centre for Advanced Discovery and Experimental Therapeutics (CADET), Central Manchester University Hospitals NHS Foundation Trust, Manchester Academic Health Science Centre, Manchester, U.K. Centre for Endocrinology and Diabetes, Institute of Human Development, Faculty of Medical and Human Sciences, The University of Manchester, Manchester, U.K.

出版信息

Diabetes. 2016 Jan;65(1):228-38. doi: 10.2337/db15-0835. Epub 2015 Oct 15.

Abstract

High glucose levels in the peripheral nervous system (PNS) have been implicated in the pathogenesis of diabetic neuropathy (DN). However, our understanding of the molecular mechanisms that cause the marked distal pathology is incomplete. We performed a comprehensive, system-wide analysis of the PNS of a rodent model of DN. We integrated proteomics and metabolomics from the sciatic nerve (SN), the lumbar 4/5 dorsal root ganglia (DRG), and the trigeminal ganglia (TG) of streptozotocin-diabetic and healthy control rats. Even though all tissues showed a dramatic increase in glucose and polyol pathway intermediates in diabetes, a striking upregulation of mitochondrial oxidative phosphorylation and perturbation of lipid metabolism was found in the distal SN that was not present in the corresponding cell bodies of the DRG or the cranial TG. This finding suggests that the most severe molecular consequences of diabetes in the nervous system present in the SN, the region most affected by neuropathy. Such spatial metabolic dysfunction suggests a failure of energy homeostasis and/or oxidative stress, specifically in the distal axon/Schwann cell-rich SN. These data provide a detailed molecular description of the distinct compartmental effects of diabetes on the PNS that could underlie the distal-proximal distribution of pathology.

摘要

外周神经系统(PNS)中的高葡萄糖水平与糖尿病周围神经病变(DN)的发病机制有关。然而,我们对导致明显远端病变的分子机制的理解并不完整。我们对糖尿病啮齿动物模型的 PNS 进行了全面的、系统范围的分析。我们整合了来自坐骨神经(SN)、腰椎 4/5 背根神经节(DRG)和三叉神经节(TG)的蛋白质组学和代谢组学数据,来自链脲佐菌素糖尿病大鼠和健康对照组大鼠。尽管所有组织在糖尿病中均表现出葡萄糖和多元醇途径中间产物的急剧增加,但在远端 SN 中发现了惊人的线粒体氧化磷酸化上调和脂质代谢紊乱,而在相应的 DRG 或颅 TG 细胞体中则没有发现这种情况。这一发现表明,糖尿病在神经系统中最严重的分子后果存在于 SN 中,即受神经病变影响最严重的区域。这种空间代谢功能障碍表明能量平衡和/或氧化应激出现了特定的故障,特别是在富含轴突/许旺细胞的远端 SN 中。这些数据提供了对 PNS 糖尿病的不同隔室效应的详细分子描述,这可能是病理学远端-近端分布的基础。

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