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Diabetes-related alterations in the enteric nervous system and its microenvironment

机译:肠神经系统及其微环境中与糖尿病相关的改变

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摘要

Gastric intestinal symptoms common among diabetic patients are often caused by intestinal motility abnormalities related to enteric neuropathy. It has recently been demonstrated that the nitrergic subpopulation of myenteric neurons are especially susceptible to the development of diabetic neuropathy. Additionally, different susceptibility of nitrergic neurons located in different intestinal segments to diabetic damage and their different levels of responsiveness to insulin treatment have been revealed. These findings indicate the importance of the neuronal microenvironment in the pathogenesis of diabetic nitrergic neuropathy. The main focus of this review therefore was to summarize recent advances related to the diabetes-related selective nitrergic neuropathy and associated motility disturbances. Special attention was given to the findings on capillary endothelium and enteric glial cells. Growing evidence indicates that capillary endothelium adjacent to the myenteric ganglia and enteric glial cells surrounding them are determinative in establishing the ganglionic microenvironment. Additionally, recent advances in the development of new strategies to improve glycemic control in type 1 and type 2 diabetes mellitus are also considered in this review. Finally, looking to the future, the recent and promising results of metagenomics for the characterization of the gut microbiome in health and disease such as diabetes are highlighted.
机译:糖尿病患者常见的胃肠症状通常是由与肠神经病相关的肠动力异常引起的。最近已经证明,肌层神经元的硝化亚群特别容易发生糖尿病性神经病。此外,已经揭示了位于不同肠段的硝化神经元对糖尿病损害的敏感性不同,以及它们对胰岛素治疗的反应水平不同。这些发现表明,神经元微环境在糖尿病性硝化神经病发病机理中的重要性。因此,本综述的主要重点是概述与糖尿病相关的选择性硝化神经病和相关的运动障碍有关的最新进展。对毛细血管内皮和肠神经胶质细胞的发现给予了特别关注。越来越多的证据表明,与肌管神经节相邻的毛细血管内皮和周围的肠神经胶质细胞在建立神经节微环境中起着决定性作用。此外,本评价还考虑了改善1型和2型糖尿病患者血糖控制的新策略开发的最新进展。最后,展望未来,重点介绍了宏基因组学在健康和疾病(例如糖尿病)中表征肠道微生物组的最新且有希望的结果。

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