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[糖尿病中大脑生物胺和乙酰胆碱调节信号系统的功能状态]

[The functional state of biogenic amines- and acetylcholine-regulated signaling systems of the brain in diabetes mellitus].

作者信息

Shpakov A O

出版信息

Tsitologiia. 2012;54(6):459-68.

Abstract

The role of hormonal signaling systems in the etiology and pathogenesis of diabetes mellitus (DM) and the neurodegenerative diseases induced by them is currently poorly understood. It is generally accepted that the main causes of diabetes of types 1 and 2 and their CNS complications are disturbances in signaling systems regulated by insulin, leptin and glutamate. However, in recent years, there are many evidences in favor of participation of the brain signaling systems regulated by biogenic amines and cholinergic receptor agonists in the development of these diseases. The alterations in the expression and functional activity of signal proteins, the components of these systems, as well as the disturbances of the biosynthesis, transport and degradation of signal molecules for their regulation contribute significantly to the pathological processes in the brain in DM, and in some cases themselves are a trigger for the development of this disease. The main factors that cause dysfunctions of dopaminergic, serotonergic, adrenergic and cholinergic systems of the brain in DM are hyperglycemia and insulin resistance, and hypoglycemia that occurs as a result of inadequate insulin therapy. This review is devoted to the functional state of the brain signaling systems regulated by biogenic amines and cholinergic agonists in DM, as well as the relationship between the changes in these systems and the development of neurodegenerative processes in the diabetic brain.

摘要

目前,激素信号系统在糖尿病(DM)及其引发的神经退行性疾病的病因和发病机制中的作用尚不清楚。人们普遍认为,1型和2型糖尿病及其中枢神经系统并发症的主要原因是胰岛素、瘦素和谷氨酸调节的信号系统紊乱。然而,近年来,有许多证据支持由生物胺和胆碱能受体激动剂调节的脑信号系统参与了这些疾病的发展。信号蛋白(这些系统的组成部分)的表达和功能活性的改变,以及用于其调节的信号分子的生物合成、运输和降解的紊乱,在糖尿病患者的大脑病理过程中起了重要作用,在某些情况下,这些改变本身就是该疾病发展的触发因素。导致糖尿病患者大脑中多巴胺能、5-羟色胺能、肾上腺素能和胆碱能系统功能障碍的主要因素是高血糖和胰岛素抵抗,以及胰岛素治疗不足导致的低血糖。本综述致力于探讨生物胺和胆碱能激动剂调节的脑信号系统在糖尿病中的功能状态,以及这些系统的变化与糖尿病性脑病中神经退行性过程发展之间的关系。

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