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2型糖尿病患者的皮肤微循环动力学及其调节机制

Skin Microhemodynamics and Mechanisms of Its Regulation in Type 2 Diabetes Mellitus.

作者信息

Tikhonova I V, Grinevich A A, Tankanag A V, Safronova V G

机构信息

Institute of Cell Biophysics, Russian Academy of Sciences, 142290 Pushchino, Moscow oblast Russia.

出版信息

Biophysics (Oxf). 2022;67(4):647-659. doi: 10.1134/S0006350922040200. Epub 2022 Oct 19.

Abstract

The review presents modern ideas about peripheral microhemodynamics, approaches to the ana-lysis of skin blood flow oscillations and their diagnostic significance. Disorders of skin microhemodynamics in type 2 diabetes mellitus (DM) and the possibility of their interpretation from the standpoint of external and internal interactions between systems of skin blood flow regulation, based on a comparison of couplings in normal and pathological conditions, including models of pathologies on animals, are considered. The factors and mechanisms of vasomotor regulation, among them receptors and signaling events in endothelial and smooth muscle cells considered as models of microvessels are discussed. Attention was drawn to the disturbance of Ca-dependent regulation of coupling between vascular cells and NO-dependent regulation of vasodilation in diabetes mellitus. The main mechanisms of insulin resistance in type 2 DM are considered to be a defect in the number of insulin receptors and impaired signal transduction from the receptor to phosphatidylinositol-3-kinase and downstream targets. Reactive oxygen species plays an important role in vascular dysfunction in hyperglycemia. It is assumed that the considered molecular and cellular mechanisms of microhemodynamics regulation are involved in the formation of skin blood flow oscillations. Parameters of skin blood microcirculation can be used as diagnostic and prognostic markers for assessing the state of the body.

摘要

本综述介绍了关于外周微循环动力学的现代观点、皮肤血流振荡分析方法及其诊断意义。探讨了2型糖尿病(DM)患者皮肤微循环动力学紊乱情况,以及基于正常和病理状态下(包括动物病理模型)皮肤血流调节系统内外相互作用的角度对其进行解读的可能性。讨论了血管舒缩调节的因素和机制,其中将内皮细胞和平滑肌细胞中的受体及信号事件视为微血管模型进行了探讨。研究关注了糖尿病中钙依赖的血管细胞间偶联调节紊乱以及一氧化氮依赖的血管舒张调节紊乱。2型糖尿病中胰岛素抵抗的主要机制被认为是胰岛素受体数量缺陷以及受体到磷脂酰肌醇-3激酶及下游靶点的信号转导受损。活性氧在高血糖导致的血管功能障碍中起重要作用。据推测,所考虑的微循环动力学调节的分子和细胞机制参与了皮肤血流振荡的形成。皮肤微循环参数可作为评估身体状况的诊断和预后标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e975/9581453/240a7bb3b416/11439_2022_9565_Fig1_HTML.jpg

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