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[关于糖尿病性神经病变发病机制的当代观点]

[Contemporary views on the pathogenesis of diabetic neuropathy].

作者信息

Pierzchala K

机构信息

II Katedry i Kliniki Neurologii, Slaskiej Akademii Medycznej w Katowicach.

出版信息

Wiad Lek. 1998;51 Suppl 2:30-4.

PMID:9686530
Abstract

The duration of diabetes, age and genetic predispositions are admitted agents of risk in diabetic neuropathy. The reasons of diabetic neuropathy are suspected in cooperation with various factors among which metabolic disturbances and ischaemia are the most important. The abnormal activation of sorbitol tract is very significant agent of development of diabetic neuropathy. The excess of sorbitol which is accumulating also in nervous tissue causes its damage in osmotic way. At the same time decreasing concentration of myoinositol reduces ATP-ase Na+/K+ activity which is important in impulse conduction. The overproduction of free oxygenic radical (oxidative lesion) and nitrogen oxide (vasodilator) deficiency is inducted by hyperglycaemia and the activation of aldolase reductase. Metabolic disturbances cause the decrease of carnitine concentration what deteriorates nerve sensitivity on growth factor. The activation of sorbitol tract leads to nonenzymatic proteins glycation which causes thickening of basement membrane and proliferation of endothelium cells. In this way increased vascular resistance decreases tissue perfusion and induces nerve hypoxia. The impairment of nerve blood supply depends on altered in diabetes rheological properties. They are inconveniently changed through hyperglycaemia, hyperlypidaemia, dysproteinaemia and excessive aggregation and rigidity of morphotic elements of blood.

摘要

糖尿病病程、年龄和遗传易感性被认为是糖尿病神经病变的风险因素。糖尿病神经病变的病因被怀疑与多种因素有关,其中代谢紊乱和缺血最为重要。山梨醇途径的异常激活是糖尿病神经病变发展的重要因素。在神经组织中积累的过量山梨醇以渗透方式导致其损伤。同时,肌醇浓度降低会降低对冲动传导很重要的ATP酶Na+/K+活性。高血糖和醛糖还原酶的激活会导致游离氧自由基的过量产生(氧化损伤)和一氧化氮(血管扩张剂)缺乏。代谢紊乱会导致肉碱浓度降低,从而降低神经对生长因子的敏感性。山梨醇途径的激活会导致非酶蛋白糖基化,从而导致基底膜增厚和内皮细胞增殖。这样,血管阻力增加会降低组织灌注并导致神经缺氧。神经血液供应受损取决于糖尿病患者血液流变学特性的改变。它们会因高血糖、高血脂、蛋白异常血症以及血液形态成分的过度聚集和僵硬而发生不利变化。

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