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神经元和神经胶质细胞异常作为糖尿病视网膜病变进展的预测指标。

Neuronal and glial cell abnormality as predictors of progression of diabetic retinopathy.

作者信息

Fletcher Erica L, Phipps Joanna A, Ward Michelle M, Puthussery Theresa, Wilkinson-Berka Jennifer L

机构信息

Department of Anatomy and Cell Biology, The University of Melbourne, Grattan St. Parkville 3010 Victoria, Australia.

出版信息

Curr Pharm Des. 2007;13(26):2699-712. doi: 10.2174/138161207781662920.

Abstract

Diabetes is known to cause significant alterations in the retinal vasculature. Indeed, diabetic retinopathy is the leading cause of blindness in those of working age. Considerable evidence is emerging that indicates that retinal neurons are also altered during diabetes. Moreover, many types of neuronal deficits have been observed in animal models and patients prior to the onset of vascular compromise. Such clinical tools as the flash ERG, multifocal ERG, colour vision, contrast sensitivity and short-wavelength automated perimetry, all provide novel means whereby neuronal dysfunction can be detected at early stages of diabetes. The underlying mechanisms that lead to neuronal deficits are likely to be broad. Retinal glial cells play an essential role in maintaining the normal function of the retina. There is accumulating evidence that Müller cells are abnormal during diabetes. They are known to become gliotic, display altered potassium siphoning, glutamate and GABA uptake and are also known to express several modulators of angiogenesis. This review will examine the evidence that neurons and glia are altered during diabetes and the relationship these changes have with vascular compromise.

摘要

众所周知,糖尿病会导致视网膜血管发生显著改变。事实上,糖尿病视网膜病变是劳动年龄人群失明的主要原因。越来越多的证据表明,糖尿病期间视网膜神经元也会发生改变。此外,在血管受损之前,动物模型和患者中已观察到多种类型的神经元缺陷。诸如闪光视网膜电图、多焦视网膜电图、色觉、对比敏感度和短波自动视野检查等临床工具,都提供了新的方法,可在糖尿病早期检测到神经元功能障碍。导致神经元缺陷的潜在机制可能是多种多样的。视网膜神经胶质细胞在维持视网膜的正常功能中起着至关重要的作用。越来越多的证据表明,糖尿病期间米勒细胞会出现异常。已知它们会发生胶质化,表现出钾离子转运、谷氨酸和γ-氨基丁酸摄取的改变,并且还已知会表达几种血管生成调节剂。本综述将研究糖尿病期间神经元和神经胶质发生改变的证据,以及这些变化与血管受损之间的关系。

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