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Neurodegeneration: An early event of diabetic retinopathy

机译:神经变性:糖尿病视网膜病变的早期事件

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摘要

Diabetic retinopathy (DR) has been classically considered to be a microcirculatory disease of the retina caused by the deleterious metabolic effects of hyperglycemia per se and the metabolic pathways triggered by hyperglycemia. However, retinal neurodegeneration is already present before any microcirculatory abnormalities can be detected in ophthalmoscopic examination. In other words, retinal neurodegeneration is an early event in the pathogenesis of DR which predates and participates in the microcirculatory abnormalities that occur in DR. Therefore, the study of the mechanisms that lead to neurodegeneration will be essential to identify new therapeutic targets in the early stages of DR. Elevated levels of glutamate and the overexpression of the renin- angiotensin-system play an essential role in the neurodegenerative process that occurs in diabetic retina. Among neuroprotective factors, pigment epithelial derived factor, somatostatin and erythropoietin seem to be the most relevant and these will be considered in this review. Nevertheless, it should be noted that the balance between neurotoxic and neuroprotective factors rather than levels of neurotoxic factors alone will determine the presence or absence of retinal neurodegeneration in the diabetic eye. New strategies, based on either the delivery of neuroprotective agents or the blockade of neurotoxic factors, are currently being tested in experimental models and in clinical pilot studies. Whether these novel therapies will eventually supplement or prevent the need for laser photocoagulation or vitrectomy awaits the results of additional clinical research.
机译:糖尿病性视网膜病(DR)通常被认为是由高血糖本身的有害代谢作用和高血糖引发的代谢途径引起的视网膜微循环系统疾病。但是,在眼底镜检查中发现任何微循环异常之前,已经存在视网膜神经变性。换句话说,视网膜神经变性是DR发病的早期事件,其早于并参与DR中发生的微循环异常。因此,对导致神经退行性变的机制的研究对于在DR的早期确定新的治疗靶点至关重要。谷氨酸水平的升高和肾素-血管紧张素系统的过度表达在糖尿病视网膜发生的神经变性过程中起着至关重要的作用。在神经保护因子中,色素上皮衍生因子,生长抑素和促红细胞生成素似乎是最相关的,因此本文将考虑这些因素。尽管如此,应该指出的是,在神经毒性和神经保护因子之间的平衡,而不是单独的神经毒性因子的水平,将决定糖尿病眼中视网膜神经变性的存在与否。目前正在实验模型和临床试验研究中测试基于神经保护剂传递或神经毒性因子阻断的新策略。这些新疗法是否最终将补充或阻止对激光光凝术或玻璃体切除术的需要,还需要其他临床研究的结果。

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