Prakash Gunjan, Agrawal Rachit, Natung Tanie
Upgraded Department of Ophthalmology, S.N Medical College, Room No. 186, SBH, Agra, 282002 India.
North Eastern Indira Gandhi Regional Institute Of Health and Medical Sciences, Shillong, India.
Indian J Clin Biochem. 2017 Mar;32(1):3-8. doi: 10.1007/s12291-016-0560-2. Epub 2016 Mar 8.
Retinal diseases are significant by increasing problem in every part of the world. While excellent treatment has emerged for various retinal diseases, treatment for early disease is lacking due to an incomplete understanding of all molecular events. With aging, there is a striking accumulation of neutral lipids in Bruch's membrane. These neutral lipids leads to the creation of a lipid wall at the same locations where drusen and basal linear deposit, pathognomonic lesions of Age-related macular degeneration, subsequently form. High lipid levels are also known to cause endothelial dysfunction, an important factor in the pathogenesis of Diabetic Retinopathy. Various studies suggest that 20 % of Retinal Vascular Occlusion is connected to hyperlipidemia. Biochemical studies have implicated mutation in gene encoding ABCA4, a lipid transporter in pathogenesis of Stargardt disease. This article reviews how systemic and local production of lipids might contribute to the pathogenesis of above retinal disorders.
视网膜疾病在世界各个地区日益增多,已成为一个重大问题。尽管针对各种视网膜疾病已经出现了出色的治疗方法,但由于对所有分子事件的理解不完整,早期疾病的治疗仍很缺乏。随着年龄的增长,布鲁赫膜中中性脂质显著积累。这些中性脂质会在随后形成玻璃膜疣和基底线性沉积物(年龄相关性黄斑变性的特征性病变)的相同位置形成脂质壁。高脂水平还已知会导致内皮功能障碍,这是糖尿病视网膜病变发病机制中的一个重要因素。各种研究表明,20%的视网膜血管阻塞与高脂血症有关。生化研究表明,编码ABCA4(一种脂质转运蛋白)的基因突变与斯塔加特病的发病机制有关。本文综述了脂质的全身和局部产生可能如何导致上述视网膜疾病的发病机制。