Müller cell‐derived VEGF is a significant contributor to retinal neovascularization

视网膜 视网膜 血管内皮生长因子 早产儿视网膜病变 条件基因敲除 新生血管 血管内皮生长因子A 脉络膜新生血管 黄斑变性 生物 病理 医学 血管生成 眼科 癌症研究 神经科学 生物化学 血管内皮生长因子受体 遗传学 怀孕 基因 表型 胎龄
作者
Yanyan Bai,Jian‐xing Ma,Junjing Guo,Juanjuan Wang,Meili Zhu,Ying Chen,Yun‐Zheng Le
出处
期刊: 卷期号:219 (4): 446-454 被引量:245
标识
DOI:10.1002/path.2611
摘要

Abstract Vascular endothelial growth factor (VEGF‐A) is a major pathogenic factor and a therapeutic target for age‐related macular degeneration, diabetic retinopathy, and retinopathy of prematurity. Despite intensive effort in the field, the cellular mechanisms of VEGF action remain virtually uninvestigated. This situation makes it difficult to design cellular target‐based therapeutics for these diseases. In light of the recent finding that VEGF is a potential neurotrophic factor, revealing the cellular mechanisms of VEGF action becomes necessary to preserve its beneficial effect and inhibit its pathological function in long‐term anti‐VEGF therapeutics for ocular vascular diseases. We therefore generated conditional VEGF knockout mice with an inducible Cre/ lox system and determined the significance of Müller cell‐derived VEGF in retinal development and maintenance and ischaemia‐induced neovascularizartion and vascular leakage. Retinal development in the conditional VEGF knockout mice was analysed by examining retinal and choroidal vasculatures and retinal morphology and function. Ischaemia‐induced retinal neovascularization and vascular leakage in the conditional VEGF knockout mice were analysed with fluorescein angiography, quantification of proliferative neovascular cells, immunohistochemistry, and immunoblotting using an oxygen‐induced retinopathy model. Our results demonstrated that disruption of Müller cell‐derived VEGF resulted in no apparent defects in retinal and choroidal vasculatures and retinal morphology and function, significant inhibition of the ischaemia‐induced retinal neovascularization and vascular leakage, and attenuation of the ischaemia‐induced breakdown of the blood‐retina barrier. These results suggest that the retinal Müller cell‐derived VEGF is a major contributor to ischaemia‐induced retinal vascular leakage and pre‐retinal and intra‐retinal neovascularization. The observation that a significant, but not complete, reduction of VEGF in the retina does not cause detectable retinal degeneration suggests that appropriate doses of anti‐VEGF agents may be important to the safe treatment of retinal vascular diseases. Copyright © 2009 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
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