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Basic Fibroblast Growth Factor Is Neither Necessary nor Sufficient for the Development of Retinal Neovascularization

机译:基本的成纤维细胞生长因子对于视网膜新血管形成的发展既不是必需的也不是充分的

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摘要

Basic fibroblast growth factor (FGF2) is constitutively expressed in the retina and its expression is increased by a number of insults, but its role in the retina is still uncertain. This study was designed to test the hypothesis that altered expression of FGF2 in the retina affects the development of retinal neovascularization. Mice with targeted disruption of the Fgf2 gene had no detectable expression of FGF2 in the retina by Western blot, but retinal vessels were not different in appearance or total area from wild-type mice. When FGF2-deficient mice were compared with wild-type mice in a murine model of oxygen-induced ischemic retinopathy, they developed the same amount of retinal neovascularization. Transgenic mice with a rhodopsin promoter/Fgf2 gene fusion expressed high levels of FGF2 in retinal photoreceptors but developed no retinal neovascularization or other abnormalities of retinal vessels; in the ischemic retinopathy model, they showed no significant difference in the amount of retinal neovascularization compared with wild-type mice. These data indicate that FGF2 expression is not necessary nor sufficient for the development of retinal neovascularization. This suggests that agents that specifically antagonize FGF2 are not likely to be useful adjuncts in the treatment of retinal neovascularization and therapies designed to increase FGF2 expression are not likely to be complicated by retinal neovascularization.
机译:碱性成纤维细胞生长因子(FGF2)在视网膜中组成性表达,并且其表达因多次侮辱而增加,但其在视网膜中的作用仍不确定。这项研究旨在检验假说,即视网膜中FGF2表达的改变会影响视网膜新血管形成的发展。通过Western印迹,具有针对性破坏Fgf2基因的小鼠在视网膜中未检测到FGF2表达,但视网膜血管的外观或总面积与野生型小鼠没有差异。当在氧诱导的缺血性视网膜病的小鼠模型中将FGF2缺陷小鼠与野生型小鼠进行比较时,它们会产生相同数量的视网膜新血管形成。具有视紫红质启动子/ Fgf2基因融合的转基因小鼠在视网膜感光细胞中表达高水平的FGF2,但未发生视网膜新血管形成或视网膜血管其他异常。在缺血性视网膜病模型中,与野生型小鼠相比,他们的视网膜新血管形成量没有显着差异。这些数据表明FGF2表达对于视网膜新血管形成的发展不是必需的也不是足够的。这表明,特异性拮抗FGF2的药物在视网膜新血管形成的治疗中不太可能是有用的辅助剂,而设计用于增加FGF2表达的疗法不太可能与视网膜新血管形成并发。

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