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An Acute Retinal Model for Evaluating Blood Retinal Barrier Breach and Potential Drugs for Treatment

机译:急性视网膜模型评估血液视网膜屏障破坏和潜在的治疗药物

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摘要

A low-cost, easy-to-use and powerful model system is established to evaluate potential treatments that could ameliorate blood retinal barrier breach. An inflammatory factor, histamine, is demonstrated to compromise vessel integrity in the cultured retina through positive staining of IgG outside of the blood vessels. The effects of histamine itself and those of candidate drugs for potential treatments, such as lipoxin A4, are assessed using three parameters: blood vessel leakage via IgG immunostaining, activation of Müller cells via GFAP staining and change in neuronal dendrites through staining for MAP2. Furthermore, the layered organization of the retina allows a detailed analysis of the processes of Müller and ganglion cells, such as changes in width and continuity. While the data presented is with swine retinal culture, the system is applicable to multiple species. Thus, the model provides a reliable tool to investigate the early effects of compromised retinal vessel integrity on different cell types and also to evaluate potential drug candidates for treatment.
机译:建立了一种低成本,易于使用且功能强大的模型系统,以评估可以改善血液视网膜屏障破坏的潜在治疗方法。炎症因子组胺被证明可通过血管外IgG的阳性染色损害培养的视网膜中的血管完整性。使用以下三个参数评估组胺本身和可能用于治疗的候选药物的作用,如脂蛋白A4:通过IgG免疫染色引起的血管渗漏,通过GFAP染色激活Müller细胞以及通过对MAP2染色引起神经元树突变化。此外,视网膜的分层组织可以对穆勒细胞和神经节细胞的过程进行详细分析,例如宽度和连续性的变化。尽管所提供的数据是猪视网膜培养的结果,但该系统适用于多种物种。因此,该模型为研究视网膜血管完整性受损对不同细胞类型的早期影响以及评估潜在的候选药物提供了可靠的工具。

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