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首页> 外文期刊>British journal of ophthalmology >Conditioned medium from mixed retinal pigmented epithelium and Muller cell cultures reduces in vitro permeability of retinal vascular endothelial cells.
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Conditioned medium from mixed retinal pigmented epithelium and Muller cell cultures reduces in vitro permeability of retinal vascular endothelial cells.

机译:来自混合的视网膜色素上皮和穆勒细胞培养物的条件培养基会降低视网膜血管内皮细胞的体外通透性。

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摘要

AIM: To investigate the in vitro effect of laser photocoagulation on blood-retinal barrier permeability. METHODS: Retinal capillary endothelial cells were exposed to supernatants from long term co-cultured cells that were argon laser treated. Endothelial cell permeability was analysed by (1) measurement of transendothelial electrical resistance and (2) equilibration of [(3)H] inulin and [(14)C] albumin across the cell monolayer. RESULTS: Laser photocoagulation of various retinal cells and control ECV304 cells in the lower chamber did not appreciably improve permeability of the endothelial cell monolayer compared with that of unlasered cells. However, medium that was conditioned by mixed retinal pigmented epithelium and Muller cells significantly reduced both inulin (43.2% (SD 6.5%) equilibration in mixed cultures v 59.8% (SD 7.0%) control cells, p<0.05) and albumin (15.1% (SD 3.8%) v 31.1% (SD 6.7%), p<0.05) permeability of the endothelial cell monolayers. A fourfold increase in transendothelial electrical resistance was also seen. CONCLUSIONS: These results are consistent with the hypothesis that interaction of Muller cells with retinal pigmented epithelium induced by laser treatment results in secretion of soluble factor(s), which reduces permeability of retinal vascular endothelium. Identification of these factor(s) may have implications for the clinical treatment of macular oedema secondary to diabetic retinopathy and other diseases.
机译:目的:探讨激光光凝对血视网膜屏障通透性的体外作用。方法:将视网膜毛细血管内皮细胞暴露于氩激光治疗的长期共培养细胞的上清液中。通过(1)跨内皮电阻的测量和(2)跨细胞单层的[(3)H]菊粉和[(14)C]白蛋白的平衡来分析内皮细胞的通透性。结果:与未激光处理的细胞相比,下腔室中各种视网膜细胞和对照ECV304细胞的激光光凝不能明显改善内皮细胞单层的通透性。但是,以视网膜色素上皮和穆勒细胞混合为条件的培养基显着降低了菊粉(43.2%(SD 6.5%)的平衡在混合培养物中的平衡v 59.8%(SD 7.0%)的对照细胞,p <0.05)和白蛋白(15.1%) (SD 3.8%)v 31.1%(SD 6.7%),p <0.05)内皮细胞单层的通透性。还发现跨内皮电阻增加了四倍。结论:这些结果与以下假设相一致:激光治疗引起的穆勒细胞与视网膜色素上皮的相互作用导致可溶性因子的分泌,从而降低了视网膜血管内皮的通透性。这些因素的识别可能对继发于糖尿病性视网膜病和其他疾病的黄斑水肿的临床治疗产生影响。

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