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视网膜色素上皮细胞合成补体因子H受到氧化的光感受器外段的下调。

Synthesis of complement factor H by retinal pigment epithelial cells is down-regulated by oxidized photoreceptor outer segments.

作者信息

Chen Mei, Forrester John V, Xu Heping

机构信息

Department of Ophthalmology, School of Medicine, Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen, Scotland AB25 2ZD, UK.

出版信息

Exp Eye Res. 2007 Apr;84(4):635-45. doi: 10.1016/j.exer.2006.11.015. Epub 2006 Dec 31.

Abstract

Complement activation is thought to be involved in the pathogenesis of age-related macular degeneration (AMD), in part because certain gene polymorphisms in complement factor H (CFH), an important regulator of the alternative complement activation pathway, are high risk factors for AMD. How CFH is regulated locally at the retina/choroid interface and how this contributes to AMD development remain unknown. In the present study, we have confirmed that CFH was detectable by immunohistochemistry in the choroid, and at low levels in the RPE cell and interphotoreceptor matrix, but appeared to be concentrated in dense patches in Bruch's membrane. In vitro, cultured human and mouse RPE cells expressed high levels of CFH as evidenced by immunohistochemistry and western blot. Using a stabilized mouse RPE cell line, we confirmed that RPE cells constitutively synthesise CFH. Synthesis of CFH was not affected by a short-term (2 h) photoreceptor outer segment (POS) treatment. However, long-term (24-48 h) treatment of RPE cells with oxidised POS (ox-POS) but not normal POS (n-POS) markedly down-regulated CFH mRNA expression. Phagocytosis of both ox-POS and n-POS appeared to reduce intracellular CFH protein expression in RPE cultures. Synthesis of CFH by cultured RPE cells was also reduced at the mRNA level by the proinflammatory cytokines TNF-alpha and IL-6. Other cytokines tested including IFN-gamma, IL-1alpha and IL-4 showed no effect on either CFH protein or mRNA levels. Our results support the view that RPE cells synthesise and express CFH and are probably a major local source of this protein at the retina/choroid interface, secreting CFH into the interphotoreceptor matrix as well as Bruch's membrane. Prolonged phagocytosis of POS, particularly if modified by oxidative processes as occurs in inflammation, appears to markedly impair synthesis and secretion of CFH, with potential loss of important regulatory functions in counteracting the pro-inflammatory effects of activated complement.

摘要

补体激活被认为参与了年龄相关性黄斑变性(AMD)的发病机制,部分原因是补体因子H(CFH)作为替代补体激活途径的重要调节因子,其某些基因多态性是AMD的高危因素。CFH在视网膜/脉络膜界面如何进行局部调节以及这如何促进AMD的发展仍不清楚。在本研究中,我们已经证实,通过免疫组织化学可在脉络膜中检测到CFH,在视网膜色素上皮(RPE)细胞和光感受器间基质中含量较低,但似乎集中在布鲁赫膜的致密斑块中。在体外,免疫组织化学和蛋白质印迹法证实,培养的人和小鼠RPE细胞表达高水平的CFH。使用稳定的小鼠RPE细胞系,我们证实RPE细胞组成性合成CFH。短期(2小时)光感受器外段(POS)处理不影响CFH的合成。然而,用氧化型POS(ox-POS)而非正常POS(n-POS)长期(24 - 48小时)处理RPE细胞,可显著下调CFH mRNA表达。吞噬ox-POS和n-POS似乎均可降低RPE培养物中细胞内CFH蛋白表达。促炎细胞因子TNF-α和IL-6也可在mRNA水平降低培养的RPE细胞中CFH的合成。测试的其他细胞因子,包括IFN-γ、IL-1α和IL-4,对CFH蛋白或mRNA水平均无影响。我们的结果支持以下观点:RPE细胞合成并表达CFH,可能是视网膜/脉络膜界面该蛋白的主要局部来源,将CFH分泌到光感受器间基质以及布鲁赫膜中。长时间吞噬POS,特别是如果像在炎症中那样被氧化过程修饰,似乎会显著损害CFH合成和分泌,可能失去抵消活化补体促炎作用的重要调节功能。

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