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Changes in extracellular matrix cause RPE cells to make basal deposits and activate the alternative complement pathway

机译:细胞外基质的变化导致RPE细胞制备基础沉积物并激活替代补体途径

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摘要

The design of efficient therapies for age-related macular degeneration (AMD) is limited by our understanding of the pathogenesis of basal deposits, which form between retinal pigment epithelium (RPE) and Bruch's membrane (BrM) early in disease, and involve activation of the complement system. To investigate the roles of BrM, RPE and complement in an AMD, we generated abnormal extracellular matrix (ECM) using CRISPR-edited ARPE-19 cells. We introduced to these cells the p.R345W mutation in EFEMP1, which causes early-onset macular degeneration. The abnormal ECM binds active complement C3 and causes the formation of basal deposits by normal human fetal (hf)RPE cells. Human fetal RPE (hfRPE) cells grown on abnormal ECM or BrM explants from AMD donors show chronic activation of the alternative complement pathway by excessive deposition of C3b. This process is exacerbated by impaired ECM turnover via increased matrix metalloproteinase-2 activity. The local cleavage of C3 via convertase-independent mechanisms can be a new therapeutic target for early AMD.
机译:有效的年龄相关性黄斑变性(AMD)的有效疗法的设计受到我们对基底沉积物发病机制的限制,在疾病早期的视网膜颜料上皮(RPE)和Bruch的膜(BRM)之间形成,并涉及激活补充系统。为了研究BRM,RPE和补体在AMD中的作用,我们使用CRISPR编辑的ARPE-19细胞产生异常的细胞外基质(ECM)。我们将这些细胞引入了这些细胞,EFEMP1中的p.R345W突变,导致早期发病性变性。异常ECM结合活性补体C3并通过正常的人胎(HF)RPE细胞形成基底沉积物。来自AMD供体的异常ECM或BRM外植体生长的人胎儿RPE(HFRPE)细胞通过过度沉积C3b来显示慢性激活替代补体途径。通过增加的基质金属蛋白酶-2活性,通过损伤的ECM成交量加剧了该过程。通过转化酶 - 独立机制的C3的局部切割可以是早期AMD的新治疗靶标。

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