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Complement factor H regulates retinal development and its absence may establish a footprint for age related macular degeneration

机译:补体因子H调节视网膜发育其缺失可能为年龄相关性黄斑变性建立足迹

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摘要

Age related macular degeneration (AMD) is the most common blinding disease in those over 60 years. In 50% of cases it is associated with polymorphisms of complement factor H (FH), implicating immune vulnerability. But such individuals may exhibit abnormal outer retinal blood flow decades before disease initiation, suggesting an early disease footprint. FH is expressed in the retinal pigmented epithelium (RPE). During development the RPE is adjacent to the site of retinal mitosis and complex regulatory interactions occur between the relatively mature RPE and retinal neuronal precursors that control the cell cycle. Here we ask if the absence of FH from the RPE influences retinal development using a mouse CFH knockout (Cfh−/−) with an aged retinal degenerative phenotype. We reveal that from birth, these mice have significantly disrupted and delayed retinal development. However, once development is complete, their retinae appear relatively normal, although many photoreceptor and RPE mitochondria are abnormally large, suggesting dysfunction consistent with premature ATP decline in Cfh−/−. Total retinal mtDNA is also reduced and these deficits are associated shortly after with reduced retinal function. Cfh−/+ mice also show significant abnormal patterns of cell production but not as great as in Cfh−/−. These results reveal that not only is FH an important player in sculpting retinal development but also that the developmental abnormality in Cfh−/− likely establishes critical vulnerability for later aged retinal degeneration.
机译:年龄相关性黄斑变性(AMD)是60多年来最常见的致盲疾病。在50%的病例中,它与补体因子H(FH)的多态性有关,暗示了免疫易感性。但是这些人可能在疾病发作前数十年就表现出异常的外部视网膜血流,表明疾病的早期足迹。 FH在视网膜色素上皮(RPE)中表达。在发育过程中,RPE与视网膜有丝分裂的位置相邻,并且相对成熟的RPE与控制细胞周期的视网膜神经元前体之间发生复杂的调节相互作用。在这里,我们问RPE缺乏FH是否会影响使用具有老年视网膜变性表型的小鼠CFH敲除(Cfh -/-)的视网膜发育。我们发现,从出生起,这些小鼠就已经明显破坏并延迟了视网膜发育。但是,一旦发育完成,尽管许多感光细胞和RPE线粒体异常大,它们的视网膜就显得相对正常,这表明功能障碍与Cfh -/-中的ATP提前下降是一致的。视网膜总mtDNA也减少,这些缺陷与视网膜功能降低有关。 Cfh -/ + 小鼠也显示出明显的细胞生成异常模式,但不如Cfh -/-大。这些结果表明,FH不仅是雕刻视网膜发育的重要参与者,而且Cfh -/-的发育异常可能为后期老年视网膜变性建立了关键的脆弱性。

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