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Human Embryonic Stem Cell-Derived Retinal Pigment Epithelium-Role in Dead Cell Clearance and Inflammation

机译:人类胚胎干细胞衍生的视网膜色素上皮在死细胞清除和炎症中的作用

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摘要

Inefficient removal of dying retinal pigment epithelial (RPE) cells by professional phagocytes can result in debris formation and development of age-related macular degeneration (AMD). Chronic oxidative stress and inflammation play an important role in AMD pathogenesis. Only a few well-established in vitro phagocytosis assay models exist. We propose human embryonic stem cell-derived-RPE cells as a new model for studying RPE cell removal by professional phagocytes. The characteristics of human embryonic stem cells-derived RPE (hESC-RPE) are similar to native RPEs based on their gene and protein expression profile, integrity, and barrier properties or regarding drug transport. However, no data exist about RPE death modalities and how efficiently dying hESC-RPEs are taken upby macrophages, and whether this process triggers an inflammatory responses. This study demonstrates hESC-RPEs can be induced to undergo anoikis or autophagy-associated cell death due to extracellular matrix detachment or serum deprivation and hydrogen-peroxide co-treatment, respectively, similar to primary human RPEs. Dying hESC-RPEs are efficiently engulfed by macrophages which results in high amounts of IL-6 and IL-8 cytokine release. These findings suggest that the clearance of anoikic and autophagy-associated dying hESC-RPEs can be used as a new model for investigating AMD pathogenesis or for testing the in vivo potential of these cells in stem cell therapy.
机译:专业吞噬细胞无法有效去除垂死的视网膜色素上皮细胞(RPE),可能导致碎片形成和与年龄相关的黄斑变性(AMD)。慢性氧化应激和炎症在AMD发病机理中起重要作用。仅存在一些公认的体外吞噬作用测定模型。我们提出人类胚胎干细胞衍生的RPE细胞作为研究专业吞噬细胞去除RPE细胞的新模型。人类胚胎干细胞衍生的RPE(hESC-RPE)的特征与天然RPE相似,这是基于它们的基因和蛋白质表达谱,完整性和屏障特性,或者是关于药物转运。然而,目前尚无有关RPE死亡方式,巨噬细胞如何有效摄取垂死的hESC-RPEs以及该过程是否引发炎症反应的数据。这项研究表明,与原始人类RPE相似,由于细胞外基质脱离或血清剥夺和过氧化氢共同处理,hESC-RPEs可以被诱导发生失语或自噬相关细胞死亡。垂死的hESC-RPEs被巨噬细胞有效地吞噬,导致大量的IL-6和IL-8细胞因子释放。这些发现表明,阳极氧化和自噬相关的垂死的hESC-RPEs的清除可以用作研究AMD发病机理或测试这些细胞在干细胞治疗中的体内潜力的新模型。

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