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Improving cell survival and engraftment in vivo via layer-by-layer nanocoating of hESC-derived RPE cells

机译:通过层衍生的RPE细胞层通过层纳米核改善体内细胞存活和植入

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Human embryonic stem cell-derived retinal pigment epithelial (hESC-RPE) cell transplants have served as a cell therapy for treating retinal degenerative diseases. However, how to optimize the survival and engraftment of hESC-RPE cells is a great challenge. Here, we report hESC-RPE cells that are embedded with polyelectrolytes gelatin and alginate by layer-by-layer (LbL) self-assembly technique, based on the opposite charge of alternate layers. Cells were assessed for cell survival, immunogenicity, and function in vitro and in vivo. This strategy obviously decreased the immunogenicity of hESC-RPE cells without affecting its activity. LbL-RPE cell transplants into the subretinal space of Royal College of Surgeons (RCS) rats optimized cell engraftment and decreased immunogenicity compared to untreated RPE cell transplants (immunosuppression was not used during the 21-week study). Visual-functional assay with electroretinogram recordings (ERGs) also showed higher B wave amplitudes in RCS rats with LbL-RPE cell transplants. We demonstrate that transplanted LbL-RPE cells have better viability and grafting efficiency, optimized immunogenicity, and visual function. Therefore, LbL engineering is a promising method to increase the efficacy of hESC-RPE cell transplantation.
机译:人胚胎干细胞衍生的视网膜颜料上皮(HESC-RPE)细胞移植器作为治疗视网膜退行性疾病的细胞疗法。然而,如何优化HESC-RPE细胞的存活率和植入是一个巨大的挑战。在此,我们向嵌入聚电解细胞明胶的HESC-RPE细胞并基于替代层的相反电荷,通过层逐层(LBL)自组装技术进行藻酸盐。在体外和体内评估细胞存活,免疫原性和功能的细胞。该策略显然降低了HESC-RPE细胞的免疫原性而不影响其活性。与未处理的RPE细胞移植相比,LBL-RPE细胞移植到皇家外科医生(RCS)大鼠大鼠优化细胞植入并降低免疫原性(在21周的研究期间未使用免疫抑制)。具有电气图书目记录(ERG)的视觉功能测定还显示RCS大鼠的较高B波振幅,具有LBL-RPE细胞移植物。我们证明移植的LBL-RPE细胞具有更好的活力和移植效率,优化的免疫原性和视觉功能。因此,LBL工程是提高HESC-RPE细胞移植效果的有希望的方法。

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