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首页> 外文期刊>International Journal of Biomaterials >Optimization of Human Corneal Endothelial Cells for Culture: The Removal of Corneal Stromal Fibroblast Contamination Using Magnetic Cell Separation
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Optimization of Human Corneal Endothelial Cells for Culture: The Removal of Corneal Stromal Fibroblast Contamination Using Magnetic Cell Separation

机译:培养人体角膜内皮细胞的优化:使用磁细胞分离去除角膜基质成纤维细胞污染

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The culture of human corneal endothelial cells (CECs) is critical for the development of suitable graft alternative on biodegradable material, specifically for endothelial keratoplasty, which can potentially alleviate the global shortage of transplant-grade donor corneas available. However, the propagation of slow proliferative CECsin vitrocan be hindered by rapid growing stromal corneal fibroblasts (CSFs) that may be coisolated in some cases. The purpose of this study was to evaluate a strategy using magnetic cell separation (MACS) technique to deplete the contaminating CSFs from CEC cultures using antifibroblast magnetic microbeads. Separated “labeled” and “flow-through” cell fractions were collected separately, cultured, and morphologically assessed. Cells from the “flow-through” fraction displayed compact polygonal morphology and expressed Na+/K+ATPase indicative of corneal endothelial cells, whilst cells from the “labeled” fraction were mostly elongated and fibroblastic. A separation efficacy of 96.88% was observed. Hence, MACS technique can be useful in the depletion of contaminating CSFs from within a culture of CECs.
机译:人角膜内皮细胞(CECs)的培养对于在可生物降解材料上进行合适的接枝替代,特别是用于内皮角膜形形术的替代,这可能会缓解可用的移植级供体角膜的全球短缺。然而,通过在某些情况下,通过快速生长的基质角膜成纤维细胞(CSF)阻碍缓慢增殖性Cecsin Vitrocan的繁殖。本研究的目的是评估使用磁性细胞分离(MACS)技术的策略,以使用反射细胞磁微珠从CEC培养物中耗尽污染的CSF。分离,分离,培养和形态学评估分离的“标记”和“流通”细胞级分。来自“流通”级分的细胞显示了紧凑的多边形形态,表达了角膜内皮细胞的Na + / K + AtP酶,而来自“标记”级分的细胞主要是细长的和纤维细胞。观察到96.88%的分离疗效。因此,MACS技术可用于从CEC的培养物中耗尽污染CSF。

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