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Two clonal cell lines of immortalized human corneal endothelial cells show either differentiated or precursor cell characteristics.

机译:永生化的人角膜内皮细胞的两种克隆细胞系显示分化的或前体细胞特征。

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Access to primary human corneal endothelial cells (HCEC) is limited and donor-derived differences between cultures exacerbate the issue of data reproducibility, whereas cell lines can provide sufficient numbers of homogenous cells for multiple experiments. An immortalized HCEC population was adapted to serum-free culture medium and repeated cloning was performed. Clonally grown cells were propagated under serum-free conditions and growth curves were recorded. Cells were characterized immunocytochemically for junctional proteins, collagens, Na,K-ATPase and HCEC-specific 9.3.E-antigen. Ultrastructure was monitored by scanning and transmission electron microscopy. Two clonal cell lines, HCEC-B4G12 and HCEC-H9C1, could be isolated and expanded, which differed morphologically: B4G12 cells were polygonal, strongly adherent and formed a strict monolayer, H9C1 cells were less adherent and formed floating spheres. The generation time of B4G12 cells was 62.26 +/- 14.5 h and that of H9C1 cells 44.05 +/- 5.05 h. Scanning electron microscopy revealed that B4G12 cells had a smooth cell surface, while H9C1 cells had numerous thin filopodia. Both cell lines expressed ZO-1 and occludin adequately, and little but well detectable amounts of connexin-43. Expression of HCEC-specific 9.3.E-antigen was found commensurately in both cell lines, while expression of Na,K-ATPase alpha1 was higher in H9C1 cells than in B4G12 cells. B4G12 cells expressed collagen IV abundantly and almost no collagen III, while H9C1 cells expressed both collagens at reasonable amounts. It is concluded that the clonal cell line B4G12 represents an ideal model of differentiated HCEC, while H9C1 may reflect features of developing or transitional HCEC.
机译:对原代人角膜内皮细胞(HCEC)的访问受到限制,并且不同培养物之间的供体来源差异加剧了数据可重复性的问题,而细胞系可以为多次实验提供足够数量的均质细胞。使永生化的HCEC群体适应无血清培养基,并进行重复克隆。克隆生长的细胞在无血清条件下繁殖并记录生长曲线。用免疫细胞化学方法对细胞进行连接蛋白,胶原蛋白,Na,K-ATPase和HCEC特异性9.3.E抗原的表征。通过扫描和透射电子显微镜监测超微结构。可以分离并扩增两种克隆细胞系HCEC-B4G12和HCEC-H9C1,它们在形态上有所不同:B4G12细胞呈多边形,强烈粘附并形成严格的单层,H9C1细胞粘附较少并形成浮球。 B4G12细胞的生成时间为62.26 +/- 14.5 h,而H9C1细胞的生成时间为44.05 +/- 5.05 h。扫描电子显微镜显示,B4G12细胞具有光滑的细胞表面,而H9C1细胞具有许多细丝状伪足。两种细胞系都充分表达了ZO-1和occludin,几乎没有,但可检测到的连接蛋白43含量却很高。两种细胞系中均发现了HCEC特异性9.3.E抗原的表达,而H9C1细胞中Na,K-ATPaseα1的表达高于B4G12细胞。 B4G12细胞大量表达胶原IV,而几乎没有胶原III,而H9C1细胞则以合理的量表达两种胶原。结论是,克隆细胞系B4G12代表了分化的HCEC的理想模型,而H9C1可能反映了发育中的HCEC或过渡型HCEC的特征。

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