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A feeder-cell independent subpopulation of the PICM-19 pig liver stem cell line capable of long-term growth and extensive expansion

机译:PICM-19猪肝干细胞系的饲养细胞独立亚群能够长期生长和广泛扩增

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摘要

A method for the feeder-independent culture of PICM-19 pig liver stem cell line was recently devised, but the cell line’s growth was finite and the cells essentially ceased dividing after approximately 20 passages over a 1 year culture period. Here we report the isolation, continuous culture, and initial characterization of a spontaneously arising feeder-independent PICM-19 subpopulation, PICM-19FF, that maintained replication rate and hepatocyte functions over an extended culture period. PICM-19FF cells grew to 90–98 % confluency after each passage at 2 week intervals, and the cells maintained a high cell density after 2 years and 48 passages in culture (average of 2.6 × 106 cells/T25 flask or 1 × 105 cells/cm2). Morphologically, the PICM-FF cells closely resembled the finite feeder-independent PICM-19 cultures previously reported, and, as before, no spontaneous formation of 3D multicellular ductules occurred in the cells’ monolayer. Their bipotent stem cell nature was therefore not evident. Over extensive passage, cytochrome P450 (EROD) activity was maintained, although urea production was reduced on a per mg protein basis at later passages. Two other attributes of fetal hepatocytes, γ-glutamyl transpeptidase activity and serum-protein secretion, were also shown to be maintained by the PICM-19FF cells. The PICM-19FF cells therefore appear to have indefinite growth potential as a feeder-independent cell line and this should enhance the experimental usefulness of the cell line, in general, and may also improve its application to toxicological/pharmacological assays and artificial liver devices.
机译:最近设计了一种不依赖饲养者的PICM-19猪肝干细胞系培养方法,但该细胞系的生长是有限的,并且在1年的培养期内经过约20次传代后,细胞基本上停止了分裂。在这里,我们报告了自发产生的与饲养者无关的PICM-19亚群PICM-19FF的分离,连续培养和初步表征,该亚群在延长的培养期内保持复制速率和肝细胞功能。每次传代后每2周间隔一次,PICM-19FF细胞会增长到90–98%的融合度,并且在培养2年和传代48次后,细胞保持高细胞密度(平均2.6×10 6 细胞/ T25烧瓶或1×10 5 个/ cm 2 )。从形态上讲,PICM-FF细胞与以前报道的与饲养细胞无关的有限有限的PICM-19培养物非常相似,并且像以前一样,在细胞的单层中没有自发形成3D多细胞小管。因此,它们的双能干细胞性质并不明显。经过大量传代后,细胞色素P450(EROD)活性得以维持,尽管在以后的传代中尿素的产量以每毫克蛋白质为基础降低了。胎儿肝细胞的其他两个属性,即γ-谷氨酰转肽酶活性和血清蛋白分泌也被PICM-19FF细胞维持。因此,PICM-19FF细胞作为不依赖饲养细胞的细胞系似乎具有无限的生长潜力,通常应增强该细胞系的实验实用性,还可以改善其在毒理学/药理学测定和人工肝装置中的应用。

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