首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Feeder-independent continuous culture of the PICM-19 pig liver stem cell line
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Feeder-independent continuous culture of the PICM-19 pig liver stem cell line

机译:PICM-19猪肝干细胞系的不依赖饲养层的连续培养

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The PICM-19 pig liver stem cell line is a bipotent cell line, i.e., capable of forming either bile ductules or hepatocyte monolayers in vitro, that was derived from the primary culture of pig embryonic stem cells. The cell line has been strictly feeder-dependent in that cell replication, morphology, and function were lost if the cells were cultured without STO feeder cells. A method for the feeder-independent continuous culture of PICM-19 cells (FI-PICM-19) is presented. PICM-19 cells were maintained and grown without feeder cells on collagen I-coated tissue culture plastic for 26 passages (P26) with initial split ratios of 1:3 that diminished to split ratios of less than 1:2 after passage 16. Once plated, the FI-PICM-19 cells were overlaid with a 1:12 to 1:50 dilution of Matrigel or related extracellular matrix product. Growth of the cells was stimulated by daily refeedings with STO feeder-cell conditioned medium. The FI-PICM-19 cells grew to an approximate confluence of 50% prior to each passage at 2-wk intervals. Growth curve analysis showed their average cell number doubling time to be similar to 96 h. Morphologically, the feeder-independent cells closely resembled PICM-19 cells grown on feeder cells, and biliary canalicui were present at cell-to-cell junctions. However, no spontaneous multicellular ductules formed in the monolayers of FI-PICM-19 cells. Ultrastructural subcellular features of the FI-PICM-19 cells were similar to those of PICM-19 cells cultured on feeder cells. The FI-PICM-19 cells produced a spectrum of serum proteins and expressed many liver/hepatocyte-specific genes. Importantly, cytochrome P450 (EROD) activity, ammonia clearance, and urea production were maintained by the feeder-independent cells. This simple method for the propagation of the PICM-19 cell line without feeder cells should simplify the generation and selection of functional mutants within the population and enhances the cell line's potential for use in toxicological/pharmacological screening assays and for use in an artificial liver device.
机译:PICM-19猪肝干细胞系是一种双能细胞系,即能够在体外形成胆管或肝细胞单层,其来源于猪胚胎干细胞的原代培养。如果在没有STO饲养细胞的情况下培养细胞,那么细胞系就严格依赖饲养者,因为细胞复制,形态和功能都会丧失。提出了一种独立于饲养层的PICM-19细胞(FI-PICM-19)的方法。将PICM-19细胞维持在无饲养细胞的情况下,在胶原I包被的组织培养塑料上生长26代(P26),初始分裂比为1:3,在第16代后降低为分裂比小于1:2。一旦铺板,将FI-PICM-19细胞用1:12至1:50的Matrigel或相关细胞外基质产物稀释液覆盖。每天补充STO饲养细胞条件培养基可刺激细胞生长。每次传代之前,FI-PICM-19细胞以2周间隔生长到大约50%的汇合度。生长曲线分析显示,它们的平均细胞数倍增时间类似于96小时。从形态上讲,不依赖饲养细胞的细胞与饲养细胞上生长的PICM-19细胞非常相似,并且胆道管存在于细胞间连接处。但是,在FI-PICM-19细胞的单层中没有形成自发的多细胞小管。 FI-PICM-19细胞的超微结构亚细胞特征类似于在饲养细胞上培养的PICM-19细胞的超微结构。 FI-PICM-19细胞产生一系列血清蛋白,并表达许多肝/肝细胞特异性基因。重要的是,不依赖饲养细胞的细胞可以维持细胞色素P450(EROD)活性,氨清除率和尿素产量。这种没有饲养细胞的PICM-19细胞系增殖的简单方法应简化群体中功能​​突变体的产生和选择,并增强该细胞系用于毒理学/药理学筛选测定以及用于人工肝装置的潜力。

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