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The Effect of Culture Conditions on Liver Function and Proliferation of Hepatic Cells for Bio-Artificial Liver

机译:培养条件对生物人工肝脏肝功能和肝细胞增殖的影响

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Bio-artificial liver (BAL) is an effective treatment for serious liver disease. It is thought that a mass of hepatic cells corresponding to 30% of the liver are needed for BALs, and a small size of reactor, at most a few liters in volume, is desired for use at the hospital bedside. Therefore, high-density culture, >1 x 107 cells/cm3, should be employed. However, sufficient oxygen and nutrients are not supplied to all cells in the reactor, resulting in apoptosis and serious impairment to BAL performance. In order to solve these problems, we have previously introduced anti-apoptosis gene bcl-2 into HepG2 cells, establishing an anti-apoptosis cell line, Hep-Bcl2. The Hep-Bcl2 cell line survived under low oxygen conditions, and had twice the level of albumin productivity than do HepG2 cells. In this study, the Hep-Bcl2 cell line was cultured under high-density conditions, with a change of culture medium twice daily to mimic the circulation. In this way, Hep-Bcl2 successfully maintained a high population for at least 14 days, and the albumin productivity of Hep-Bcl2 was significantly higher than that of HepG2 cells.
机译:生物人工肝(BAL)是对严重肝病的有效治疗方法。据认为,在医院床边使用,在医院床边使用,据认为是对应于30%的肝细胞,并且在大多数升的体积中,在大多数升的体积中使用较小的反应器。因此,应采用高密度培养,> 1×107个细胞/ cm3。然而,没有向反应器中的所有细胞提供足够的氧气和营养素,导致细胞凋亡和严重的BAL性能损伤。为了解决这些问题,我们之前将抗凋亡基因Bcl-2引入HepG2细胞中,建立了抗凋亡细胞系Hep-Bcl2。 HEP-BCL2细胞系在低氧气条件下存活,并且具有比HEPG2细胞的白蛋白生产率水平的两倍。在该研究中,HEP-BCL2细胞系在高密度条件下培养,每天两次培养培养基以模拟循环。通过这种方式,HEP-BCL2成功地保持了至少14天的高群体,HEP-BCL2的白蛋白生产率显着高于HepG2细胞的白蛋白生产率。

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