In vitro functionality of human fetal liver cells and clonal derivatives under proliferative conditions

被引:23
作者
Deurholt, Tanja
ten Bloemendaal, Lysbeth
Chhatta, Aniska A.
van Wijk, Albert C. W. A.
Weijer, Kees
Seppen, Jurgen
Elferink, Ronald P. J. Oude
Chamuleau, Robert A. F. M.
Hoekstra, Ruurdtje
机构
[1] Univ Amsterdam, Acad Med Ctr, Dept Surg, Surg Lab,IWO 1 172, NL-1105 AZ Amsterdam, Netherlands
[2] Acad Med Ctr, Ctr Liver, Amsterdam, Netherlands
[3] Acad Med Ctr, Dept Cell Biol & Histol, Amsterdam, Netherlands
关键词
hepatocyte; fetal; proliferation; liver function; in vitro;
D O I
10.3727/000000006783464417
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Mature human hepatocytes are not suitable for large-scale in vitro applications that rely on hepatocyte function, due to their limited availability and insufficient proliferation capacity in vitro. In contrast, human fetal liver cells (HFLC) can be easily expanded in vitro. In this study we evaluated the hepatic function of HFLCs under proliferative conditions, to determine whether HFLCs can replace mature hepatocytes for in vitro applications. HFLCs were isolated from fetal livers of 16 weeks gestation. Hepatic functions of HFLCs were determined in primary culture and after expansion in vitro. Clonal derivatives were selected and tested for hepatic functionality. Results were compared to primary mature human hepatocytes in vitro. No differences were observed between primary HFLCs and mature human hepatocytes in albumin production and mRNA levels of various liver-specific genes. Ureagenesis was 4.4-fold lower and ammonia elimination was absent in HFLCs. Expanding HFLCs decreased hepatic functions and increased cell stretching. In contrast, clonal derivatives had stable functionality and morphology and responded to differentiation stimuli. Although their hepatic functions were higher than in passaged HFLCs, functionality was at least 20 times lower compared to mature human hepatocytes. HFLCs cannot replace mature human hepatocytes in in vitro applications requiring extensive in vitro expansion, because this is associated with decreased hepatic functionality. Selecting functional subpopulations can, at least partly, prevent this. In addition, defining conditions that support hepatic differentiation is necessary to obtain HFLC cultures suitable for in vitro hepatic applications.
引用
收藏
页码:811 / 822
页数:12
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