Department of Surgery, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Japan.
PLoS One. 2013 Jul 26;8(7):e70970. doi: 10.1371/journal.pone.0070970. Print 2013.
Cell sheet engineering is attracting attention from investigators in various fields, from basic research scientists to clinicians focused on regenerative medicine. However, hepatocytes have a limited proliferation potential in vitro, and it generally takes a several days to form a sheet morphology and multi-layered sheets. We herein report our rapid and efficient technique for generating multi-layered human hepatic cell (HepaRG® cell) sheets using pre-cultured fibroblast monolayers derived from human skin (TIG-118 cells) as a feeder layer on a temperature-responsive culture dish. Multi-layered TIG-118/HepaRG cell sheets with a thick morphology were harvested on day 4 of culturing HepaRG cells by forceful contraction of the TIG-118 cells, and the resulting sheet could be easily handled. In addition, the human albumin and alpha 1-antitrypsin synthesis activities of TIG-118/HepaRG cells were approximately 1.2 and 1.3 times higher than those of HepaRG cells, respectively. Therefore, this technique is considered to be a promising modality for rapidly fabricating multi-layered human hepatocyte sheets from cells with limited proliferation potential, and the engineered cell sheet could be used for cell transplantation with highly specific functions.
细胞片工程技术吸引了来自基础研究科学家到专注于再生医学的临床医生等各个领域的研究人员的关注。然而,肝细胞在体外的增殖潜力有限,通常需要几天时间才能形成片层形态和多层片。我们在此报告了一种使用预先培养的源自人皮肤的成纤维细胞单层(TIG-118 细胞)作为饲养层在温度响应培养皿上生成多层人肝(HepaRG®细胞)片的快速有效的技术。通过强烈收缩 TIG-118 细胞,在培养 HepaRG 细胞的第 4 天收获具有厚形态的多层 TIG-118/HepaRG 细胞片,并且可以轻松处理所得的片。此外,TIG-118/HepaRG 细胞的人白蛋白和 alpha 1-抗胰蛋白酶合成活性分别比 HepaRG 细胞高约 1.2 和 1.3 倍。因此,该技术被认为是一种很有前途的方法,可以从增殖潜力有限的细胞中快速制备多层人肝细胞片,并且工程化的细胞片可用于具有高度特异性功能的细胞移植。