Wege Henning, Chui Michael S, Le Hai T, Strom Stephen C, Zern Mark A
Transplant Research Institute, University of California, Davis Medical Center, Sacramento, CA 95817, USA.
Cell Transplant. 2003;12(8):897-906. doi: 10.3727/000000003771000138.
Currently, different techniques to expand human hepatocytes in vitro are being investigated to generate enough cells for liver-directed cell therapies. However, based on observations in fibroblasts and other cell types, telomere attrition limits the proliferative capacity of normal somatic cells. Therefore, we explored whether telomere-dependent replicative aging restricts the in vitro proliferation of human hepatocytes. Subpopulations of cells isolated from a neonatal liver and characterized as hepatocyte derived by RT-PCR and flow cytometry started to proliferate 5-7 days after plating and were termed proliferating human hepatocytes (PHH). Following retroviral-mediated transduction of the catalytic telomerase subunit, telomerase reverse transcriptase (hTERT), telomerase activity increased from almost undetectable levels to levels as high as in HepG2 and other telomerase-positive cell lines. As expected, untransduced PHH progressively lost telomeric repeats and arrested after 30-35 cell divisions with telomeres of less than 5 kilo bases. In comparison, telomerase-reconstituted PHH maintained elongated telomeres and continued to proliferate as shown by colorimetric assays and cell counts. In this study, telomere stabilization extended the proliferative capacity of in vitro proliferating human neonatal hepatocytes. Therefore, telomere attrition needs to be addressed when developing techniques to expand human hepatocytes.
目前,人们正在研究不同的体外扩增人肝细胞的技术,以产生足够的细胞用于肝脏定向细胞治疗。然而,基于对成纤维细胞和其他细胞类型的观察,端粒磨损限制了正常体细胞的增殖能力。因此,我们探讨了端粒依赖性复制性衰老是否会限制人肝细胞的体外增殖。从新生儿肝脏分离的细胞亚群,经逆转录聚合酶链反应(RT-PCR)和流式细胞术鉴定为肝细胞来源,接种后5-7天开始增殖,被称为增殖性人肝细胞(PHH)。在逆转录病毒介导的催化性端粒酶亚基——端粒酶逆转录酶(hTERT)转导后,端粒酶活性从几乎检测不到的水平增加到与HepG2和其他端粒酶阳性细胞系一样高的水平。正如预期的那样,未转导的PHH逐渐丢失端粒重复序列,并在30-35次细胞分裂后端粒长度小于5千碱基时停止增殖。相比之下,经端粒酶重组的PHH维持了延长的端粒,并通过比色测定和细胞计数显示继续增殖。在本研究中,端粒稳定延长了体外增殖的人新生儿肝细胞的增殖能力。因此,在开发扩增人肝细胞的技术时,需要解决端粒磨损问题。