Zhou Kaixuan, Koike Chika, Yoshida Toshiko, Okabe Motonori, Fathy Moustafa, Kyo Satoru, Kiyono Tohru, Saito Shigeru, Nikaido Toshio
Department of Regenerative Medicine, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Japan.
Cell Reprogram. 2013 Feb;15(1):55-67. doi: 10.1089/cell.2012.0021. Epub 2013 Jan 8.
Human amniotic epithelial cells (HAEs) have a low immunogenic profile and possess potent immunosuppressive properties. HAEs also have several characteristics similar to stem cells, and they are discarded after parturition. Thus, they could potentially be used in cell therapy with fewer ethical problems. HAEs have a short life, so our aim is to establish and characterize immortalized human amniotic epithelial cells (iHAEs). HAEs were introduced with viral oncogenes E6/E7 and with human telomerase reverse transcriptase (hTERT) to create iHAEs. These iHAEs have proliferated around 200 population doublings (PDs) for at least 12 months. High expression of stem cell markers (Oct 3/4, Nanog, Sox2, Klf4) and epithelial markers (CK5, CK18) were detected by immunohistochemistry and reverse transcription polymerase chain reaction (RT-PCR). These iHAEs were expanded in ultra-low-attachment dishes to form spheroids similarly to epithelial stem/precursor cells. High expression of mesenchymal (CD44, CD73, CD90, CD105) and somatic (CD24, CD29, CD271, Nestin) stem cell markers was detected by flow cytometry. The iHAEs showed adipogenic, osteogenic, neuronal, and cardiac differentiation abilities. In conclusion, the immortalization of HAEs with the characteristics of stem cells has been established, allowing these iHAEs to become useful for cell therapy and regenerative medicine.
人羊膜上皮细胞(HAEs)具有低免疫原性,具备强大的免疫抑制特性。HAEs还具有一些与干细胞相似的特征,并且在分娩后被丢弃。因此,它们在细胞治疗中可能具有较少的伦理问题。HAEs寿命较短,所以我们的目标是建立永生化人羊膜上皮细胞(iHAEs)并对其进行特性描述。将病毒癌基因E6/E7和人端粒酶逆转录酶(hTERT)导入HAEs以创建iHAEs。这些iHAEs已经增殖了约200次群体倍增(PDs),至少持续了12个月。通过免疫组织化学和逆转录聚合酶链反应(RT-PCR)检测到干细胞标志物(Oct 3/4、Nanog、Sox2、Klf4)和上皮标志物(CK5、CK18)的高表达。这些iHAEs在超低附着培养皿中扩增以形成类似于上皮干细胞/前体细胞的球体。通过流式细胞术检测到间充质(CD44、CD73、CD90、CD105)和体细胞(CD24、CD29、CD271、巢蛋白)干细胞标志物的高表达。iHAEs表现出脂肪生成、成骨、神经元和心脏分化能力。总之,已经建立了具有干细胞特征的HAEs永生化,使这些iHAEs可用于细胞治疗和再生医学。