Inzunza José, Gertow Karin, Strömberg Marie A, Matilainen Eija, Blennow Elisabeth, Skottman Heli, Wolbank Susanne, Ahrlund-Richter Lars, Hovatta Outi
Department of Clinical Sciences, Division of Obstetrics and Gynecology, Karolinska Institutet, Karolinska University Hospital, Huddinge, S-141 86 Stockholm, Sweden.
Stem Cells. 2005 Apr;23(4):544-9. doi: 10.1634/stemcells.2004-0201.
Derivation and culture of human embryonic stem cells (hESCs) without animal-derived material would be optimal for cell transplantation. We derived two new hES (HS293 and HS306) and 10 early cell lines using serum replacement (SR) medium instead of conventional fetal calf serum and human foreskin fibroblasts as feeder cells. Line HS293 has been in continuous culture, with a passage time of 5-8 days, since October 2003 and is at passage level 56. Line HS306 has been cultured since February 2004, now at passage 41. The lines express markers of pluripotent hESCs (Oct-4, SSEA-4, TRA-1-60, TRA-1-81, GCTM-2, and alkaline phosphatase). The pluripotency has been shown in embryoid bodies in vitro, and the pluripotency of line 293 has also been shown in vivo by teratoma formation in severe combined immunodeficiency/beige mice. The karyotype of HS293 is 46,XY, and that of HS306 is 46,XX. Ten more early lines have been derived under similar conditions since September 2004. We conclude that hESC lines can be successfully derived using SR medium and postnatal human fibroblasts as feeder cells. This is a step toward xeno-free conditions and facilitates the use of these cells in transplantation.
在无动物源材料的情况下获取和培养人胚胎干细胞(hESCs)对于细胞移植而言是最为理想的。我们使用血清替代(SR)培养基替代传统的胎牛血清,并用人包皮成纤维细胞作为饲养层细胞,获得了两个新的hES细胞系(HS293和HS306)以及10个早期细胞系。自2003年10月以来,HS293细胞系一直在持续培养,传代时间为5 - 8天,目前处于第56代。HS306细胞系自2004年2月开始培养,现在处于第41代。这些细胞系表达多能性hESCs的标志物(Oct - 4、SSEA - 4、TRA - 1 - 60、TRA - 1 - 81、GCTM - 2和碱性磷酸酶)。其多能性在体外的胚状体中得到了证实,并且293细胞系的多能性在体内也通过在严重联合免疫缺陷/米色小鼠中形成畸胎瘤得到了证实。HS293的核型为46,XY,HS306的核型为46,XX。自2004年9月以来,在类似条件下又获得了另外10个早期细胞系。我们得出结论,使用SR培养基和出生后的人成纤维细胞作为饲养层细胞能够成功获得hESC细胞系。这朝着无动物源条件迈出了一步,并便于这些细胞在移植中的应用。