Neff Tobias, Gerull Sabine, Peterson Laura J, Kiem Hans-Peter
Clinical Research Division, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.
J Gene Med. 2007 May;9(5):357-61. doi: 10.1002/jgm.1033.
Gammaretroviral vectors require cell division for efficient transduction. Thus, extended cell culture times are necessary for efficient transduction with gammaretroviral vectors, which in turn can lead to stem cell loss and impaired engraftment. Lentiviral vectors transduce nondividing cells and are therefore able to transduce stem cells in short transduction protocols. Here, we compared the short-term engraftment of lentivirally and gammaretrovirally transduced canine allogeneic DLA-matched littermate cells. A reduced conditioning regimen of 400 cGy total body irradiation was used in preparation for clinical studies. Two dogs received a graft of gammaretrovirally transduced CD34-selected cells. CD34(+) cells were prestimulated for 30 h and then exposed twice to concentrated RD114 pseudotype vector. Three dogs received lentivirally transduced CD34-selected cells. Cells were transduced overnight with concentrated VSV-G pseudotype lentiviral vector. The animals in the lentiviral group showed a significantly faster granulocyte recovery. VNTR analysis 40-50 days after transplantation revealed higher donor chimerism for the lentiviral group compared to the retroviral group. These data suggest that short lentiviral transduction protocols may be superior to extended gammaretroviral transduction protocols with respect to engraftment potential of transduced CD34(+) hematopoietic repopulating cells.
γ逆转录病毒载体需要细胞分裂才能实现高效转导。因此,使用γ逆转录病毒载体进行高效转导需要延长细胞培养时间,而这反过来又可能导致干细胞丢失和植入受损。慢病毒载体可转导非分裂细胞,因此能够在短时间转导方案中转导干细胞。在此,我们比较了经慢病毒和γ逆转录病毒转导的犬同种异体DLA匹配同窝出生细胞的短期植入情况。为临床研究做准备时,采用了400 cGy全身照射的减少预处理方案。两只狗接受了经γ逆转录病毒转导的CD34选择细胞移植。CD34(+)细胞先预刺激30小时,然后两次暴露于浓缩的RD114假型载体。三只狗接受了经慢病毒转导的CD34选择细胞移植。细胞用浓缩的VSV-G假型慢病毒载体过夜转导。慢病毒组的动物粒细胞恢复明显更快。移植后40 - 50天的VNTR分析显示,与逆转录病毒组相比,慢病毒组的供体嵌合率更高。这些数据表明,就转导的CD34(+)造血重建细胞的植入潜力而言,短时间慢病毒转导方案可能优于延长的γ逆转录病毒转导方案。