Department of Advanced Medicine in Biotechnology and Robotics, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Cell Transplant. 2010;19(6):893-900. doi: 10.3727/096368910X509022. Epub 2010 Jun 29.
Sendai virus (SeV) vectors can efficiently introduce foreign genes without toxicity into various organs and are expected to be clinically applicable. We previously compared the transfectional efficiency of SeV and adenovirus (AdV) vectors by assessing the transfer of the green fluorescent protein (GFP) gene to pancreatic stem cells. Although the gene transfer efficiency was similar between these vectors, SeV vector had a lower toxicity in comparison to the AdV vector. In this study, we assessed the gene transfer efficiency of SeV vector in the floating state to pancreatic stem cells. The efficiency of gene transfer was much higher at all time points and at all concentrations in the floating state versus in the adhesion state. In addition, the pancreatic stem cells transfected with SeV in the floating state maintained their differentiation ability. These data suggest that SeV transfection to pancreatic stem cells in the floating state may be useful in gene transfer technology.
仙台病毒(SeV)载体可以高效、无毒地将外源基因导入各种器官,有望在临床上得到应用。我们之前通过评估绿色荧光蛋白(GFP)基因向胰腺干细胞的转导来比较 SeV 和腺病毒(AdV)载体的转染效率。虽然这两种载体的基因转导效率相似,但与 AdV 载体相比,SeV 载体的毒性较低。在这项研究中,我们评估了 SeV 载体在悬浮状态下向胰腺干细胞的基因转导效率。与黏附状态相比,悬浮状态下所有时间点和所有浓度的基因转导效率都更高。此外,在悬浮状态下用 SeV 转染的胰腺干细胞保持其分化能力。这些数据表明,悬浮状态下 SeV 转染胰腺干细胞可能在基因转移技术中有用。