Yu Hong, Kwon Young Jik
Department of Surgery, Vascular Biology Institute, University of Miami School of Medicine, Miami, FL, USA.
Methods Mol Biol. 2008;433:1-16. doi: 10.1007/978-1-59745-237-3_1.
Retroviral vectors have been widely used for research and clinical trials in gene therapy because of their high transduction efficiency. Retroviruses interact with target cells through their surface molecules (i.e., envelope proteins) and cellular receptors, which limit the susceptibility of target cells to retroviral vectors. Murine leukemia retrovirus (MuLV) pseudotyped with vesicular stomatitis virus G glycoprotein (VSV-G) overcomes the species barrier and is more resistant to mechanical and biochemical inactivation. A cell line producing VSV-G pseudotyped MuLV vector can be established by transfecting 293T cells expressing Gag, Pol, and VSV-G (293 GPG cell line) with a retroviral vector plasmid. Transduction potency of the resulting VSV-G pseudotyped MuLV retroviral supernatant can be quantified by titration, electron microscopy (EM), and the reverse transcriptase (RT) assay. These protocols provide methods to prepare and quantify a pseudotyped retroviral vector with high transduction rates for most types of target cells.
逆转录病毒载体因其高转导效率而被广泛用于基因治疗的研究和临床试验。逆转录病毒通过其表面分子(即包膜蛋白)与靶细胞相互作用,这些表面分子和细胞受体限制了靶细胞对逆转录病毒载体的敏感性。用水泡性口炎病毒G糖蛋白(VSV-G)假型化的鼠白血病逆转录病毒(MuLV)克服了种属障碍,并且对机械和生化失活更具抗性。通过用逆转录病毒载体质粒转染表达Gag、Pol和VSV-G的293T细胞(293 GPG细胞系),可以建立产生VSV-G假型化MuLV载体的细胞系。所得VSV-G假型化MuLV逆转录病毒上清液的转导效力可以通过滴定、电子显微镜(EM)和逆转录酶(RT)测定来定量。这些方案提供了制备和定量具有高转导率的假型化逆转录病毒载体的方法,适用于大多数类型的靶细胞。