Withoff S, Glazenburg K L, van Veen M L, Kraak M M, Hospers G A, Störkel S, de Vries E G, Wilschut J, Daemen T
Department of Medical Microbiology, Molecular Virology Section, University of Groningen and Academic Hospital, Groningen, The Netherlands.
Gene Ther. 2001 Oct;8(20):1515-23. doi: 10.1038/sj.gt.3301556.
This paper describes the production of recombinant Semliki Forest virus encoding murine or human granulocyte-macrophage colony-stimulating factor (GM-CSF) and the capacity of these vectors to transduce murine and human tumor cells ex vivo. High-titer stocks (up to 3 x 10(9) particles/ml) of conditionally infective, replication-defective, recombinant SFV particles were generated using the SFV Helper-2 system. It is shown that the recombinant SFV/GM-CSF virus, as well as recombinant SFV carrying the beta-galactosidase reporter gene, efficiently transduce both murine tumor cell lines as well as primary human renal carcinoma cells. Using ELISA's specific for GM-CSF, levels of GM-CSF production by the cells were determined. Levels of murine GM-CSF (mGM-CSF) produced by SFV/mGM-CSF transduced renal cell cancer cultures were equal to or higher than corresponding levels reported in the literature after transduction of similar renal carcinoma cell cultures using a retroviral vector system. The biological activity of GM-CSF was demonstrated by using cells which are dependent on GM-CSF for growth and by using primary bone marrow cells. All the transduced cell cultures (including the human renal cell carcinoma samples) produced GM-CSF for up to at least 4 days after transduction. The results imply that the recombinant SFV system can be used for rapid and facile preparation of autologous cancer cell vaccines.
本文描述了编码鼠源或人源粒细胞-巨噬细胞集落刺激因子(GM-CSF)的重组塞姆利基森林病毒的生产,以及这些载体在体外转导鼠源和人源肿瘤细胞的能力。使用SFV Helper-2系统产生了高滴度(高达3×10⁹颗粒/毫升)的条件感染性、复制缺陷型重组SFV颗粒。结果表明,重组SFV/GM-CSF病毒以及携带β-半乳糖苷酶报告基因的重组SFV能有效地转导鼠源肿瘤细胞系以及原代人肾癌细胞。通过使用针对GM-CSF的ELISA法,测定了细胞产生GM-CSF的水平。SFV/mGM-CSF转导的肾细胞癌培养物产生的鼠源GM-CSF(mGM-CSF)水平等于或高于使用逆转录病毒载体系统转导类似肾癌细胞培养物后文献报道的相应水平。通过使用依赖GM-CSF生长的细胞和原代骨髓细胞证明了GM-CSF的生物学活性。所有转导的细胞培养物(包括人肾细胞癌样本)在转导后至少4天内都产生GM-CSF。结果表明,重组SFV系统可用于快速简便地制备自体癌细胞疫苗。