Dai Kaifan, Liu Ying, Liu Mingjie, Xu Jianqing, Huang Wei, Huang Xianggang, Liu Lianxing, Wan Yanmin, Hao Yanling, Shao Yiming
National Key Laboratory of Virology, Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan, China.
Vaccine. 2008 Sep 15;26(39):5062-71. doi: 10.1016/j.vaccine.2008.06.011. Epub 2008 Jun 23.
Interest is increasing regarding replicating poxvirus as HIV vaccine vector. In China, the Tiantan Vaccinia Virus (TV) has been used most extensively in the battle of eradicating smallpox. Recently, TV was developing as vaccine vector to fight against infectious diseases such as human immunodeficiency virus (HIV). However, replicating vaccinia virus sometimes may pose serious post-vaccination complications, especially in immunosuppressed individuals. To develop a safer and more effective TV-based vector, we constructed C12L (vIL-18 binding protein) and A53R (vTNF receptor homolog) gene-deleted mutants which are based on parental TV and VTKgpe (TV expressing HIV gagpol and env gene), respectively. The pathogenicity and immunogenicity were also evaluated. Deleting these two immunomodulatory genes lessened the virulence of the parental virus in both mice and rabbit models. Notably, C12L deletion mutant attenuated the skin virulence of parental virus by as high as approximate 2 logs. Furthermore, VTKgpe with A53R and C12L gene deletion retains the high immunogenicity of the parental virus to elicit strong humoral and cellular responses to the HIV target genes despite the remarkable attenuation. These data suggest that deletion of the cytokine viroceptor gene is feasible to obtain a safer and replication-competent TV vector for vaccination and immunotherapy.
将痘病毒作为HIV疫苗载体进行复制的研究兴趣日益增加。在中国,天坛痘苗病毒(TV)在消灭天花的战斗中使用最为广泛。最近,TV正被开发为对抗人类免疫缺陷病毒(HIV)等传染病的疫苗载体。然而,复制型痘苗病毒有时可能会引发严重的疫苗接种后并发症,尤其是在免疫抑制个体中。为了开发一种更安全、更有效的基于TV的载体,我们分别构建了基于亲本TV和VTKgpe(表达HIV gagpol和env基因的TV)的C12L(病毒IL-18结合蛋白)和A53R(病毒TNF受体同源物)基因缺失突变体。还评估了其致病性和免疫原性。删除这两个免疫调节基因降低了亲本病毒在小鼠和兔模型中的毒力。值得注意的是,C12L缺失突变体使亲本病毒的皮肤毒力降低了约2个对数。此外,缺失A53R和C12L基因的VTKgpe尽管显著减毒,但仍保留了亲本病毒的高免疫原性,能够引发针对HIV靶基因的强烈体液和细胞反应。这些数据表明,删除细胞因子病毒受体基因对于获得一种更安全且具有复制能力的用于疫苗接种和免疫治疗的TV载体是可行的。