首页> 美国卫生研究院文献>Journal of Virology >Deletion of Major Nonessential Genomic Regions in the Vaccinia Virus Lister Strain Enhances Attenuation without Altering Vaccine Efficacy in Mice
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Deletion of Major Nonessential Genomic Regions in the Vaccinia Virus Lister Strain Enhances Attenuation without Altering Vaccine Efficacy in Mice

机译:删除痘苗病毒李斯特菌中主要的非必需基因组区域可增强衰减而不会改变小鼠的疫苗功效

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摘要

The vaccinia virus (VACV) Lister strain was one of the vaccine strains that enabled smallpox eradication. Although the strain is most often harmless, there have been numerous incidents of mild to life-threatening accidents with this strain and others. In an attempt to further attenuate the Lister strain, we investigated the role of 5 genomic regions known to be deleted in the modified VACV Ankara (MVA) genome in virulence in immunodeficient mice, immunogenicity in immunocompetent mice, and vaccine efficacy in a cowpox virus challenge model. Lister mutants were constructed so as to delete each of the 5 regions or various combinations of these regions. All of the mutants replicated efficiently in tissue culture except region I mutants, which multiplied more poorly in human cells than the parental strain. Mutants with single deletions were not attenuated or only moderately so in athymic nude mice. Mutants with multiple deletions were more highly attenuated than those with single deletions. Deleting regions II, III, and V together resulted in total attenuation for nude mice and partial attenuation for SCID mice. In immunocompetent mice, the Lister deletion mutants induced VACV specific humoral responses equivalent to those of the parental strain but in some cases lower cell-mediated immune responses. All of the highly attenuated mutants protected mice from a severe cowpox virus challenge at low vaccine doses. The data suggest that several of the Lister mutants combining multiple deletions could be used in smallpox vaccination or as live virus vectors at doses equivalent to those used for the traditional vaccine while displaying increased safety.
机译:痘苗病毒(VACV)李斯特菌是能够根除天花的疫苗之一。尽管该菌株通常无害,但该菌株和其他菌株曾发生过许多轻度到危及生命的事故。为了进一步减毒李斯特菌,我们调查了已知的5个基因组区域在修饰的VACV Ankara(MVA)基因组中的缺失在免疫缺陷小鼠中的毒力,免疫活性小鼠中的免疫原性以及在牛痘病毒攻击中的疫苗功效的作用。模型。构建李斯特菌突变体以便删除5个区域中的每一个或这些区域的各种组合。除I区突变体外,所有突变体均在组织培养物中有效复制,而I区突变体在人细胞中的繁殖比亲本菌株差得多。在无胸腺裸鼠中,具有单个缺失的突变体没有衰减或仅中等衰减。具有多个缺失的突变体比具有单个缺失的突变体衰减程度更高。区域II,III和V一起删除会导致裸鼠的总衰减和SCID小鼠的部分衰减。在具有免疫能力的小鼠中,李斯特菌缺失突变体诱导的VACV特异性体液反应与亲本菌株的体液反应相同,但在某些情况下,细胞介导的免疫反应降低。所有高度减毒的突变体均以低疫苗剂量保护小鼠免受严重的牛痘病毒攻击。数据表明,结合了多个缺失的几种李斯特氏菌突变体可用于天花疫苗接种或作为活病毒载体使用,剂量与传统疫苗相同,同时显示出更高的安全性。

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