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Rational Design of Genetically Stable, Live-Attenuated Poliovirus Vaccines of All Three Serotypes: Relevance to Poliomyelitis Eradication

机译:合理设计所有三种血清型的遗传稳定的,减毒的脊髓灰质炎疫苗:与消除脊髓灰质炎的相关性

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摘要

The global eradication of poliomyelitis caused by wild-type virus is likely to be completed within the next few years, despite immense logistic and political difficulties, and may ultimately be followed by the cessation of vaccination. However, the existing live-attenuated vaccines have the potential to revert to virulence, causing occasional disease, and viruses can be shed by immunocompromised individuals for prolonged periods of time. Moreover, several outbreaks of poliomyelitis have been shown to be caused by viruses derived from the Sabin vaccine strains. The appearance of such strains depends on the prevailing circumstances but poses a severe obstacle to strategies for stopping vaccination. Vaccine strains that are incapable of reversion at a measurable rate would provide a possible solution. Here, we describe the constructions of strains of type 3 poliovirus that are stabilized by the introduction of four mutations in the 5′ noncoding region compared to the present vaccine. The strains are genetically and phenotypically stable under conditions where the present vaccine loses the attenuating mutation in the 5′ noncoding region completely. Type 1 and type 2 strains in which the entire 5′ noncoding regions of Sabin 1 and Sabin 2 were replaced exactly with that of one of the type 3 strains were also constructed. The genetic stability of 5′ noncoding regions of these viruses matched that of the type 3 strains, but significant phenotypic reversion occurred, illustrating the potential limitations of a rational approach to the genetic stabilization of live RNA virus vaccines.
机译:尽管后勤和政治方面的巨大困难,由野生型病毒引起的脊髓灰质炎在全球范围内的根除可能在未来几年内完成,最终可能会终止疫苗接种。但是,现有的减毒活疫苗有可能恢复为毒力,导致偶发性疾病,并且免疫功能低下的人可能会长时间释放病毒。此外,已显示脊髓灰质炎的几次爆发是由萨宾疫苗株衍生的病毒引起的。这种菌株的出现取决于当时的情况,但对停止疫苗接种的策略构成了严重的障碍。无法以可测量的速率回复的疫苗株将提供可能的解决方案。在这里,我们描述了与本疫苗相比,通过在5'非编码区引入四个突变而稳定的3型脊髓灰质炎病毒株的构建。在本疫苗完全失去5'非编码区的减毒突变的条件下,菌株在遗传和表型上是稳定的。还构建了其中沙宾1和沙宾2的整个5'非编码区被3型菌株之一完全替换的1型和2型菌株。这些病毒的5'非编码区的遗传稳定性与3型毒株的遗传稳定性相匹配,但是发生了显着的表型逆转,说明了合理方法对活RNA病毒疫苗进行遗传稳定的潜在局限性。

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