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Chimeric alphavirus vaccine candidates protect mice from intranasal challenge with western equine encephalitis virus.

机译:嵌合的甲病毒候选疫苗可以保护小鼠免受西方马脑炎病毒的鼻内攻击。

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We developed two types of chimeric Sindbis virus (SINV)/western equine encephalitis virus (WEEV) alphaviruses to investigate their potential use as live virus vaccines against WEE. The first-generation vaccine candidate, SIN/CO92, was derived from structural protein genes of WEEV strain CO92-1356, and two second-generation candidates were derived from WEEV strain McMillan. For both first- and second-generation vaccine candidates, the nonstructural protein genes were derived from SINV strain AR339. Second-generation vaccine candidates SIN/SIN/McM and SIN/EEE/McM included the envelope glycoprotein genes from WEEV strain McMillan; however, the amino-terminal half of the capsid, which encodes the RNA-binding domain, was derived from either SINV or eastern equine encephalitis virus (EEEV) strain FL93-939. All chimeric viruses replicated efficiently in mammalian and mosquito cell cultures and were highly attenuated in 6-week-old mice. Vaccinated mice developed little or no detectable disease and showed little or no evidence of challenge virus replication; however, all developed high titers of neutralizing antibodies. Upon intranasal challenge with high doses of virulent WEEV strains, mice vaccinated with >=105 PFU of SIN/CO92 or >=104 PFU of SIN/SIN/McM or SIN/EEE/McM were completely protected from disease. These findings support the potential use of these live-attenuated vaccine candidates as safe and effective vaccines against WEE.
机译:我们开发了两种类型的嵌合辛德比斯病毒(SINV)/西部马脑炎病毒(WEEV)α病毒,以研究其作为针对WEE的活病毒疫苗的潜在用途。第一代候选疫苗SIN / CO92源自WEEV株CO92-1356的结构蛋白基因,两个第二代候选疫苗源自WEEV株McMillan。对于第一代和第二代候选疫苗,非结构蛋白基因均来自SINV株AR339。第二代候选疫苗SIN / SIN / McM和SIN / EEE / McM包括来自WEEV株McMillan的包膜糖蛋白基因。但是,编码RNA结合结构域的衣壳的氨基末端一半来自SINV或东部马脑炎病毒(EEEV)株FL93-939。所有嵌合病毒均能在哺乳动物和蚊子细胞培养物中高效复制,并在6周龄的小鼠中高度减毒。接种疫苗的小鼠很少或没有可检测到的疾病,并且几乎没有或没有证据表明挑战性病毒复制。但是,所有抗体均产生了高滴度的中和抗体。经高剂量强毒WEEV鼻腔攻击后,小鼠接种了SIN / CO92> = 10 5 PFU或SIN / SIN / McM或> = 10 4 PFU或SIN / EEE / McM受到完全保护,免受疾病侵害。这些发现支持了这些减毒活疫苗候选物作为针对WEE的安全有效疫苗的潜在用途。

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