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一种源自甲病毒复制子的裂谷热病毒候选疫苗。

An alphavirus replicon-derived candidate vaccine against Rift Valley fever virus.

作者信息

Heise M T, Whitmore A, Thompson J, Parsons M, Grobbelaar A A, Kemp A, Paweska J T, Madric K, White L J, Swanepoel R, Burt F J

机构信息

Department of Genetics, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Epidemiol Infect. 2009 Sep;137(9):1309-18. doi: 10.1017/S0950268808001696. Epub 2009 Jan 27.

Abstract

Rift Valley fever virus (RVFV) is a mosquito-transmitted bunyavirus (genus Phlebovirus) associated with severe disease in livestock and fatal encephalitis or haemorrhagic fever in a proportion of infected humans. Although live attenuated and inactivated vaccines have been used in livestock, and on a limited scale in humans, there is a need for improved anti-RVFV vaccines. Towards this goal, Sindbis virus replicon vectors expressing the RVFV Gn and Gc glycoproteins, as well as the non-structural nsM protein, were constructed and evaluated for their ability to induce protective immune responses against RVFV. These replicon vectors were shown to produce the RVFV glycoproteins to high levels in vitro and to induce systemic anti-RVFV antibody responses in immunized mice, as determined by RVFV-specific ELISA, fluorescent antibody tests, and demonstration of a neutralizing antibody response. Replicon vaccination also provided 100% protection against lethal RVFV challenge by either the intraperitoneal or intranasal route. Furthermore, preliminary results indicate that the replicon vectors elicit RVFV-specific neutralizing antibody responses in vaccinated sheep. These results suggest that alphavirus-based replicon vectors can induce protective immunity against RVFV, and that this approach merits further investigation into its potential utility as a RVFV vaccine.

摘要

裂谷热病毒(RVFV)是一种由蚊子传播的布尼亚病毒(白蛉病毒属),可导致家畜严重疾病,并在部分感染人类中引发致命性脑炎或出血热。尽管减毒活疫苗和灭活疫苗已用于家畜,且在人类中也有有限规模的使用,但仍需要改进的抗RVFV疫苗。为实现这一目标,构建了表达RVFV Gn和Gc糖蛋白以及非结构nsM蛋白的辛德毕斯病毒复制子载体,并评估了它们诱导针对RVFV的保护性免疫反应的能力。通过RVFV特异性ELISA、荧光抗体试验以及中和抗体反应的证明,这些复制子载体在体外能高水平表达RVFV糖蛋白,并在免疫小鼠中诱导全身性抗RVFV抗体反应。复制子疫苗接种还通过腹腔内或鼻内途径为抵抗致命性RVFV攻击提供了100%的保护。此外,初步结果表明,复制子载体在接种疫苗的绵羊中引发了RVFV特异性中和抗体反应。这些结果表明,基于甲病毒的复制子载体可诱导针对RVFV的保护性免疫,并且这种方法值得进一步研究其作为RVFV疫苗的潜在效用。

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