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针对委内瑞拉、东部和西部马脑炎病毒的疫苗进展

Vaccine Advances against Venezuelan, Eastern, and Western Equine Encephalitis Viruses.

作者信息

Stromberg Zachary R, Fischer Will, Bradfute Steven B, Kubicek-Sutherland Jessica Z, Hraber Peter

机构信息

Physical Chemistry and Applied Spectroscopy, Chemistry Division, Los Alamos National Laboratory, Los Alamos, NM 505, USA.

Theoretical Biology and Biophysics, Los Alamos National Laboratory, Los Alamos, NM 505, USA.

出版信息

Vaccines (Basel). 2020 Jun 3;8(2):273. doi: 10.3390/vaccines8020273.

Abstract

Vaccinations are a crucial intervention in combating infectious diseases. The three neurotropic Alphaviruses, Eastern (EEEV), Venezuelan (VEEV), and Western (WEEV) equine encephalitis viruses, are pathogens of interest for animal health, public health, and biological defense. In both equines and humans, these viruses can cause febrile illness that may progress to encephalitis. Currently, there are no licensed treatments or vaccines available for these viruses in humans. Experimental vaccines have shown variable efficacy and may cause severe adverse effects. Here, we outline recent strategies used to generate vaccines against EEEV, VEEV, and WEEV with an emphasis on virus-vectored and plasmid DNA delivery. Despite candidate vaccines protecting against one of the three viruses, few studies have demonstrated an effective trivalent vaccine. We evaluated the potential of published vaccines to generate cross-reactive protective responses by comparing DNA vaccine sequences to a set of EEEV, VEEV, and WEEV genomes and determining the vaccine coverages of potential epitopes. Finally, we discuss future directions in the development of vaccines to combat EEEV, VEEV, and WEEV.

摘要

疫苗接种是对抗传染病的关键干预措施。三种嗜神经性甲病毒,即东部马脑炎病毒(EEEV)、委内瑞拉马脑炎病毒(VEEV)和西部马脑炎病毒(WEEV),是动物健康、公共卫生和生物防御领域关注的病原体。在马和人类中,这些病毒均可引起发热性疾病,进而可能发展为脑炎。目前,针对这些病毒,人类尚无获批的治疗方法或疫苗。实验性疫苗已显示出不同的疗效,且可能导致严重的不良反应。在此,我们概述了近期用于研发针对EEEV、VEEV和WEEV疫苗的策略,重点介绍病毒载体和质粒DNA递送方法。尽管候选疫苗可针对这三种病毒之一提供保护,但很少有研究证明存在有效的三价疫苗。我们通过将DNA疫苗序列与一组EEEV、VEEV和WEEV基因组进行比较,并确定潜在表位的疫苗覆盖率,评估已发表疫苗产生交叉反应性保护应答的潜力。最后,我们讨论了对抗EEEV、VEEV和WEEV疫苗开发的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a28/7350001/d28c4d1f6995/vaccines-08-00273-g001.jpg

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