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痘苗病毒的一种减毒且高免疫原性变体。

An Attenuated and Highly Immunogenic Variant of the Vaccinia Virus.

作者信息

Shchelkunov S N, Yakubitskiy S N, Titova K A, Pyankov S A, Shulgina I S, Starostina E V, Borgoyakova M B, Kisakov D N, Karpenko L I, Shchelkunova G A, Sergeev A A

机构信息

State Research Center of Virology and Biotechnology "Vector", Rospotrebnadzor, Koltsovo, Novosibirsk region, 630559 Russian Federation.

出版信息

Acta Naturae. 2024 Apr-Jun;16(2):82-89. doi: 10.32607/actanaturae.27384.

Abstract

The vaccinia virus (VACV) has been used for prophylactic immunization against smallpox for many decades. However, the VACV-based vaccine had been highly reactogenic. Therefore, after the eradication of smallpox, the World Health Organization in 1980 recommended that vaccination against this infection be discontinued. As a result, there has been a rise in the occurrence of orthopoxvirus infections in humans in recent years, with the most severe being the 2022 monkeypox epidemic that reached all continents. Thus, it is crucial to address the pressing matter of developing safe and highly immunogenic vaccines for new generations to combat orthopoxvirus infections. In a previous study, we created a LAD strain by modifying the LIVP (L) VACV strain, which is used as a first-generation smallpox vaccine in Russia. This modification involved introducing mutations in the gene to enhance extracellular virion production and deleting the gene to counteract the antibody response to the viral infection. In this study, a strain LADA was created with an additional deletion in the DNA of the LAD strain gene. This gene directs the production of a major non-virion immunogen. The findings indicate that the LADA VACV variant exhibits lower levels of reactogenicity in BALB/c mice during intranasal infection, as compared to the original L strain. Following intradermal immunization with a 105 PFU dose, both the LAD and LADA strains were found to induce a significantly enhanced cellular immune response in mice when compared to the L strain. At the same time, the highest level of virus-specific IFN-γ producing cells for the LAD variant was detected on the 7 day post-immunization (dpi), whereas for LADA, it was observed on 14 dpi. The LAD and LADA strains induced significantly elevated levels of VACV-specific IgG compared to the original L strain, particularly between 28 and 56 dpi. The vaccinated mice were intranasally infected with the cowpox virus at a dose of 460 LD to assess the protective immunity at 62 dpi. The LADA virus conferred complete protection to mice, with the LAD strain providing 70% protection and the parent strain L offering protection to only 60% of the animals.

摘要

几十年来,痘苗病毒(VACV)一直被用于预防天花的免疫接种。然而,基于VACV的疫苗具有高度的反应原性。因此,在天花被根除后,世界卫生组织于1980年建议停止针对这种感染的疫苗接种。结果,近年来人类正痘病毒感染的发生率有所上升,最严重的是2022年蔓延至各大洲的猴痘疫情。因此,开发安全且高免疫原性的新一代疫苗以对抗正痘病毒感染这一紧迫问题至关重要。在之前的一项研究中,我们通过改造LIVP(L)VACV毒株(在俄罗斯用作第一代天花疫苗)创建了LAD毒株。这种改造包括在基因中引入突变以增强细胞外病毒粒子的产生,并删除基因以对抗对病毒感染的抗体反应。在本研究中,创建了LADA毒株,其LAD毒株基因的DNA中存在额外的缺失。该基因指导一种主要的非病毒粒子免疫原的产生。研究结果表明,与原始L毒株相比,LADA VACV变体在鼻内感染期间在BALB/c小鼠中表现出较低水平的反应原性。在用105 PFU剂量进行皮内免疫后,与L毒株相比,LAD和LADA毒株在小鼠中均诱导出显著增强的细胞免疫反应。同时,LAD变体在免疫后第7天(dpi)检测到最高水平的病毒特异性产生IFN-γ的细胞,而LADA则在14 dpi时观察到。与原始L毒株相比,LAD和LADA毒株诱导的VACV特异性IgG水平显著升高,尤其是在28至56 dpi之间。在62 dpi时,给接种疫苗的小鼠鼻内接种460 LD剂量的牛痘病毒以评估保护性免疫。LADA病毒为小鼠提供了完全保护,LAD毒株提供了70%的保护,而亲本毒株L仅为60%的动物提供了保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b33/11345087/9e5fb55d774c/AN20758251-16-02-082-g001.jpg

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