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基于牛疱疹病毒4型的疫苗在兔模型中对疾病提供保护性免疫。

Bovine Herpesvirus-4 Based Vaccine Provides Protective Immunity against Disease in a Rabbit Model.

作者信息

Dong Nihua, Nichols Hester, Sun Qing, Chen Xiaojun, Zheng Jiayang, Guan Zhixin, Zhang Hailong, Davison Andrew, Wezel Yvonne, Li Zongjie, Li Beibei, Liu Ke, Shao Donghua, Qiu Yafeng, Sun Jianhe, Li Xiangdong, Upton Mathew, Ma Zhiyong, Jarvis Michael A, Wei Jianchao

机构信息

Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Science, Shanghai 200241, China.

The Vaccine Group Ltd., Derriford Research Facility, Plymouth PL6 8BX, UK.

出版信息

Vaccines (Basel). 2023 May 20;11(5):1004. doi: 10.3390/vaccines11051004.

Abstract

() is a bacterial pathogen of pigs that has a major animal health and economic impact on the pig industry. Bovine herpesvirus-4 (BoHV-4) is a new virus-based vaccine vector that has been used for the immunogenic delivery of antigens from a variety of pathogens. In the present study, two recombinant BoHV-4-based vectors were evaluated for their ability to induce immunity and protection against in a rabbit model. The GMD protein is a fusion protein consisting of multiple dominant B-cell epitopes ((B-cell dominant epitopes of GAPDH, MRP, and DLDH antigens) (BoHV-4/GMD)) and the second suilysin (SLY) (BoHV-4/SLY) from serotype 2 (SS2). Both GMD and SLY delivered by the BoHV-4 vectors were recognized by sera from SS2-infected rabbits. The vaccination of rabbits with the BoHV-4 vectors induced antibodies against SS2, as well as against additional serotypes, SS7 and SS9. However, sera from BoHV-4/GMD-vaccinated animals promoted a significant level of phagocytic activity by pulmonary alveolar macrophages (PAMs) against SS2, SS7, and SS9. In contrast, sera from rabbits immunized with BoHV-4/SLY induced PAM phagocytic activity against only SS2. In addition, BoHV-4 vaccines differed in the associated level of protection against lethal SS2 challenge, which ranged from high (71.4%) to low (12.5%) for BoHV-4/GMD and BoHV-4/SLY, respectively. These data suggest BoHV-4/GMD as a promising vaccine candidate against disease.

摘要

()是猪的一种细菌性病原体,对养猪业有着重大的动物健康和经济影响。牛疱疹病毒4型(BoHV-4)是一种新型的基于病毒的疫苗载体,已被用于多种病原体抗原的免疫递送。在本研究中,评估了两种基于重组BoHV-4的载体在兔模型中诱导针对()的免疫和保护的能力。GMD蛋白是一种融合蛋白,由多个显性B细胞表位((甘油醛-3-磷酸脱氢酶、多药耐药相关蛋白和二氢硫辛酰胺脱氢酶抗原的B细胞显性表位)(BoHV-4/GMD))和来自2型猪链球菌(SS2)的第二种溶菌酶(SLY)(BoHV-4/SLY)组成。由BoHV-4载体递送的GMD和SLY均被来自SS2感染兔的血清识别。用BoHV-4载体对兔进行疫苗接种可诱导针对SS2以及其他猪链球菌血清型SS7和SS9的抗体。然而,来自接种BoHV-4/GMD动物的血清促进了肺泡巨噬细胞(PAM)对SS2、SS7和SS9的显著水平的吞噬活性。相比之下,用BoHV-4/SLY免疫的兔血清仅诱导PAM对SS2 的吞噬活性。此外,BoHV-4疫苗在针对致命性SS2攻击的相关保护水平上存在差异,BoHV-4/GMD和BoHV-4/SLY的保护水平分别从高(71.4%)到低(12.5%)不等。这些数据表明BoHV-4/GMD是一种有前景的抗()病疫苗候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f83/10222682/4d467963d0fa/vaccines-11-01004-g001.jpg

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