Immunization of mice with delayed lysis Salmonella expressing PCV2b Cap protein enhanced mucosal and innate immunity and reduced viral load

Gerui Zhang , Yuanyu Shen , Zipeng Wang , Guijuan Hao , Fangkun Wang
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Abstract

Porcine circovirus type 2 (PCV2) has been recognized as a critical pathogen associated with numerous porcine circovirus-related diseases. Immunization is commonly regarded as the most efficient method to combat PCV2 infection. The virus's main antigen is the Cap protein, which is encoded by the ORF2 gene. In this investigation, we cloned the PCV2 Cap gene into the pYA3681 plasmid and subsequently electrotransferred it into the delayed lysis Salmonella strain χ11802, ultimately generating the χ11802 (pYA3681-Cap) vaccine candidate strain. We assessed the levels of sIgA and IgG specific to the Cap protein in mice, revealing that their mucosal and humoral immunity had been activated by χ11802 (pYA3681-Cap). The result was a substantial elevation in antibody levels, and a notable reduction in viral load in the immunized group compared to the unvaccinated group. Furthermore, the study revealed a significant decrease in the viral load in the lungs, liver, and spleen of mice inoculated with χ11802 (pYA3681-Cap), in comparison to both the empty carrier group and the phosphate buffered saline control group. This study further investigated the lytic effect of the delayed lysis vaccine vector. The χ11802 (pYA3681-EGFP) strain was undetectable 10 days post-challenge, indicating that the vaccine strain can effectively release the carried exogenous antigen and prevent the residual vaccine strain from spreading and causing pollution in the environment. A successful construction of the χ11802 (pYA3681-Cap) strain expressing the PCV2 Cap protein was executed in this study. To summarize, our study suggests that PCV2-Cap, when expressed in the delayed lysis Salmonella strain χ11802, could serve as a safe and economically efficient candidate PCV2 vaccine.

用表达 PCV2b Cap 蛋白的延迟裂解沙门氏菌免疫小鼠,可增强粘膜和先天免疫力,降低病毒载量
猪圆环病毒 2 型(PCV2)已被认为是与多种猪圆环病毒相关疾病有关的重要病原体。免疫接种通常被认为是抵抗 PCV2 感染的最有效方法。该病毒的主要抗原是由 ORF2 基因编码的 Cap 蛋白。在这项研究中,我们将 PCV2 Cap 基因克隆到 pYA3681 质粒中,然后将其电转移到延迟裂解沙门氏菌株 χ11802 中,最终产生了 χ11802 (pYA3681-Cap)候选疫苗株。我们对小鼠体内针对 Cap 蛋白的特异性 sIgA 和 IgG 水平进行了评估,结果显示小鼠的粘膜和体液免疫已被χ11802(pYA3681-Cap)激活。结果显示,与未接种组相比,接种组的抗体水平大幅提高,病毒载量明显减少。此外,研究还发现,与空载体组和磷酸盐缓冲液对照组相比,接种χ11802(pYA3681-Cap)的小鼠肺、肝和脾中的病毒载量明显减少。本研究进一步研究了延迟裂解疫苗载体的溶菌效果。χ11802(pYA3681-EGFP)菌株在挑战后 10 天检测不到,表明该疫苗菌株能有效释放携带的外源抗原,防止残余疫苗菌株扩散并对环境造成污染。本研究成功构建了表达 PCV2 Cap 蛋白的 χ11802 株(pYA3681-Cap)。总之,我们的研究表明,在延迟裂解沙门氏菌株 χ11802 中表达的 PCV2-Cap 可作为一种安全、经济高效的 PCV2 候选疫苗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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