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工程化细菌外膜囊泡作为无佐剂疫苗平台,携带脂化异源抗原用于猪链球菌

Engineered Bacterial Outer Membrane Vesicles with Lipidated Heterologous Antigen as an Adjuvant-Free Vaccine Platform for Streptococcus suis.

机构信息

College of Veterinary Medicine, Yangzhou University, Yangzhou, Jiangsu, China.

Jiangsu Co-innovation Center for the Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou, Jiangsu, China.

出版信息

Appl Environ Microbiol. 2023 Mar 29;89(3):e0204722. doi: 10.1128/aem.02047-22. Epub 2023 Feb 21.

Abstract

Bacterial outer membrane vesicles (OMVs) are considered a promising vaccine platform for their high built-in adjuvanticity and ability to efficiently induce immune responses. OMVs can be engineered with heterologous antigens based on genetic engineering strategies. However, several critical issues should still be validated, including optimal exposure to the OMV surface, increased production of foreign antigens, nontoxicity, and induction of powerful immune protection. In this study, engineered OMVs with the lipoprotein transport machinery (Lpp) were designed to present SaoA antigen as a vaccine platform against Streptococcus suis. The results suggest that Lpp-SaoA fusions can be delivered on the OMV surface and do not have significant toxicity. Moreover, they can be engineered as lipoprotein and significantly accumulated in OMVs at high levels, thus accounting for nearly 10% of total OMV proteins. Immunization with OMVs containing Lpp-SaoA fusion antigen induced strong specific antibody responses and high levels of cytokines, as well as a balanced Th1/Th2 immune response. Furthermore, the decorated OMV vaccination significantly enhanced microbial clearance in a mouse infection model. It was found that antiserum against lipidated OMVs significantly promoted the opsonophagocytic uptake of S. suis in RAW246.7 macrophages. Lastly, OMVs engineered with Lpp-SaoA induced 100% protection against a challenge with 8× the 50% lethal dose (LD) of S. suis serotype 2 and 80% protection against a challenge with 16× the LD in mice. Altogether, the results of this study provide a promising versatile strategy for the engineering of OMVs and suggest that Lpp-based OMVs may be a universal adjuvant-free vaccine platform for important pathogens. Bacterial outer membrane vesicles (OMVs) have become a promising vaccine platform due to their excellent built-in adjuvanticity properties. However, the location and amount of the expression of the heterologous antigen in the OMVs delivered by the genetic engineering strategies should be optimized. In this study, we exploited the lipoprotein transport pathway to engineer OMVs with heterologous antigen. Not only did lapidated heterologous antigen accumulate in the engineered OMV compartment at high levels, but also it was engineered to be delivered on the OMV surface, thus leading to the optimal activation of antigen-specific B cells and T cells. Immunization with engineered OMVs induced a strong antigen-specific antibodies in mice and conferred 100% protection against S. suis challenge. In general, the data of this study provide a versatile strategy for the engineering of OMVs and suggest that OMVs engineered with lipidated heterologous antigens may be a vaccine platform for significant pathogens.

摘要

细菌外膜囊泡(OMVs)因其内在的高佐剂活性和有效诱导免疫应答的能力而被认为是一种很有前途的疫苗平台。可以基于基因工程策略,用异源抗原对 OMV 进行工程改造。然而,仍有几个关键问题需要验证,包括将异源抗原有效暴露于 OMV 表面、增加外来抗原的产生、非毒性和诱导强大的免疫保护。在这项研究中,设计了带有脂蛋白转运机制(Lpp)的工程化 OMV 以 SaoA 抗原作为针对猪链球菌的疫苗平台。结果表明,Lpp-SaoA 融合物可以递送到 OMV 表面,且没有明显的毒性。此外,它们可以被工程化为脂蛋白并在 OMV 中以高浓度显著积累,占 OMV 总蛋白的近 10%。用含有 Lpp-SaoA 融合抗原的 OMV 免疫诱导了强烈的特异性抗体反应和高水平的细胞因子,以及平衡的 Th1/Th2 免疫反应。此外,经修饰的 OMV 疫苗接种显著增强了小鼠感染模型中的微生物清除。发现针对脂质化 OMV 的抗血清显著促进了 RAW246.7 巨噬细胞中猪链球菌的调理吞噬作用。最后,基于 Lpp-SaoA 的 OMV 诱导了 100%的保护作用,免受猪链球菌 2 型 8×50%致死剂量(LD)的攻击,以及 80%的保护作用,免受 16×LD 的攻击。总之,这项研究的结果为 OMV 的工程设计提供了一种有前途的多功能策略,并表明基于 Lpp 的 OMV 可能是一种通用的无佐剂疫苗平台,适用于重要的病原体。

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