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微生物组调控核酸疫苗反应。

The Regulation of Nucleic Acid Vaccine Responses by the Microbiome.

机构信息

Vaccine and Infectious Disease Division, Fred Hutchinson Cancer Center, Seattle, WA.

Penn Institute for RNA Innovation, University of Pennsylvania, Philadelphia, PA.

出版信息

J Immunol. 2023 Dec 1;211(11):1680-1692. doi: 10.4049/jimmunol.2300196.

Abstract

Nucleic acid vaccines, including both RNA and DNA platforms, are key technologies that have considerable promise in combating both infectious disease and cancer. However, little is known about the extrinsic factors that regulate nucleic acid vaccine responses and which may determine their effectiveness. The microbiome is recognized as a significant regulator of immune development and response, whose role in regulating some traditional vaccine platforms has recently been discovered. Using germ-free and specific pathogen-free mouse models in combination with different protein, DNA, and mRNA vaccine regimens, we demonstrate that the microbiome is a significant regulator of nucleic acid vaccine immunogenicity. Although the presence of the microbiome enhances CD8+ T cell responses to mRNA lipid nanoparticle immunization, the microbiome suppresses Ig and CD4+ T cell responses to DNA-prime, DNA-protein-boost immunization, indicating contrasting roles for the microbiome in the regulation of these different nucleic acid vaccine platforms. In the case of mRNA lipid nanoparticle vaccination, germ-free mice display reduced dendritic cell/macrophage activation that may underlie the deficient vaccine response. Our study identifies the microbiome as a relevant determinant of nucleic acid vaccine response with implications for continued therapeutic development and deployment of these vaccines.

摘要

核酸疫苗,包括 RNA 和 DNA 平台,是对抗传染病和癌症的关键技术,具有很大的应用前景。然而,人们对调节核酸疫苗反应的外在因素知之甚少,而这些因素可能决定其有效性。微生物组被认为是免疫发育和反应的重要调节剂,其在调节某些传统疫苗平台中的作用最近已被发现。我们使用无菌和特定病原体无菌小鼠模型结合不同的蛋白质、DNA 和 mRNA 疫苗方案,证明微生物组是核酸疫苗免疫原性的重要调节剂。尽管微生物组增强了对 mRNA 脂质纳米颗粒免疫的 CD8+T 细胞反应,但微生物组抑制了对 DNA-prime、DNA-蛋白-增强免疫的 Ig 和 CD4+T 细胞反应,表明微生物组在调节这些不同的核酸疫苗平台方面发挥了相反的作用。在 mRNA 脂质纳米颗粒疫苗接种的情况下,无菌小鼠显示出树突状细胞/巨噬细胞激活减少,这可能是疫苗反应缺陷的基础。我们的研究将微生物组确定为核酸疫苗反应的一个相关决定因素,这对这些疫苗的持续治疗开发和应用具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cda4/10656434/dcdedc74f98d/ji2300196absf1.jpg

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