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I 型干扰素促进病毒载体疫苗接种中的体液免疫。

Type I Interferon Promotes Humoral Immunity in Viral Vector Vaccination.

机构信息

School of Basic Medical Sciences, Wuhan Universitygrid.49470.3e, Wuhan, Hubei, China.

Department of Microbiology and Immunology, University of Texas Medical Branch, Galveston, Texas, USA.

出版信息

J Virol. 2021 Oct 27;95(22):e0092521. doi: 10.1128/JVI.00925-21. Epub 2021 Sep 8.

Abstract

Recombinant viral vectors represent an important platform for vaccine delivery. Our recent studies have demonstrated distinct innate immune profiles in responding to viral vectors of different families (e.g., adenovirus versus poxvirus): while human Ad5 vector is minimally innate immune stimulatory, the poxviral vector ALVAC induces strong innate response and stimulates type I interferon (IFN) and inflammasome activation. However, the impact of the innate immune signaling on vaccine-induced adaptive immunity in viral vector vaccination is less clear. Here, we show that Modified Vaccinia Ankara (MVA), another poxviral vector, stimulated a type I IFN response in innate immune cells through cGAS-STING. Using MVA-HIV vaccine as a model, we found that type I IFN signaling promoted the generation of humoral immunity in MVA-HIV vaccination . Following vaccination, type I IFN receptor-knockout (IFNAR1) mice produced significantly lower levels of total and HIV gp120-specific antibodies compared to wild-type (WT) mice. Consistent with the antibody response, a type I IFN signaling deficiency also led to reduced levels of plasma cells and memory-like B cells compared to WT mice. Furthermore, analysis of vaccine-induced CD4 T cells showed that type I IFN signaling also promoted the generation of a vaccine-specific CD4 T-cell response and a T follicular helper (Tfh) response in mice. Together, our data indicate a role for type I IFN signaling in promoting humoral immunity in poxviral vector vaccination. The study suggests that modulating type I IFN and its associated innate immune pathways will likely affect vaccine efficacy. Viral vectors, including MVA, are an important antigen delivery platform and have been commonly used in vaccine development. Understanding the innate host-viral vector interactions and their impact on vaccine-induced immunity is critical but understudied. Using MVA-HIV vaccination of WT and IFNAR1 mice as a model, we report that type I IFN signaling promotes humoral immunity in MVA vaccination, including vaccine-induced antibody, B-cell, and Tfh responses. Our findings provide insights that not only add to our basic understanding of host-viral vector interactions but also will aid in improving vaccine design by potentially modulating type I IFN and its associated innate immune pathways in viral vector vaccination.

摘要

重组病毒载体是疫苗传递的重要平台。我们最近的研究表明,不同家族的病毒载体(例如腺病毒与痘病毒)会引起不同的固有免疫反应:人 5 型腺病毒载体的固有免疫刺激性最低,而痘病毒载体 ALVAC 则会引起强烈的固有免疫反应,并刺激 I 型干扰素(IFN)和炎性小体的激活。然而,固有免疫信号对病毒载体疫苗接种中疫苗诱导的适应性免疫的影响尚不清楚。在这里,我们表明,另一种痘病毒载体 Modified Vaccinia Ankara(MVA)通过 cGAS-STING 刺激固有免疫细胞中的 I 型 IFN 反应。使用 MVA-HIV 疫苗作为模型,我们发现 I 型 IFN 信号在 MVA-HIV 疫苗接种中促进了体液免疫的产生。接种疫苗后,I 型 IFN 受体敲除(IFNAR1)小鼠产生的总抗体和 HIV gp120 特异性抗体水平明显低于野生型(WT)小鼠。与抗体反应一致,与 WT 小鼠相比,IFNAR1 信号缺陷小鼠的浆细胞和记忆样 B 细胞水平也降低。此外,对疫苗诱导的 CD4 T 细胞的分析表明,I 型 IFN 信号也促进了 CD4 T 细胞反应和 T 滤泡辅助(Tfh)反应的产生。总之,我们的数据表明 I 型 IFN 信号在促进痘病毒载体疫苗接种中的体液免疫中起作用。该研究表明,调节 I 型 IFN 及其相关的固有免疫途径可能会影响疫苗的疗效。病毒载体,包括 MVA,是一种重要的抗原传递平台,已广泛用于疫苗开发。了解宿主-病毒载体相互作用及其对疫苗诱导免疫的影响至关重要,但研究不足。我们使用 MVA-HIV 对 WT 和 IFNAR1 小鼠进行疫苗接种作为模型,报告 I 型 IFN 信号在 MVA 疫苗接种中促进体液免疫,包括疫苗诱导的抗体、B 细胞和 Tfh 反应。我们的发现不仅提供了对宿主-病毒载体相互作用的基本理解,而且还通过在病毒载体疫苗接种中潜在地调节 I 型 IFN 及其相关的固有免疫途径,为改善疫苗设计提供了思路。

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