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ALVAC-Simian Immunodeficiency Virus 载体表达的 CD40L 可消除猕猴的 T 细胞反应。

Expression of CD40L by the ALVAC-Simian Immunodeficiency Virus Vector Abrogates T Cell Responses in Macaques.

机构信息

Animal Models and Retroviral Vaccines Section, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.

Department of Medicine, University of Toronto, Toronto, Canada.

出版信息

J Virol. 2020 Feb 28;94(6). doi: 10.1128/JVI.01933-19.

Abstract

Immunization with recombinant ALVAC/gp120 alum vaccine provided modest protection from human immunodeficiency virus type 1 (HIV-1) and simian immunodeficiency virus (SIV) acquisition in humans and macaques. Vaccine-mediated protection was associated with the elicitation of IgG against the envelope V2 loop and of envelope-specific CD4 T cell responses. We hypothesized that the simultaneous expression of the costimulatory molecule CD40L (CD154) by the ALVAC-HIV vector could increase both protective humoral and cellular responses. We engineered an ALVAC-SIV coexpressing CD40L with SIV (ALVAC-SIV/CD40L) , , and genes. We compared its immunogenicity in macaques with that of a canonical ALVAC-SIV, with both given as a vector-prime/gp120 in alum boost strategy. The ALVAC-SIV/CD40L was superior to the ALVAC-SIV regimen in inducing binding and tier 1 neutralizing antibodies against the gp120. The increase in humoral responses was associated with the expression of the membrane-bound form of the CD40L by CD4 T cells in lymph nodes. Unexpectedly, the ALVAC-SIV/CD40L vector had a blunting effect on CD4 Th1 helper responses and instead favored the induction of myeloid-derived suppressor cells, the immune-suppressive interleukin-10 (IL-10) cytokine, and the down-modulatory tryptophan catabolism. Ultimately, this strategy failed to protect macaques from SIV acquisition. Taken together, these results underlie the importance of balanced vaccine-induced activating versus suppressive immune responses in affording protection from HIV. CD40-CD40 ligand (CD40L) interaction is crucial for inducing effective cytotoxic and humoral responses against pathogens. Because of its immunomodulatory function, CD40L has been used to enhance immune responses to vaccines, including candidate vaccines for HIV. The only successful vaccine ever tested in humans utilized a strategy combining canarypox virus-based vector (ALVAC) together with an envelope protein (gp120) adjuvanted in alum. This strategy showed limited efficacy in preventing HIV-1/SIV acquisition in humans and macaques. In both species, protection was associated with vaccine-induced antibodies against the HIV envelope and CD4 T cell responses, including type 1 antiviral responses. In this study, we tested whether augmenting CD40L expression by coexpressing it with the ALVAC vector could increase the protective immune responses. Although coexpression of CD40L did increase humoral responses, it blunted type 1 CD4 T cell responses against the SIV envelope protein and failed to protect macaques from viral infection.

摘要

免疫接种重组 ALVAC/gp120 明矾疫苗为人类和猕猴提供了适度的保护,防止人类免疫缺陷病毒 1 型(HIV-1)和猴免疫缺陷病毒(SIV)的获得。疫苗介导的保护与针对包膜 V2 环的 IgG 以及包膜特异性 CD4 T 细胞反应的诱导有关。我们假设,ALVAC-HIV 载体同时表达共刺激分子 CD40L(CD154)可以增加保护性体液和细胞反应。我们设计了一种同时表达 SIV 的 ALVAC-SIV/CD40L,其中包含 SIV 基因和 CD40L 基因。我们比较了其在猕猴中的免疫原性,与作为载体-prime/gp120 在明矾增强策略中的经典 ALVAC-SIV 进行了比较。ALVAC-SIV/CD40L 在诱导针对 gp120 的结合和 1 型中和抗体方面优于 ALVAC-SIV 方案。体液反应的增加与淋巴结中 CD4 T 细胞表达膜结合形式的 CD40L 有关。出乎意料的是,ALVAC-SIV/CD40L 载体对 CD4 Th1 辅助反应具有抑制作用,而有利于诱导髓样来源的抑制性细胞、免疫抑制性白细胞介素 10(IL-10)细胞因子和下调色氨酸代谢。最终,该策略未能保护猕猴免受 SIV 获得。总之,这些结果强调了在提供 HIV 保护方面,平衡疫苗诱导的激活与抑制性免疫反应的重要性。CD40-CD40 配体(CD40L)相互作用对于诱导针对病原体的有效细胞毒性和体液反应至关重要。由于其免疫调节功能,CD40L 已被用于增强包括 HIV 候选疫苗在内的疫苗的免疫反应。唯一在人类中进行过测试的成功疫苗是一种将金丝雀痘病毒载体(ALVAC)与明矾佐剂的包膜蛋白(gp120)相结合的策略。该策略在预防人类和猕猴的 HIV-1/SIV 获得方面显示出有限的功效。在这两个物种中,保护与疫苗诱导的针对 HIV 包膜的抗体和 CD4 T 细胞反应有关,包括 1 型抗病毒反应。在这项研究中,我们测试了共表达 CD40L 是否可以通过与 ALVAC 载体共表达来增加保护性免疫反应。尽管共表达 CD40L 确实增加了体液反应,但它抑制了针对 SIV 包膜蛋白的 1 型 CD4 T 细胞反应,未能保护猕猴免受病毒感染。

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