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Protection against Plasmodium chabaudi Malaria Induced by Immunization with Apical Membrane Antigen 1 and Merozoite Surface Protein 1 in the Absence of Gamma Interferon or Interleukin-4

机译:在没有γ干扰素或白介素4的情况下,通过顶膜抗原1和裂殖子表面蛋白1免疫诱导的针对沙巴氏疟原虫的保护作用。

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摘要

Strategies to optimize formulations of multisubunit malaria vaccines require a basic knowledge of underlying protective immune mechanisms induced by each vaccine component. In the present study, we evaluated the contribution of antibody-mediated and cell-mediated immune mechanisms to the protection induced by immunization with two blood-stage malaria vaccine candidate antigens, apical membrane antigen 1 (AMA-1) and merozoite surface protein 1 (MSP-1). Immunologically intact or selected immunologic knockout mice were immunized with purified recombinant Plasmodium chabaudi AMA-1 (PcAMA-1) and/or the 42-kDa C-terminal processing fragment of P. chabaudi MSP-1 (MSP-142). The efficacy of immunization in each animal model was measured as protection against blood-stage P. chabaudi malaria. Immunization of B-cell-deficient JH−/− mice indicated that PcAMA-1 vaccine-induced immunity is largely antibody dependent. In contrast, JH−/− mice immunized with PcMSP-142 were partially protected against P. chabaudi malaria, indicating a role for protective antibody-dependent and antibody-independent mechanisms of immunity. The involvement of γδ T cells in vaccine-induced PcAMA-1 and/or PcMSP-142 protection was minor. Analysis of the isotypic profile of antigen-specific antibodies induced by immunization of immunologically intact mice revealed a dominant IgG1 response. However, neither interleukin-4 and the production of IgG1 antibodies nor gamma interferon and the production of IgG2a/c antibodies were essential for PcAMA-1 and/or PcMSP-142 vaccine-induced protection. Therefore, for protective antibody-mediated immunity, vaccine adjuvants and delivery systems for AMA-1- and MSP-1-based vaccines can be selected for their ability to maximize responses irrespective of IgG isotype or any Th1 versus Th2 bias in the CD4+-T-cell response.
机译:优化多亚基疟疾疫苗配方的策略需要有关每种疫苗成分诱导的潜在保护性免疫机制的基本知识。在本研究中,我们评估了抗体介导的和细胞介导的免疫机制对两种血液阶段疟疾疫苗候选抗原,顶膜抗原1(AMA-1)和裂殖子表面蛋白1( MSP-1)。用纯化的重组chabaudi chabaudi AMA-1(PcAMA-1)和/或chabaudi MSP-1(MSP-142)的42 kDa C末端加工片段免疫免疫完整或选定的免疫敲除小鼠。测量了在每种动物模型中的免疫效力,以预防血液阶段的沙巴氏假单胞菌疟疾。 B细胞缺陷JH-/-小鼠的免疫接种表明PcAMA-1疫苗诱导的免疫很大程度上依赖抗体。相比之下,用PcMSP-142免疫的JH-/-小鼠受到部分保护,免遭沙巴氏假单胞菌疟疾的侵袭,这表明它具有保护性抗体依赖性和抗体依赖性免疫机制。 γδT细胞在疫苗诱导的PcAMA-1和/或PcMSP-142保护中的参与很小。通过免疫完整小鼠免疫诱导的抗原特异性抗体的同型型分析表明,显性IgG1反应。但是,对于PcAMA-1和/或PcMSP-142疫苗诱导的保护,白介素4和IgG1抗体的产生以及伽马干扰素和IgG2a / c抗体的产生都不是必需的。因此,对于保护性抗体介导的免疫,可以选择基于AMA-1-和MSP-1的疫苗的佐剂和递送系统,以使它们能够最大限度地提高反应能力,而与IgG同种型或CD4 + -T中的Th1 vs Th2偏倚无关细胞反应。

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