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Synergistic malaria vaccine combinations identified by systematic antigen screening

机译:通过系统性抗原筛选鉴定出的协同疟疾疫苗组合

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摘要

A highly effective vaccine would be a valuable weapon in the drive toward malaria elimination. No such vaccine currently exists, and only a handful of the hundreds of potential candidates in the parasite genome have been evaluated. In this study, we systematically evaluated 29 antigens likely to be involved in erythrocyte invasion, an essential developmental stage during which the malaria parasite is vulnerable to antibody-mediated inhibition. Testing antigens alone and in combination identified several strain-transcending targets that had synergistic combinatorial effects in vitro, while studies in an endemic population revealed that combinations of the same antigens were associated with protection from febrile malaria. Video microscopy established that the most effective combinations targeted multiple discrete stages of invasion, suggesting a mechanistic explanation for synergy. Overall, this study both identifies specific antigen combinations for high-priority clinical testing and establishes a generalizable approach that is more likely to produce effective vaccines.
机译:高效疫苗将成为消除疟疾的重要武器。目前尚不存在这种疫苗,并且仅评估了寄生虫基因组中数百种潜在的候选疫苗。在这项研究中,我们系统地评估了可能与红细胞入侵有关的29种抗原,这是疟疾寄生虫易受抗体介导的抑制作用的基本发育阶段。单独或联合测试抗原可鉴定出几个具有超越性的靶标,这些靶标在体外具有协同的组合作用,而在地方性人群中的研究表明,相同抗原的组合可预防高热疟疾。电子显微镜确定最有效的组合针对了多个离散的浸润阶段,提示了协同作用的机械解释。总的来说,这项研究既确定了用于高优先级临床测试的特定抗原组合,又建立了更可能产生有效疫苗的通用方法。

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