Distinct immunogenicity outcomes of DNA vaccines encoding malaria transmission-blocking vaccine target antigens Pfs230D1M and Pvs230D1.

Vaccine Pub Date : 2025-02-15 Epub Date: 2025-01-08 DOI:10.1016/j.vaccine.2024.126696
Yi Cao, Maisa da Silva Araujo, Cynthia G Lorang, Najara Akira Costa Dos Santos, Abhai Tripathi, Joseph Vinetz, Nirbhay Kumar
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Abstract

Transmission-blocking vaccines (TBVs) targeting sexual-stage antigens represent a critical tool for malaria control and elimination through inhibiting parasite development within mosquitoes. P230, displayed on the surface of gametocytes and gametes, plays a crucial role in gamete fertilization and is one of the leading TBV candidates for both Plasmodium falciparum and P. vivax. Antibodies induced by immunization with a recombinant P. falciparum protein encompassing a portion of N-terminal prodomain and domain 1 (Pfs230D1M) have revealed strong transmission-reducing activity (TRA) in preclinical studies. While a recombinant Pvs230D1, the P. vivax homolog of Pfs230D1M, has not been evaluated in preclinical immunogenicity studies, both Pfs230D1M and Pvs230D1 are currently scheduled for evaluation in clinical trials. In this study, we developed DNA vaccines encoding Pfs230D1M and Pvs230D1 for a side-by-side comparison of their immunogenicity. Potent antibody responses were induced in mice immunized with each DNA vaccine delivered by in vivo electroporation (EP). Anti-Pfs230D1M IgG exhibited potent dose-dependent TRA in a complement-dependent manner in standard membrane feeding assays (SMFA). In contrast, anti-Pvs230D1 IgG exhibited only moderate TRA in direct membrane feeding assay (DMFA) using blood from multiple P. vivax-infected donors. Antibodies induced by the Pfs230D1M DNA vaccine revealed a strong IgG1 bias and higher avidity as compared to a balanced IgG1/IgG2 response and lower antibody avidity by the Pvs230D1 DNA vaccine. Our results demonstrate the potential of both Pfs230D1M and Pvs230D1 DNA vaccines as TBV candidates against P. falciparum and P. vivax, and provide a rationale for future optimization to enhance the efficacy of DNA vaccines based on Pfs230 and Pvs230.

编码疟疾传播阻断疫苗靶抗原Pfs230D1M和Pvs230D1的DNA疫苗的不同免疫原性结果
针对性阶段抗原的传播阻断疫苗(TBVs)是通过抑制蚊子体内寄生虫的发育来控制和消除疟疾的重要工具。P230显示在配子细胞和配子表面,在配子受精中起重要作用,是恶性疟原虫和间日疟原虫的主要TBV候选者之一。含有部分n端前结构域和结构域1的重组恶性疟原虫蛋白(Pfs230D1M)免疫诱导的抗体在临床前研究中显示出很强的传播降低活性(TRA)。虽然重组Pvs230D1 (Pfs230D1M的间日疟原虫同源物)尚未在临床前免疫原性研究中进行评估,但Pfs230D1M和Pvs230D1目前正计划在临床试验中进行评估。在这项研究中,我们开发了编码Pfs230D1M和Pvs230D1的DNA疫苗,并排比较了它们的免疫原性。通过体内电穿孔(EP)给药的每一种DNA疫苗均可诱导小鼠产生强效抗体反应。在标准膜饲养试验(SMFA)中,抗pfs230d1m IgG以补体依赖的方式表现出有效的剂量依赖性TRA。相比之下,在直接膜喂养试验(DMFA)中,使用多个间日疟原虫感染供者的血液,抗pvs230d1 IgG仅表现出中度TRA。Pfs230D1M DNA疫苗诱导的抗体显示出强烈的IgG1偏倚和更高的亲和度,而Pvs230D1 DNA疫苗的IgG1/IgG2反应平衡,抗体亲和度较低。我们的研究结果证明了Pfs230D1M和Pvs230D1 DNA疫苗作为恶性疟原虫和间日疟原虫TBV候选疫苗的潜力,并为未来优化基于Pfs230和Pvs230的DNA疫苗的有效性提供了依据。
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