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通过体内电穿孔递送的针对疟疾感染和传播的DNA疫苗组合的有效功能免疫原性

Effective Functional Immunogenicity of a DNA Vaccine Combination Delivered via In Vivo Electroporation Targeting Malaria Infection and Transmission.

作者信息

Cao Yi, Hayashi Clifford T H, Zavala Fidel, Tripathi Abhai K, Simonyan Hayk, Young Colin N, Clark Leor C, Usuda Yukari, Van Parys Jacob M, Kumar Nirbhay

机构信息

Department of Global Health, Milken Institute School of Public Health, George Washington University, Washington, DC 20052, USA.

Department of Molecular Microbiology & Immunology, Johns Hopkins Malaria Research Institute, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD 21205, USA.

出版信息

Vaccines (Basel). 2022 Jul 16;10(7):1134. doi: 10.3390/vaccines10071134.

Abstract

Plasmodium falciparum circumsporozoite protein (PfCSP) and Pfs25 are leading candidates for the development of pre-erythrocytic and transmission-blocking vaccines (TBV), respectively. Although considerable progress has been made in developing PfCSP- and Pfs25-based vaccines, neither have elicited complete protection or transmission blocking in clinical trials. The combination of antigens targeting various life stages is an alternative strategy to develop a more efficacious malaria vaccine. In this study, female and male mice were immunized with DNA plasmids encoding PfCSP and Pfs25, administered alone or in combination via intramuscular in vivo electroporation (EP). Antigen-specific antibodies were analyzed for antibody titers, avidity and isotype by ELISA. Immune protection against sporozoite challenge, using transgenic P. berghei expressing PfCSP and a GFP-luciferase fusion protein (PbPfCSP-GFP/Luc), was assessed by in vivo bioluminescence imaging and blood-stage parasite growth. Transmission reducing activity (TRA) was evaluated in standard membrane feeding assays (SMFA). High levels of PfCSP- and Pfs25-specific antibodies were induced in mice immunized with either DNA vaccine alone or in combination. No difference in antibody titer and avidity was observed for both PfCSP and Pfs25 between the single DNA and combined DNA immunization groups. When challenged by PbPfCSP-GFP/Luc sporozoites, mice immunized with PfCSP alone or combined with Pfs25 revealed significantly reduced liver-stage parasite loads as compared to mice immunized with Pfs25, used as a control. Furthermore, parasite liver loads were negatively correlated with PfCSP-specific antibody levels. When evaluating TRA, we found that immunization with Pfs25 alone or in combination with PfCSP elicited comparable significant transmission reduction. Our studies reveal that the combination of PfCSP and Pfs25 DNAs into a vaccine delivered by in vivo EP in mice does not compromise immunogenicity, infection protection and transmission reduction when compared to each DNA vaccine individually, and provide support for further evaluation of this DNA combination vaccine approach in larger animals and clinical trials.

摘要

恶性疟原虫环子孢子蛋白(PfCSP)和Pfs25分别是开发红细胞前期疫苗和传播阻断疫苗(TBV)的主要候选抗原。尽管在开发基于PfCSP和Pfs25的疫苗方面已经取得了相当大的进展,但在临床试验中,这两种疫苗都没有引发完全的保护作用或传播阻断效果。针对疟原虫不同生活阶段的抗原组合是开发更有效疟疾疫苗的一种替代策略。在本研究中,通过肌肉内体内电穿孔(EP)单独或联合给予编码PfCSP和Pfs25的DNA质粒,对雌性和雄性小鼠进行免疫。通过酶联免疫吸附测定(ELISA)分析抗原特异性抗体的滴度、亲和力和亚型。使用表达PfCSP和绿色荧光蛋白-荧光素酶融合蛋白(PbPfCSP-GFP/Luc)的转基因伯氏疟原虫,通过体内生物发光成像和血液期寄生虫生长情况,评估针对子孢子攻击的免疫保护作用。在标准膜饲试验(SMFA)中评估传播减少活性(TRA)。单独或联合使用DNA疫苗免疫的小鼠均诱导产生了高水平的PfCSP和Pfs25特异性抗体。在PfCSP和Pfs25方面,单DNA免疫组和联合DNA免疫组之间在抗体滴度和亲和力上未观察到差异。当受到PbPfCSP-GFP/Luc子孢子攻击时,与作为对照的用Pfs25免疫的小鼠相比,单独用PfCSP免疫或与Pfs25联合免疫的小鼠肝脏期寄生虫负荷显著降低。此外,寄生虫肝脏负荷与PfCSP特异性抗体水平呈负相关。在评估TRA时,我们发现单独用Pfs25免疫或与PfCSP联合免疫均能产生相当显著的传播减少效果。我们的研究表明,与单独使用每种DNA疫苗相比,将PfCSP和Pfs25的DNA组合成一种通过体内电穿孔给予小鼠的疫苗,在免疫原性、感染保护和传播减少方面并不会受到影响,这为在更大动物和临床试验中进一步评估这种DNA组合疫苗方法提供了支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c84/9323668/9e72f7c45a28/vaccines-10-01134-g001.jpg

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