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Antibodies to plant-produced Plasmodium falciparum sexual stage protein Pfs25 exhibit transmission blocking activity

机译:植物产生的恶性疟原虫性期蛋白Pfs25的抗体表现出传递阻断活性

摘要

Malaria is a serious and sometimes fatal mosquito-borne disease caused by a protozoan parasite. Each year, it is estimated that over one million people are killed by malaria, yet the disease is preventable and treatable. Developing vaccines against the parasite is a critical component in the fight against malaria and these vaccines can target different stages of the pathogen's life cycle. We are targeting sexual stage proteins of P. falciparum, which are found on the surface of the parasite reproductive cells present in the mosquito gut. Antibodies against these proteins block the progression of the parasite's life cycle in the mosquito, and thus block transmission to the next human host. Transmission blocking vaccines are essential to the malaria eradication program to ease the disease burden at the population level. We have successfully produced multiple versions of the Pfs25 antigen in a plant virus-based transient expression system and have evaluated these vaccine candidates in an animal model. The targets are expressed in plants at a high level, are soluble and most importantly, generate strong transmission blocking activity as determined by a standard membrane feeding assay. These data demonstrate the feasibility of expressing Plasmodium antigens in a plant-based system for the economic production of a transmission blocking vaccine against malaria. © 2011 Landes Bioscience.
机译:疟疾是一种由原生动物寄生虫引起的严重的,有时甚至是致命的蚊媒疾病。据估计,每年有超过一百万人被疟疾杀死,但这种疾病是可以预防和治疗的。开发针对寄生虫的疫苗是抗击疟疾的关键组成部分,这些疫苗可针对病原体生命周期的不同阶段。我们的目标是恶性疟原虫的性阶段蛋白,该蛋白在蚊子体内存在的寄生虫生殖细胞表面被发现。针对这些蛋白质的抗体会阻止寄生虫在蚊子中的生命周期进程,从而阻止其传播给下一个人类宿主。阻断传播的疫苗对于消除疟疾计划至关重要,以减轻人群的疾病负担。我们已经在基于植物病毒的瞬时表达系统中成功生产了多个版本的Pfs25抗原,并已在动物模型中评估了这些候选疫苗。靶标在植物中高水平表达,可溶,最重要的是,可以通过标准的膜饲喂测定法确定产生强大的传递阻断活性。这些数据证明了在基于植物的系统中表达疟原虫抗原以经济生产抗疟疾的传播阻断疫苗的可行性。 ©2011 Landes Bioscience。

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