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A Role for Immune Responses against Non-CS Components in the Cross-Species Protection Induced by Immunization with Irradiated Malaria Sporozoites

机译:针对非CS成分的免疫应答在辐照疟疾子孢子虫免疫诱导的跨物种保护中的作用。

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摘要

Immunization with irradiated Plasmodium sporozoites induces sterile immunity in rodents, monkeys and humans. The major surface component of the sporozoite the circumsporozoite protein (CS) long considered as the antigen predominantly responsible for this immunity, thus remains the leading candidate antigen for vaccines targeting the parasite's pre-erythrocytic (PE) stages. However, this role for CS was questioned when we recently showed that immunization with irradiated sporozoites (IrrSpz) of a P. berghei line whose endogenous CS was replaced by that of P. falciparum still conferred sterile protection against challenge with wild type P. berghei sporozoites. In order to investigate the involvement of CS in the cross-species protection recently observed between the two rodent parasites P. berghei and P. yoelii, we adopted our gene replacement approach for the P. yoelii CS and exploited the ability to conduct reciprocal challenges. Overall, we found that immunization led to sterile immunity irrespective of the origin of the CS in the immunizing or challenge sporozoites. However, for some combinations, immune responses to CS contributed to the acquisition of protective immunity and were dependent on the immunizing IrrSpz dose. Nonetheless, when data from all the cross-species immunization/challenges were considered, the immune responses directed against non-CS parasite antigens shared by the two parasite species played a major role in the sterile protection induced by immunization with IrrSpz. This opens the perspective to develop a single vaccine formulation that could protect against multiple parasite species.
机译:辐照的疟原虫子孢子免疫可在啮齿动物,猴子和人类中诱导无菌免疫。长久以来被认为是主要负责这种免疫的抗原的子孢子的主要表面成分,环子孢子蛋白(CS),因此仍然是针对寄生虫的前红细胞生成(PE)阶段的疫苗的主要候选抗原。但是,当我们最近发现用内源CS被恶性疟原虫替代的伯氏疟原虫品系的辐照子孢子(IrrSpz)进行免疫接种仍可提供针对野生型伯氏疟原虫子孢子的攻击的无菌保护时,对CS的作用受到质疑。 。为了调查CS在最近发现的两个啮齿类动物伯氏疟原虫和约氏疟原虫之间的跨物种保护中的参与,我们对约氏疟原虫CS采用了基因替代方法,并利用了进行相互攻击的能力。总的来说,我们发现免疫导致无菌免疫,而不管免疫或挑战子孢子中CS的起源如何。但是,对于某些组合,对CS的免疫反应有助于获得保护性免疫,并且取决于免疫的IrrSpz剂量。尽管如此,当考虑所有跨物种免疫/挑战的数据时,针对两种寄生虫共有的非CS寄生虫抗原的免疫反应在用IrrSpz免疫诱导的无菌保护中起着重要作用。这为开发一种可以预防多种寄生虫种类的单一疫苗制剂开辟了前景。

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