血液阶段疟疾感染引起的抗体依赖性免疫反应有助于红细胞前阶段的保护性免疫

Q4 Immunology and Microbiology Current research in immunology Pub Date : 2023-01-01 DOI:10.1016/j.crimmu.2022.100054
Irene Tumwine-Downey, Katrien Deroost, Prisca Levy, Sarah McLaughlin, Caroline Hosking, Jean Langhorne
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摘要

转录组学和蛋白质组学的进展表明,疟原虫的不同生命周期阶段共享抗原,从而有可能引发对以前从未经历过的寄生虫生命周期阶段的免疫力。使用小鼠疟疾的夏氏疟原虫(AS株)模型,我们研究了血液期感染的孤立暴露,绕过肝脏期感染,如何对孢子虫攻击产生显著保护,从而降低肝脏寄生虫负担。抗体是这种保护的主要免疫驱动因素。血期感染诱导的抗体识别子孢子表面的蛋白质,并在体外损害子孢子的滑动运动,这表明其在体内可能具有功能。此外,缺乏B细胞和/或分泌抗体的小鼠在先前血液期感染的小鼠中不能抵抗子孢子攻击。相反,效应CD4+和CD8+T细胞似乎在保护先前仅暴露于夏氏疟原虫血液阶段的小鼠免受子孢子攻击中不起作用。对红细胞前阶段的保护性反应可以由连续传代的血期寄生虫以及最近蚊子传播的寄生虫引发的感染诱导,并且对不同的夏氏疟原虫菌株(CB菌株)有效,但对另一种啮齿动物疟疾物种约氏疟原虫无效。诱导保护性跨阶段抗体的可能性主张需要考虑对疟疾的阶段特异性和跨阶段免疫反应,因为自然感染会导致暴露于所有生命周期阶段。未来对这些跨阶段抗体的研究为候选抗原的开发提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Antibody-dependent immune responses elicited by blood stage-malaria infection contribute to protective immunity to the pre-erythrocytic stages

Advances in transcriptomics and proteomics have revealed that different life-cycle stages of the malaria parasite, Plasmodium, share antigens, thus allowing for the possibility of eliciting immunity to a parasite life-cycle stage that has not been experienced before. Using the Plasmodium chabaudi (AS strain) model of malaria in mice, we investigated how isolated exposure to blood-stage infection, bypassing a liver-stage infection, yields significant protection to sporozoite challenge resulting in lower liver parasite burdens. Antibodies are the main immune driver of this protection. Antibodies induced by blood-stage infection recognise proteins on the surface of sporozoites and can impair sporozoite gliding motility in vitro, suggesting a possible function in vivo. Furthermore, mice lacking B cells and/or secreted antibodies are not protected against a sporozoite challenge in mice that had a previous blood-stage infection. Conversely, effector CD4+ and CD8+ T cells do not seem to play a role in protection from sporozoite challenge of mice previously exposed only to the blood stages of P. chabaudi. The protective response against pre-erythrocytic stages can be induced by infections initiated by serially passaged blood-stage parasites as well as recently mosquito transmitted parasites and is effective against a different strain of P. chabaudi (CB strain), but not against another rodent malaria species, P. yoelii. The possibility to induce protective cross-stage antibodies advocates the need to consider both stage-specific and cross-stage immune responses to malaria, as natural infection elicits exposure to all life-cycle stages. Future investigation into these cross-stage antibodies allows the opportunity for candidate antigens to contribute to malaria vaccine development.

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