The Basophil IL-18 Receptor Precisely Regulates the Host Immune Response and Malaria-Induced Intestinal Permeability and Alters Parasite Transmission to Mosquitoes without Effect on Gametocytemia.

Erinn L Donnelly, Nora Céspedes, Gretchen Hansten, Delaney Wagers, Anna M Briggs, Casey Lowder, Joseph Schauer, Lori Haapanen, Judy Van de Water, Shirley Luckhart
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引用次数: 1

Abstract

We have recently demonstrated that basophils are protective against intestinal permeability during malaria and contribute to reduced parasite transmission to mosquitoes. Given that IL-18 is an early cytokine/alarmin in malaria and has been shown to activate basophils, we sought to determine the role of the basophil IL-18R in this protective phenotype. To address this, we infected control [IL18r flox/flox or basoIL-18R (+)] mice and mice with basophils lacking the IL-18R [IL18r flox/flox × Basoph8 or basoIL-18R (-)] with Plasmodium yoelii yoelii 17XNL, a nonlethal strain of mouse malaria. Postinfection (PI), intestinal permeability, ileal mastocytosis, bacteremia, and levels of ileal and plasma cytokines and chemokines were measured through 10 d PI. BasoIL-18R (-) mice exhibited greater intestinal permeability relative to basoIL-18R (+) mice, along with increased plasma levels of proinflammatory cytokines at a single time point PI, day 4 PI, a pattern not observed in basoIL-18R (+) mice. Surprisingly, mosquitoes fed on basoIL-18R (-) mice became infected less frequently than mosquitoes fed on basoIL-18R (+) mice, with no difference in gametocytemia, a pattern that was distinct from that observed previously with basophil-depleted mice. These findings suggest that early basophil-dependent protection of the intestinal barrier in malaria is mediated by IL-18, and that basophil IL-18R-dependent signaling differentially regulates the inflammatory response to infection and parasite transmission.

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嗜碱性粒细胞IL-18受体精确调节宿主免疫反应和疟疾诱导的肠道通透性,改变寄生虫对蚊子的传播,而不影响配子体细胞。
我们最近已经证明,嗜碱性粒细胞在疟疾期间对肠道渗透性有保护作用,并有助于减少寄生虫向蚊子的传播。鉴于IL-18是疟疾的早期细胞因子/警报素,并且已被证明可以激活嗜碱性粒细胞,我们试图确定嗜碱性粒细胞IL-18R在这种保护性表型中的作用。为了解决这个问题,我们用一种非致死性小鼠疟疾约利疟原虫约利17XNL感染了对照[IL18r flox/flox或basoIL-18R(+)]小鼠和缺乏IL-18R的嗜碱性细胞小鼠[IL18r flox/flox × Basoph8或basoIL-18R(-)]。通过10 d PI检测感染后(PI)、肠通透性、回肠肥大细胞增多症、菌血症以及回肠和血浆细胞因子和趋化因子水平。与BasoIL-18R(+)小鼠相比,BasoIL-18R(-)小鼠表现出更大的肠道通透性,并且在PI第4天的单个时间点PI上血浆促炎细胞因子水平升高,这在BasoIL-18R(+)小鼠中没有观察到。令人惊讶的是,喂食basoIL-18R(-)小鼠的蚊子被感染的频率低于喂食basoIL-18R(+)小鼠的蚊子,配子细胞血症没有差异,这一模式与之前在嗜碱性粒细胞耗尽的小鼠中观察到的不同。这些发现表明,疟疾患者肠道屏障的早期嗜碱性粒细胞依赖保护是由IL-18介导的,嗜碱性粒细胞il- 18r依赖的信号传导对感染和寄生虫传播的炎症反应有差异调节。
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