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A novel blood-feeding detoxification pathway in Nippostrongylus brasiliensis L3 reveals a potential checkpoint for arresting hookworm development

机译:巴西新拟南芥L3的一种新型采血排毒途径揭示了阻止钩虫发育的潜在检查站

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摘要

As part of on-going efforts to control hookworm infection, the “human hookworm vaccine initiative” has recognised blood feeding as a feasible therapeutic target for inducing immunity against hookworm infection. To this end, molecular approaches have been used to identify candidate targets, such as Necator americanus (Na) haemoglobinase aspartic protease-1 (APR-1), with immunogenicity profiled in canine and hamster models. We sought to accelerate the immune analysis of these identified therapeutic targets by developing an appropriate mouse model. Here we demonstrate that Nippostrongylus brasiliensis (Nb), a phylogenetically distant strongylid nematode of rodents, begins blood feeding early in its development and that immunisation with Na-APR-1 can block its growth and completion of its life cycle. Furthermore, we identify a new haem detoxification pathway in Nb required for blood feeding that can be blocked by drugs of the quinolone family, reducing both infection burden and the associated anaemia in rodents. Collectively, our findings show that haem metabolism has potential as a checkpoint for interrupting hookworm development in early stages of the hookworm life cycle and that the Nippostrongylus brasiliensis rodent model is relevant for identifying novel therapeutic targets against human hookworm.
机译:作为控制钩虫感染的持续努力的一部分,“人类钩虫疫苗计划”已将血液喂养作为诱导抗钩虫感染免疫力的可行治疗目标。为此,已经使用分子方法来鉴定候选靶标,例如美国的Necator(Na)血红蛋白酶天冬氨酸蛋白酶1(APR-1),在犬和仓鼠模型中具有免疫原性。我们试图通过开发合适的小鼠模型来加速对这些已鉴定治疗靶标的免疫分析。在这里,我们证明了啮齿类动物的系统发育远缘的巴西线虫线虫(Nippostrongylus brasiliensis(Nb))在其发育的早期就开始供血,而用Na-APR-1进行免疫可以阻断其生长和生命周期的完成。此外,我们确定了供血所需的Nb中新的血红素排毒途径,该途径可以被喹诺酮家族的药物阻断,从而减少了啮齿动物的感染负担和相关的贫血。总的来说,我们的研究结果表明,血红素代谢有潜力作为在钩虫生命周期早期中断钩虫发育的检查点,而巴西夜蛾啮齿动物模型与确定针对人类钩虫的新型治疗靶点有关。

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