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The Nonartemisinin Sesquiterpene Lactones Parthenin and Parthenolide Block Plasmodium falciparum Sexual Stage Transmission

机译:Nonartemisinin倍半萜烯内酯中的帕斯汀和帕特洛林阻断恶性疟原虫的性阶段传播

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摘要

Parthenin and parthenolide are natural products that are closely related in structure to artemisinin, which is also a sesquiterpene lactone (SQL) and one of the most important antimalarial drugs available. Parthenin, like artemisinin, has an effect on Plasmodium blood stage development. We extended the evaluation of parthenin as a potential therapeutic for the transmissible stages of Plasmodium falciparum as it transitions between human and mosquito, with the aim of gaining potential mechanistic insight into the inhibitory activity of this compound. We posited that if parthenin targets different biological pathways in the parasite, this in turn could pave the way for the development of druggable compounds that could prevent the spread of artemisinin-resistant parasites. We examined parthenin's effect on male gamete activation and the ookinete-to-oocyst transition in the mosquito as well as on stage V gametocytes that are present in peripheral blood. Parthenin arrested parasite development for each of the stages tested. The broad inhibitory properties of parthenin on the evaluated parasite stages may suggest different mechanisms of action between parthenin and artemisinin. Parthenin's cytotoxicity notwithstanding, its demonstrated activity in this study suggests that structurally related SQLs with a better safety profile deserve further exploration. We used our battery of assays to test parthenolide, which has a more compelling safety profile. Parthenolide demonstrated activity nearly identical to that of parthenin against P. falciparum, highlighting its potential as a possible transmission-blocking drug scaffold. We discuss the context of the evidence with respect to the next steps toward expanding the current antimalarial arsenal.
机译:爬山虎苷和爬山酚是与青蒿素结构密切相关的天然产物,青蒿素也是一种倍半萜内酯(SQL),也是最重要的抗疟药之一。像青蒿素一样,帕特农宁对疟原虫血液阶段的发育有影响。我们扩展了对于在人和蚊之间转换的恶性疟原虫可传播阶段潜在的治疗方法,其中帕台单宁的评估,目的是获得对该化合物的抑制活性的潜在机理研究。我们假设,如果帕台单宁在该寄生虫中靶向不同的生物途径,这反过来又可以为开发可预防青蒿素耐药性寄生虫的可药用化合物铺平道路。我们检查了帕斯汀对蚊子中雄性配子活化和从卵子到卵囊过渡以及对外周血中存在的V期配子细胞的影响。在每个测试阶段中,帕德宁都阻止了寄生虫的发育。在评估的寄生虫阶段中,parthenin的广泛抑制特性可能暗示了parthenin和青蒿素之间的不同作用机制。尽管有Parthenin的细胞毒性,但其在本研究中的活性表明,具有更好安全性的结构相关SQL值得进一步探索。我们使用了一系列的检测方法来检测单苯乙内酯,该药具有更引人注目的安全性。 Parthenolide表现出与Parthenin对抗恶性疟原虫的活性几乎相同,突出了其作为可能的传递阻断药物支架的潜力。我们讨论了有关扩大当前抗疟药库的下一步措施的证据背景。

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