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Accumulation of artemisinin trioxane derivatives within neutral lipids of Plasmodium falciparum malaria parasites is endoperoxide-dependent

机译:青蒿素三恶烷衍生物在恶性疟原虫疟原虫的中性脂质中的积累是内氧化物过氧化物依赖的

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摘要

The antimalarial trioxanes, exemplified by the naturally occurring sesquiterpene lactone artemisinin and its semi-synthetic derivatives, contain an endoperoxide pharmacophore that lends tremendous potency against Plasmodium parasites. Despite decades of research, their mechanism of action remains unresolved. A leading model of anti-plasmodial activity hypothesizes that iron-mediated cleavage of the endoperoxide bridge generates cytotoxic drug metabolites capable of damaging cellular macromolecules. To probe the malarial targets of the endoperoxide drugs, we studied the distribution of fluorescent dansyl trioxane derivatives in living, intraerythrocytic-stage P. falciparum parasites using microscopic imaging. The fluorescent trioxanes rapidly accumulated in parasitized erythrocytes, localizing within digestive vacuole-associated neutral lipid bodies of trophozoites and schizonts, and surrounding the developing merozoite membranes. Artemisinin pre-treatment significantly reduced fluorescent labeling of neutral lipid bodies, while iron chelation increased non-specific cytoplasmic localization. To further explore the effects of endoperoxides on cellular lipids, we used an oxidation-sensitive BODIPY lipid probe to show the presence of artemisinin-induced peroxyl radicals in parasite membranes. Lipid extracts from artemisinin-exposed parasites contained increased amounts of free fatty acids and a novel cholesteryl ester. The cellular accumulation patterns and effects on lipids were entirely endoperoxide-dependent, as inactive dioxolane analogs lacking the endoperoxide moiety failed to label neutral lipid bodies or induce oxidative membrane damage. In the parasite digestive vacuole, neutral lipids closely associate with heme and promote hemozoin formation. We propose that the trioxane artemisinin and its derivatives are activated by heme-iron within the neutral lipid environment where they initiate oxidation reactions that damage parasite membranes.
机译:抗疟疾三恶烷以天然的倍半萜烯内酯青蒿素及其半合成衍生物为例,其内过氧化物药效基团具有极大的抗疟原虫寄生虫的能力。尽管进行了数十年的研究,但其作用机理仍未解决。一种抗疟原虫活性的领先模型假设,铁介导的内过氧化物桥的裂解会产生能够破坏细胞大分子的细胞毒性药物代谢产物。为了探测内过氧化物药物的疟疾靶标,我们使用显微镜成像研究了荧光丹磺酰三恶烷衍生物在活的,红细胞内阶段的恶性疟原虫中的分布。荧光三恶烷迅速聚集在寄生的红细胞中,定位在滋养体和裂殖体的与消化液相关的中性脂质体内,并围绕发育中的裂殖子膜。青蒿素预处理显着降低中性脂质体的荧光标记,而铁螯合则增加非特异性细胞质定位。为了进一步探讨内过氧化物对细胞脂质的影响,我们使用了一种氧化敏感的BODIPY脂质探针来显示在寄生虫膜中青蒿素诱导的过氧自由基的存在。从青蒿素接触的寄生虫中提取的脂质含有增加量的游离脂肪酸和新型胆固醇酯。细胞积累模式和对脂质的影响完全依赖于内过氧化物,因为缺乏内过氧化物部分的无活性二氧戊环类似物无法标记中性脂质体或诱导氧化膜损伤。在寄生虫的消化液中,中性脂质与血红素紧密结合并促进血红素的形成。我们建议,三恶烷青蒿素及其衍生物在中性脂质环境中被血红素铁激活,在血红素铁中它们会引发氧化反应,从而破坏寄生虫的膜。

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