首页> 外文期刊>Antimicrobial agents and chemotherapy. >Maduramicin Rapidly Eliminates Malaria Parasites and Potentiates the Gametocytocidal Activity of the Pyrazoleamide PA21A050
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Maduramicin Rapidly Eliminates Malaria Parasites and Potentiates the Gametocytocidal Activity of the Pyrazoleamide PA21A050

机译:Maduramicin快速消除疟原虫并增强吡唑酰胺PA21A050的杀细胞活性

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New strategies targeting Plasmodium falciparum gametocytes, the sexual-stage parasites that are responsible for malaria transmission, are needed to eradicate this disease. Most commonly used antimalarials are ineffective against P. falciparum gametocytes, allowing patients to continue to be infectious for over a week after asexual parasite clearance. A recent screen for gameto-cytocidal compounds demonstrated that the carboxylic polyether ionophore maduramicin is active at low nanomolar concentrations against P. falciparum sexual stages. In this study, we showed that maduramicin has an EC50 (effective concentration that inhibits the signal by 50%) of 14.8 nM against late-stage gametocytes and significantly blocks in vivo transmission in a mouse model of malaria transmission. In contrast to other reported gametocytocidal agents, maduramicin acts rapidly in vitro, eliminating gametocytes and asexual schizonts in less than 12 h without affecting uninfected red blood cells (RBCs). Ring stage parasites are cleared by 24 h. Within an hour of drug treatment, 40% of the normally crescent-shaped gametocytes round up and become spherical. The number of round gametocytes increases to >60% by 2 h, even before a change in membrane potential as monitored by MitoProbe DiIC1 (5) is detectable. Maduramicin is not preferentially taken up by gametocyte-infected RBCs compared to uninfected RBCs, suggesting that gametocytes are more sensitive to alterations in cation concentration than RBCs. Moreover, the addition of 15.6 nM maduramicin enhanced the gametocytocidal activity of the pyrazoleamide PA21A050, which is a promising new antimalarial candidate associated with an increase in intracellular Na+ concentration that is proposed to be due to inhibition of PfATP4, a putative Na+ pump. These results underscore the importance of cation homeostasis in sexual as well as asexual intraerythrocytic-stage P. falciparum parasites and the potential of targeting this pathway for drug development.
机译:根除恶性疟原虫配体细胞(负责疟疾传播的性阶段寄生虫)的新策略需要消除这种疾病。最常用的抗疟药对恶性疟原虫配子细胞无效,使患者在无性寄生虫清除后一周内仍具有传染性。最近的一种对杀细胞杀虫剂化合物的筛选显示,羧酸聚醚离子载体马杜菌素在低纳摩尔浓度下对恶性疟原虫性阶段具有活性。在这项研究中,我们表明马杜菌素对晚期配子细胞的EC50(有效浓度可抑制信号50%)为14.8 nM,并在小鼠疟疾传播模型中显着阻断了体内传播。与其他报道的杀细胞杀灭剂相反,马杜菌素在体外迅速起作用,在不到12小时内消除了配子细胞和无性裂殖体,而不会影响未感染的红细胞(RBC)。环形台寄生虫在24小时内清除。在药物治疗的一个小时内,通常新月形的配子细胞中有40%会聚拢并变成球形。甚至在可以检测到由MitoProbe DiIC1(5)监测到的膜电位变化之前,到2小时,圆形配子细胞的数量也会增加到> 60%。与未感染的RBC相比,经配子体感染的RBC并不优先吸收马杜菌素,这表明配子细胞比RBC更敏感于阳离子浓度的变化。此外,添加15.6 nM的Maduramicin增强了吡唑酰胺PA21A050的杀细胞杀灭活性,这是与细胞内Na +浓度增加相关的有希望的新抗疟疾候选药物,据推测这是由于抑制了推定的Na +泵PfATP4。这些结果强调了阳离子稳态在性以及无性红细胞内恶性疟原虫寄生虫中的重要性以及靶向这种途径进行药物开发的潜力。

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