Antimalarial effect of synthetic endoperoxide on synchronized Plasmodium chabaudi infected mice.

0 PARASITOLOGY Parasites, hosts and diseases Pub Date : 2023-02-01 DOI:10.3347/PHD.22119
Nagwa S M Aly, Hiroaki Matsumori, Thi Quyen Dinh, Akira Sato, Shin-Ichi Miyoshi, Kyung-Soo Chang, Hak Sun Yu, Fumie Kobayashi, Hye-Sook Kim
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Abstract

The discovery of new antimalarial drugs can be developed using asynchronized Plasmodium berghei malaria parasites in vivo in mice. Studies on a particular stage are also required to assess the effectiveness and mode of action of drugs. In this report, we used endoperoxide 6-(1,2,6,7-tetraoxaspiro [7.11] nonadec-4-yl) hexan-1-ol (N-251) as a model antimalarial compound on P. chabaudi parasites. We examined the antimalarial effect of N-251 against ring-stage- and trophozoite-stage-rich P. chabaudi parasites and asynchronized P. berghei parasites using the 4-day suppressive test. The ED50 values were 27, 22, and 22 mg/kg, respectively, and the antimalarial activity of N-251 was verified in both rodent malaria parasites. To assess the stage-specific effect of N-251 in vivo, we evaluated the change of parasitemia and distribution of parasite stages using ring-stage- and trophozoite-stage-rich P. chabaudi parasites with one-day drug administration for one life cycle. We discovered that the parasitemias decreased after 13 and 9 hours post-treatment in the ring-stage- and trophozoite-stage-rich groups, respectively. Additionally, in the ring-stage-rich N-251 treated group, the ring-stage parasites hindered trophozoite parasite development. For the trophozoite-stage-rich N-251 treated group, the distribution of the trophozoite stage was maintained without a change in parasitemia until 9 hours. Because of these findings, it can be concluded that N-251 suppressed the trophozoite stage but not the ring stage. We report for the first time that N-251 specifically suppresses the trophozoite stage using P. chabaudi in mice. The results show that P. chabaudi is a reliable model for the characterization of stage-specific antimalarial effects.

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合成内过氧化物对同步感染夏伯蒂疟原虫小鼠的抗疟作用。
利用在小鼠体内的异步伯氏疟原虫疟原虫可以开发新的抗疟药物。还需要在特定阶段进行研究,以评估药物的有效性和作用方式。本研究以内过氧化物6-(1,2,6,7-四氧阿斯匹罗[7.11]壬烷-4-基)己烷-1-醇(N-251)作为模型抗疟化合物。通过4天的抑制试验,研究了N-251对富环期和滋养体期的chabaudi疟原虫和不同步的berghei疟原虫的抑制作用。ED50值分别为27、22和22 mg/kg,证实N-251对两种啮齿动物疟原虫的抗疟活性。为了评估N-251在体内的阶段特异性作用,我们使用富含环状和滋养体阶段的chabaudi寄生虫,在一个生命周期内给药一天,评估了寄生虫的寄生率和寄生虫阶段分布的变化。我们发现,在处理后13小时和9小时,环虫期和滋养体期丰富组的寄生虫数量分别减少。此外,在富环期N-251处理组中,环期寄生虫阻碍了滋养体寄生虫的发育。滋养体阶段丰富的N-251处理组,滋养体阶段的分布维持到9小时,寄生率没有变化。综上所述,N-251对滋养体阶段有抑制作用,但对环期没有抑制作用。我们首次报道了N-251在小鼠中特异性抑制P. chabaudi滋养体阶段。结果表明,沙巴蒂疟原虫是表征阶段性抗疟作用的可靠模型。
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