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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Statistical model to evaluate in vivo activities of antimalarial drugs in a Plasmodium cynomolgi-macaque model for Plasmodium vivax malaria.
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Statistical model to evaluate in vivo activities of antimalarial drugs in a Plasmodium cynomolgi-macaque model for Plasmodium vivax malaria.

机译:统计模型,用于评估间日疟原虫疟疾的食蟹猴-猕猴模型中抗疟药物的体内活性。

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摘要

Preclinical animal models informing antimalarial drug development are scarce. We have used asexual erythrocytic Plasmodium cynomolgi infections of rhesus macaques to model Plasmodium vivax during preclinical development of compounds targeting parasite phospholipid synthesis. Using this malaria model, we accumulated data confirming highly reproducible infection patterns, with self-curing parasite peaks reproducibly preceding recrudescence peaks. We applied nonlinear mixed-effect (NLME) models, estimating treatment effects in three drug studies: G25 (injected) and the bisthiazolium prodrugs TE4gt and TE3 (oral). All compounds fully cured P. cynomolgi-infected macaques, with significant effects on parasitemia height and time of peak. Although all three TE3 doses tested were fully curative, NLME models discriminated dose-dependent differential pharmacological antimalarial activity. By applying NLME modeling treatment effects are readily quantified. Such drug development studies are more informative and contribute to reduction and refinement in animal experimentation.
机译:缺乏临床前动物模型来告知抗疟药物的发展。我们已经在针对寄生虫磷脂合成的化合物的临床前开发期间,使用恒河猴的无性红细胞疟原虫食蟹猴感染来模拟间日疟原虫。使用这种疟疾模型,我们积累了数据,证实了高度可重现的感染模式,自治愈的寄生虫峰在重发峰之前可重现。我们应用了非线性混合效应(NLME)模型,在三种药物研究中估计了治疗效果:G25(注射剂)和双噻唑鎓前药TE4gt和TE3(口服)。所有化合物均能完全治愈食蟹猴感染的猕猴,对寄生虫高度和高峰时间有显着影响。尽管测试的所有三个TE3剂量都是完全治愈的,但NLME模型可以区分剂量依赖性的差异药理抗疟活性。通过应用NLME建模,可以轻松量化治疗效果。这类药物开发研究的信息量更大,有助于减少和完善动物实验。

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