药效团
化学
组合化学
合理设计
抗疟药
氯喹
结构-活动关系
恶性疟原虫
数量结构-活动关系
立体化学
计算生物学
体外
纳米技术
生物化学
生物
疟疾
材料科学
免疫学
作者
Marco Persico,Arianna Quintavalla,Francesca Rondinelli,Claudio Trombini,Marco Lombardo,Caterina Fattorusso,V. Azzarito,Donatella Taramelli,Silvia Parapini,Yolanda Corbett,Giuseppina Chianese,Ernesto Fattorusso,Orazio Taglialatela‐Scafati
摘要
A new series of simple endoperoxides, characterized by a 3-methoxy-1,2-dioxane scaffold, was designed on the basis of a previously developed pharmacophore. Through a simplified and versatile scheme of synthesis, which utilizes cheap and commercially available starting materials, it was possible to obtain several structurally and stereochemically different compounds that were tested against P. falciparum. Most of compounds showed antimalarial activity in the low micromolar range and no cellular toxicity, all being significantly more active on chloroquine resistant (CQ-R) than on chloroquine sensitive (CQ-S) strains. Resulting structure-activity relationships were analyzed by means of experimental and computational techniques, validating our design rationale and tailoring it for the new scaffold. Our study demonstrated that according to the hypothesized mechanism of action, the antimalarial activity can be improved through rational structural modifications, paving the way for the development of new simplified antimalarial endoperoxides.
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