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Hansch analysis of antimalarial cyclic peroxy ketals with physicochemical and electrotopological parameters.

机译:Hansch分析抗疟疾环状过氧缩酮的理化和电拓扑参数。

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Hansch analysis of some antimalarial cyclic peroxy ketals (IV) having structural variations at the para substituted phenyl ring and an alicyclic ring of different size reveals that electronic and steric parameters of the phenyl ring substituents are important for explaining the variation in the activity while hydrophobicity parameter is of little significance. Electron withdrawing substituents with higher MR (molar refractivity) or V(W) (van der Waals volume) are preferred for the activity. Use of structural descriptors suggests that presence of a seven membered alicyclic ring attached to the peroxy bridge containing ring is conducive to the activity. Application of electrotopological state atom index (ETSAI) suggests a pharmacophore containing the peroxy bridge. This is corroborated by earlier observation on importance of oxygen atoms of the peroxy linkage of artemisinin for antimalarial activity. Although incorporation of ETSAI into Hansch model does not improve the relations, the electronic parameter sigma is found to be significantly correlated with it.
机译:对在对位取代的苯环和不同大小的脂环上具有结构变化的一些抗疟疾环状过氧缩酮(IV)的Hansch分析表明,苯环取代基的电子和空间参数对于解释活性变化是重要的,而疏水性参数没有什么意义。对于该活性,优选具有较高MR(摩尔折射率)或V(W)(范德华体积)的吸电子取代基。结构描述符的使用表明,连接至含有过氧桥的环的七元脂环族环的存在有利于活性。电拓扑状态原子指数(ETSAI)的应用表明含有过氧桥的药效基团。关于青蒿素过氧化物键的氧原子对抗疟疾活性的重要性的早期观察证实了这一点。尽管将ETSAI合并到Hansch模型中并没有改善这种关系,但是发现电子参数sigma与之显着相关。

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