首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Could LogP be a principal determinant of biological activity in 18-crown-6 ethers? Synthesis of biologically active adamantane-substituted diaza-crowns.
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Could LogP be a principal determinant of biological activity in 18-crown-6 ethers? Synthesis of biologically active adamantane-substituted diaza-crowns.

机译:LogP能否成为18冠6醚中生物活性的主要决定因素?具有生物活性的金刚烷取代的二氮杂冠的合成。

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18-crown-6 ethers are known to exert their biological activity by transporting K(+) ions across cell membranes. Using non-linear Support Vector Machines regression, we searched for structural features that influence antiproliferative activity in a diverse set of 19 known oxa-, monoaza- and diaza-18-crown-6 ethers. Here, we show that the logP of the molecule is the most important molecular descriptor, among approximately 1300 tested descriptors, in determining biological potency (R(2)(cv) = 0.704). The optimal logP was at 5.5 (Ghose-Crippen ALOGP estimate) while both higher and lower values were detrimental to biological potency. After controlling for logP, we found that the antiproliferative activity of the molecule was generally not affected by side chain length, molecular symmetry, or presence of side chain amide links. To validate this QSAR model, we synthesized six novel, highly lipophilic diaza-18-crown-6 derivatives with adamantane moieties attached to the side arms. These compounds have near-optimal logP values and consequently exhibit strong growth inhibition in various human cancer cell lines and a bacterial system. The bioactivities of different diaza-18-crown-6 analogs in Bacillus subtilis and cancer cells were correlated, suggesting conserved molecular features may be mediating the cytotoxic response. We conclude that relying primarily on the logP is a sensible strategy in preparing future 18-crown-6 analogs with optimized biological activity.
机译:已知18冠6醚通过跨细胞膜转运K(+)离子来发挥其生物活性。使用非线性支持向量机回归,我们在19种已知的oxa-,monoaza-和diaza-18-crown-6醚中搜索了影响抗增殖活性的结构特征。在这里,我们显示该分子的logP在确定生物效能中是最重要的分子描述子,大约有1300个测试描述子(R(2)(cv)= 0.704)。最佳logP为5.5(Ghose-Crippen ALOGP估计值),而较高和较低的值均不利于生物学效能。控制logP后,我们发现分子的抗增殖活性通常不受侧链长度,分子对称性或侧链酰胺键的存在的影响。为了验证该QSAR模型,我们合成了六种新颖的,高度亲脂性的diaza-18-crown-6衍生物,其金刚烷部分连接至侧臂。这些化合物的logP值接近最佳,因此在各种人类癌细胞系和细菌系统中均表现出强烈的生长抑制作用。枯草芽孢杆菌和癌细胞中不同diaza-18-crown-6类似物的生物活性相关,表明保守的分子特征可能介导了细胞毒性反应。我们得出的结论是,主要依赖logP是制备具有最佳生物活性的未来18-crown-6类似物的明智策略。

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