首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Relationship between quantum-chemical descriptors of proton dissociation and experimental acidity constants of various hydroxylated coumarins. Identification of the biologically active species for xanthine oxidase inhibition.
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Relationship between quantum-chemical descriptors of proton dissociation and experimental acidity constants of various hydroxylated coumarins. Identification of the biologically active species for xanthine oxidase inhibition.

机译:质子离解的量子化学描述子与各种羟基香豆素的实验酸度常数之间的关系。鉴定出抑制黄嘌呤氧化酶的生物活性物质。

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摘要

Quantum-chemical descriptors related to proton dissociation constants of a set of coumarins hydroxylated in various positions have been computed and related to the experimental pK(a) values. An excellent correlation was found between the computed deprotonation energies of hydroxycoumarins in water and their experimental pK(a) values, and the results were used to predict the pK(a) of other hydroxycoumarins. Then, predicted and experimental pK(a) values were used as a basis for interpreting and discussing the variation of xanthine oxidase inhibitory activities within a subset of coumarins, with the aim of identifying the molecular species most relevant for enzyme inhibition.
机译:已经计算了与在各个位置羟基化的一组香豆素的质子解离常数有关的量子化学描述子,并且与实验pK(a)值有关。发现水中羟基香豆素的去质子能与其实验pK(a)值之间存在极好的相关性,该结果可用于预测其他羟基香豆素的pK(a)。然后,将预测的和实验的pK(a)值用作解释和讨论香豆素子集中黄嘌呤氧化酶抑制活性变化的基础,目的是确定与酶抑制最相关的分子种类。

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