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首页> 外文期刊>Journal of pharmaceutical sciences. >Substituent effects on the ionization and partitioning of p-(aminoethyl)phenols and structurally related compounds: electrostatic effects dependent on conformation.
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Substituent effects on the ionization and partitioning of p-(aminoethyl)phenols and structurally related compounds: electrostatic effects dependent on conformation.

机译:对-(氨基乙基)苯酚和结构相关化合物的离子化和分配的取代作用:取决于构象的静电作用。

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摘要

Computational methods to predict pK(a) values and partition coefficients of drug molecules based on linear free energy relationships (LFERs) rely largely on the principles of independence and additivity of the functional group contributions in each molecule to the overall free energy. Nonadditivities in functional group contributions are often seen when multiple polar functional groups are in close proximity and in cases where conformational flexibility allows widely separated polar functional groups to interact. The degree to which long-range interactions may alter group contributions in more conformationally constrained molecules such as p-(aminoethyl)phenol and structurally similar analogs is more difficult to predict. In this study, both macroscopic and microscopic ionization constants and decadiene/water partition coefficients as a function of pH at 25 degrees C were obtained for p-(aminoethyl)phenol and six structurally related compounds to explore the reliability of the independence and additivity assumptions necessary in using the LFERs for predictions. A long-range interaction between the phenol and amine groups in the series has been found to affect the pK(a) values of both groups and to alter species-specific partition coefficients. Pronounced shifts in microscopic ionization constants involving zwitterion forms are clearly indicative of amplified long-range interactions between ionized substituents.
机译:基于线性自由能关系(LFER)预测药物分子的pK(a)值和分配系数的计算方法主要取决于每个分子中官能团对总自由能的独立性和可加性原理。当多个极性官能团非常接近且构象柔韧性允许广泛分离的极性官能团相互作用时,通常会看到官能团贡献中的非可加性。远程相互作用可能改变更受构象约束的分子(例如对-(氨基乙基)苯酚)和结构相似的类似物中的基团贡献的程度更加难以预测。在这项研究中,获得了对-(氨基乙基)苯酚和六种结构相关化合物的宏观和微观电离常数以及癸二烯/水分配系数与25°C下pH的关系,以探讨独立性和加和假设的可靠性使用LFER进行预测。已发现该系列中的酚和胺基团之间的远距离相互作用会影响两个基团的pK(a)值并改变物种特异性的分配系数。涉及两性离子形式的微观电离常数的明显变化清楚地表明了电离取代基之间的放大的远程相互作用。

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