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磺胺类晶体和溶液的热力学和结构方面。

Thermodynamic and structural aspects of sulfonamide crystals and solutions.

机构信息

Department of Computer-Aided Molecular Design, Institute of Physiologically Active Compounds, Russian Academy of Sciences, 142432 Chernogolovka, Russia.

出版信息

J Pharm Sci. 2009 Dec;98(12):4738-55. doi: 10.1002/jps.21784.

Abstract

The crystal structures of three sulfonamides with the general structure 4-NH(2)-C(6)H(4)-SO(2)NH-C(6)H(4/3)-R (R = 4-Et; 4-OMe; 5-Cl-2-Me) have been determined by X-ray diffraction. On the basis of our previous data and the results obtained a comparative analysis of crystal properties was performed: molecular conformational states, packing architecture, and hydrogen bond networks using graph set notations. The thermodynamic aspects of the sulfonamide sublimation process have been studied by investigating the temperature dependence of vapor pressure using the transpiration method. A regression equation was derived describing the correlation between sublimation entropy terms and crystal density data calculated from X-ray diffraction results. Also correlations between sublimation Gibbs energies and melting points, on the one hand, and between sublimation enthalpies and fusion enthalpies at 298 K, on the other hand, were found. These dependencies give the opportunity to predict sublimation thermodynamic parameters by simple thermo-physical experiments (fusion characteristics). Solubility processes of the compounds in water, n-hexane, and n-octanol (as phases modeling various drug delivery pathways and different types of membranes) were investigated and corresponding thermodynamic functions were calculated as well. Thermodynamic characteristics of sulfonamide solvation were evaluated. For compounds with similar structures processes of transfer from one solvent to another one were studied by a diagram method combined with analysis of enthalpic and entropic terms. Distinguishing between enthalpy and entropy, as is possible through the present approach, leads to the insight that the contribution of these terms is different for different molecules (entropy- or enthalpy-determined). Thus, in contrast to interpretation of only the Gibbs energy of transfer, being extensively used for pharmaceuticals in the form of the partition coefficient (log P), the analysis of thermodynamic functions of the transfer process provides additional mechanistic information. This may be important for further evaluation of the physiological distribution of drug molecules and may provide a better understanding of biopharmaceutical properties of drugs.

摘要

三种具有通用结构 4-NH(2)-C(6)H(4)-SO(2)NH-C(6)H(4/3)-R(R = 4-Et;4-OMe;5-Cl-2-Me)的磺胺类药物的晶体结构已通过 X 射线衍射确定。基于我们之前的数据和比较分析晶体性质的结果:分子构象状态、包装结构和氢键网络使用图集符号表示。通过使用蒸腾法研究蒸汽压随温度的变化来研究磺胺升华过程的热力学方面。推导出了一个回归方程,描述了升华熵项与根据 X 射线衍射结果计算得到的晶体密度数据之间的相关性。还发现了升华吉布斯能与熔点之间的相关性,以及升华焓与 298 K 时的熔融焓之间的相关性。这些相关性使得通过简单的热物理实验(熔融特性)预测升华热力学参数成为可能。还研究了这些化合物在水、正己烷和正辛醇中的溶解度过程(作为模拟各种药物输送途径和不同类型膜的相),并计算了相应的热力学函数。评估了磺胺类化合物的溶剂化热力学特性。对于具有相似结构的化合物,通过结合焓和熵项分析的图方法研究了从一种溶剂向另一种溶剂的转移过程。通过本方法可以区分焓和熵,从而可以了解这些术语对不同分子的贡献是不同的(熵或焓决定)。因此,与广泛用于药物的转移吉布斯能的解释(以分配系数(log P)的形式)不同,转移过程热力学函数的分析提供了额外的机制信息。这对于进一步评估药物分子的生理分布可能很重要,并可以更好地理解药物的生物制药特性。

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