Department of Physical Chemistry, Warsaw University of Technology, Noakowskiego 3, Warsaw, Poland.
Int J Pharm. 2011 Jan 17;403(1-2):115-22. doi: 10.1016/j.ijpharm.2010.10.034. Epub 2010 Oct 27.
Drug solubility is an important aspect of drug development. The objective of this investigation was to measure solubilities of five drugs (cimetidine, phenylbutazone, fenbufen, nitrofurantoin, triamterene) at constant pH in range of temperature from 270 to 340K in three solvents: water, ethanol and 1-octanol with the dynamic-visual method and the saturation shake-flask method using spectrophotometric analysis. The Barton group contribution method was used for the calculations of molar volumes of solutes. The thermodynamic description of the solubility curves was made using the thermophysical properties obtained with the differential scanning microcalorimetry technique (DSC). The DSC measurements have shown different than existing in the literature enthalpies of melting for phenylbutazone and fenbufen. The experimental solubility data also differ from the literature data, normally measured at one, or two temperatures only. The solubility data have been correlated by means of three commonly known excess Gibbs energy, G(E) equations. The activity coefficients of drugs at saturated solutions were calculated from the experimental data. Reexamination of the pK(a) values using diluted solutions was made with the Bates-Schwarzenbach method for the pK(a) measurements. The association constants and corresponding pK(a) values of drugs were close to the most of the literature data. We hope that our new solubility data, thermophysical data, and pK(a) values will improve all prediction-methods and their precision.
药物溶解度是药物开发的一个重要方面。本研究的目的是在 270 到 340K 的温度范围内,在水、乙醇和 1-辛醇三种溶剂中,使用动态视觉法和饱和摇瓶法,通过分光光度分析,测量五种药物(西咪替丁、苯丁唑酮、芬布芬、呋喃妥因、氨苯蝶啶)在恒定 pH 值下的溶解度。采用 Barton 基团贡献法计算溶质的摩尔体积。通过使用差示扫描微量热法(DSC)获得的热物理性质,对溶解度曲线进行热力学描述。DSC 测量结果表明,苯丁唑酮和芬布芬的熔融焓与文献中存在的不同。实验溶解度数据也与文献数据不同,通常仅在一个或两个温度下测量。通过三种常用的超额吉布斯自由能 G(E)方程对实验溶解度数据进行了关联。从实验数据计算了药物在饱和溶液中的活度系数。使用 Bates-Schwarzenbach 方法对稀释溶液中的 pK(a)值进行了重新检查。药物的缔合常数和相应的 pK(a)值与大多数文献数据接近。我们希望我们的新溶解度数据、热物理数据和 pK(a)值将提高所有预测方法及其精度。