Rubino J T, Yalkowsky S H
School of Pharmacy, University of North Carolina, Chapel Hill 27514.
Pharm Res. 1987 Jun;4(3):231-6. doi: 10.1023/a:1016408211963.
The solubilities of three nonpolar drugs, phenytoin, diazepam, and benzocaine, have been measured in 14 cosolvent-water binary mixtures. The observed solubilities were examined for deviations from solubilities calculated by the equation log Sm = f log Sc + (1 - f) log Sw, where Sm is the solubility of the drug in the cosolvent-water mixture, Sc is the solubility of the drug in neat cosolvent, f is the volume fraction of cosolvent, and Sw is the solubility of the drug in water. When presented graphically, the patterns of the deviations were similar for all three drugs in mixtures of amphiprotic cosolvents (glycols, polyols, and alcohols) and water as well as nonpolar, aprotic cosolvents (dioxane, triglyme, dimethyl isosorbide) and water. The deviations were positive for phenytoin and benzocaine but negative for diazepam in mixtures of dipolar, aprotic cosolvents (dimethylsulfoxide, dimethylformamide, and dimethylacetamide) and water. The source of the deviations could not consistently be attributed to physical properties of the cosolvent-water mixtures or to alterations in the solute crystal. Similarities between the results of this study and those of previous investigations suggest that changes in the structure of the solvent play a role in the deviations from the expected solubilities.
已测定了三种非极性药物苯妥英、地西泮和苯佐卡因在14种助溶剂-水二元混合物中的溶解度。考察了观察到的溶解度与通过方程log Sm = f log Sc + (1 - f) log Sw计算得到的溶解度之间的偏差,其中Sm是药物在助溶剂-水混合物中的溶解度,Sc是药物在纯助溶剂中的溶解度,f是助溶剂的体积分数,Sw是药物在水中的溶解度。以图形方式呈现时,在两性助溶剂(二醇、多元醇和醇类)与水的混合物以及非极性、非质子性助溶剂(二氧六环、三甘醇二甲醚、二甲基异山梨醇)与水的混合物中,这三种药物的偏差模式相似。在偶极非质子性助溶剂(二甲基亚砜、二甲基甲酰胺和二甲基乙酰胺)与水的混合物中,苯妥英和苯佐卡因的偏差为正,而地西泮的偏差为负。偏差的来源不能一致地归因于助溶剂-水混合物的物理性质或溶质晶体的改变。本研究结果与先前研究结果的相似性表明,溶剂结构的变化在与预期溶解度的偏差中起作用。