Department of Pharmaceutics, College of Pharmacy , University of Minnesota , 308 Harvard Street S.E ., Minneapolis , Minnesota 55455 , United States.
Mol Pharm. 2020 Feb 3;17(2):579-587. doi: 10.1021/acs.molpharmaceut.9b01015. Epub 2019 Dec 26.
A commonly used pharmaceutical surfactant, sodium lauryl sulfate (SLS), has been reported to reduce the dissolution rate of drugs due to the formation of a less soluble drug-lauryl sulfate salt. In this study, we provide direct crystallographic evidence of the formation of salt between SLS and norfloxacin (NOR), [NORH][LS]·1.5 HO. The available crystal structure also enables the use of the energy framework to gain an understanding of the structure-property relationship. Results show that the hydrophobic methyl groups in SLS dominate the surfaces of the [NORH][LS]·1.5 HO crystals, resulting in the increased hydrophobicity and reduced wettability by aqueous media. Moreover, an analysis of molecular environments and energy calculations of water molecules provides insight into the stability of [NORH][LS]·1.5 HO with variations in the relative humidity and temperature. In summary, important pharmaceutical properties, such as solubility, dissolution, and thermal stability, of the drug-surfactant salt [NORH][LS]·1.5 HO have been characterized and understood based on crystallographic and energetic analyses of the crystal structure.
一种常用的药用表面活性剂,月桂基硫酸钠(SLS),据报道由于形成了更难溶的药物-硫酸月桂酯盐,会降低药物的溶解速率。在这项研究中,我们提供了 SLS 与诺氟沙星(NOR)之间形成盐的直接晶体学证据,[NORH][LS]·1.5HO。可用的晶体结构还可以利用能量框架来理解结构-性质关系。结果表明,SLS 中的疏水性甲基基团主导[NORH][LS]·1.5HO 晶体的表面,导致疏水性增加,对水介质的润湿性降低。此外,对水分子的分子环境和能量计算的分析提供了对[NORH][LS]·1.5HO 在相对湿度和温度变化下稳定性的深入了解。总之,基于对晶体结构的晶体学和能量分析,已经对药物-表面活性剂盐[NORH][LS]·1.5HO 的重要药物性质,如溶解度、溶解和热稳定性进行了表征和理解。