Chair and Department of Physical Chemistry, Faculty of Pharmacy, Collegium Medicum of Bydgoszcz, Nicolaus Copernicus University in Toruń, Kurpińskiego 5, 85-950 Bydgoszcz, Poland.
Chair and Department of Physical Chemistry, Faculty of Pharmacy, Collegium Medicum of Bydgoszcz, Nicolaus Copernicus University in Toruń, Kurpińskiego 5, 85-950 Bydgoszcz, Poland.
Int J Pharm. 2019 Oct 30;570:118682. doi: 10.1016/j.ijpharm.2019.118682. Epub 2019 Sep 7.
The limited water solubility of sulfonamides provokes a search for new solvents offering not only increased solubility but also environmental and health safety. Therefore, six sulfonamides were studied in a series of natural deep eutectic solvents (NADES) comprising choline chloride with multi-hydroxyl compounds. Experimental screening aimed at finding the optimized NADES composition revealed that unimolar proportion of choline chloride and glycerol offers the highest solubility advantage, equal up to 43 times compared with water at 37 °C. Besides, quantum chemistry computations based on the COSMO-RS protocol were conducted in order to gain an insight into the thermodynamic characteristics of the systems and to explain the origin of the observed solubility increase. It was found that the factor responsible for the solubility gain in NADES are the interactions between choline chloride and sulfonamide drug molecules, having the highest affinities expressed in terms of Gibbs free energy of corresponding reactions. Finally, utilizing the obtained results together with artificial neural networks led to a perfect match between experimental and predicted solubility, documented by the mean absolute percentage error value below 2.5%. The developed protocol seems to be so general and accurate that screening of potential new API-NADES systems can be significantly simplified.
磺胺类药物的水溶性有限,这促使人们寻找新的溶剂,不仅要提高其溶解度,还要保证其环境和健康安全。因此,我们研究了一系列包含氯化胆碱和多羟基化合物的天然深共晶溶剂(NADES)中的 6 种磺胺类药物。旨在寻找最佳 NADES 组成的实验筛选表明,氯化胆碱和甘油的等摩尔比例提供了最高的溶解度优势,在 37°C 时与水相比高达 43 倍。此外,还基于 COSMO-RS 协议进行了量子化学计算,以深入了解体系的热力学特性,并解释观察到的溶解度增加的原因。结果发现,NADES 中溶解度增加的原因是氯化胆碱与磺胺类药物分子之间的相互作用,这些相互作用在相应反应的吉布斯自由能方面表现出最高的亲和力。最后,利用获得的结果和人工神经网络,使实验和预测的溶解度之间达到了完美匹配,平均绝对百分比误差值低于 2.5%。该方法似乎非常通用且准确,可以显著简化潜在新 API-NADES 体系的筛选过程。