Department of Pharmaceutics, College of Pharmacy, King Saud University, P.O. Box 2457, Riyadh 11451, Saudi Arabia.
Department of Pharmaceutics, College of Pharmacy, King Saud University, P.O. Box 2457, Riyadh 11451, Saudi Arabia.
Int J Pharm. 2018 Jun 10;544(1):165-171. doi: 10.1016/j.ijpharm.2018.04.024. Epub 2018 Apr 18.
The purpose of the present study was to determine the solubility of raloxifene hydrochloride (RHCl) in ten solvents: water, ethanol, isopropyl alcohol (IPA), ethylene glycol (EG), propylene glycol (PG), polyethylene glycol-400 (PEG-400), Transcutol, 1-butanol, dimethyl sulfoxide (DMSO), and ethyl acetate (EA) at temperatures of 298.2-323.2 K and a pressure of 0.1 MPa. The solubility data obtained was fitted upon "Apelblat and Van't Hoff" equations. The maximum mole fraction solubility of RHCl was obtained in DMSO (5.02 × 10 at 323.2 K), followed by PEG-400 (5.92 × 10 at 323.2 K), EA (3.11 × 10 at 323.2 K), Transcutol (1.22 × 10 at 323.2 K), PG (2.19 × 10 at 323.2 K), 1-butanol (1.96 × 10 at 323.2 K), IPA (1.47 × 10 at 323.2 K), ethanol (7.90 × 10 at 323.2 K), EG (6.65 × 10 at 323.2 K), and water (3.60 × 10 at 323.2 K). Similar fashions were noticed at each studied temperature. The higher solubility of RHCl in DMSO, PEG-400, EA, and Transcutol was possibly referable to their lower polarity in comparison with water. The molecular interactions between the solute and solvent molecules were estimated by calculating parameters like activity coefficients, and more prominent solute-solvent molecular interactions were noted for RHCl-DMSO, RHCl-EA, and RHCl-PEG-400 in comparison with the other solute-solvent combinations. The outcomes of the "apparent thermodynamic analysis" showed that the dissolution of RHCl was "endothermic, spontaneous and entropy-driven" in all investigated solvents. The obtained solubility data of RHCl in commonly used solvents could be useful in the purification, recrystallization, and dosage form design of the drug.
本研究的目的是确定盐酸雷洛昔芬(RHCl)在十种溶剂中的溶解度:水、乙醇、异丙醇(IPA)、乙二醇(EG)、丙二醇(PG)、聚乙二醇-400(PEG-400)、Transcutol、正丁醇、二甲基亚砜(DMSO)和乙酸乙酯(EA),温度为 298.2-323.2 K,压力为 0.1 MPa。通过“Apelblat 和 Van't Hoff”方程拟合获得的溶解度数据。RHCl 的最大摩尔分数溶解度在 DMSO(323.2 K 时为 5.02×10)中获得,其次是 PEG-400(323.2 K 时为 5.92×10)、EA(323.2 K 时为 3.11×10)、Transcutol(323.2 K 时为 1.22×10)、PG(323.2 K 时为 2.19×10)、正丁醇(323.2 K 时为 1.96×10)、IPA(323.2 K 时为 1.47×10)、乙醇(323.2 K 时为 7.90×10)、EG(323.2 K 时为 6.65×10)和水(323.2 K 时为 3.60×10)。在每个研究温度下都注意到了类似的趋势。RHCl 在 DMSO、PEG-400、EA 和 Transcutol 中的更高溶解度可能归因于它们与水相比具有更低的极性。通过计算活度系数等参数,可以估计溶质和溶剂分子之间的分子相互作用,并且与其他溶质-溶剂组合相比,RHCl-DMSO、RHCl-EA 和 RHCl-PEG-400 中观察到更显著的溶质-溶剂分子相互作用。“明显热力学分析”的结果表明,在所有研究的溶剂中,RHCl 的溶解是“吸热、自发和熵驱动”的。在常用溶剂中获得的 RHCl 溶解度数据可用于药物的纯化、重结晶和剂型设计。