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Febuxostat 在不同温度下各种单溶剂中的溶解度和热力学数据。

Solubility and Thermodynamic Data of Febuxostat in Various Mono Solvents at Different Temperatures.

机构信息

Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Molecules. 2022 Jun 23;27(13):4043. doi: 10.3390/molecules27134043.

Abstract

This study examines the solubility and thermodynamics of febuxostat (FBX) in a variety of mono solvents, including “water, methanol (MeOH), ethanol (EtOH), isopropanol (IPA), 1-butanol (1-BuOH), 2-butanol (2-BuOH), ethylene glycol (EG), propylene glycol (PG), polyethylene glycol-400 (PEG-400), ethyl acetate (EA), Transcutol-HP (THP), and dimethyl sulfoxide (DMSO)” at 298.2−318.2 K and 101.1 kPa. The solubility of FBX was determined using a shake flask method and correlated with “van’t Hoff, Buchowski-Ksiazczak λh, and Apelblat models”. The overall error values for van’t Hoff, Buchowski-Ksiazczak λh, and Apelblat models was recorded to be 1.60, 2.86, and 1.14%, respectively. The maximum mole fraction solubility of FBX was 3.06 × 10−2 in PEG-400 at 318.2 K, however the least one was 1.97 × 10−7 in water at 298.2 K. The FBX solubility increased with temperature and the order followed in different mono solvents was PEG-400 (3.06 × 10−2) > THP (1.70 × 10−2) > 2-BuOH (1.38 × 10−2) > 1-BuOH (1.37 × 10−2) > IPA (1.10 × 10−2) > EtOH (8.37 × 10−3) > EA (8.31 × 10−3) > DMSO (7.35 × 10−3) > MeOH (3.26 × 10−3) > PG (1.88 × 10−3) > EG (1.31 × 10−3) > water (1.14 × 10−6) at 318.2 K. Compared to the other combinations of FBX and mono solvents, FBX-PEG-400 had the strongest solute-solvent interactions. The apparent thermodynamic analysis revealed that FBX dissolution was “endothermic and entropy-driven” in all mono solvents investigated. Based on these findings, PEG-400 appears to be the optimal co-solvent for FBX solubility.

摘要

本研究考察了非布司他(FBX)在多种单溶剂中的溶解度和热力学性质,包括“水、甲醇(MeOH)、乙醇(EtOH)、异丙醇(IPA)、1-丁醇(1-BuOH)、2-丁醇(2-BuOH)、乙二醇(EG)、丙二醇(PG)、聚乙二醇-400(PEG-400)、乙酸乙酯(EA)、Transcutol-HP(THP)和二甲基亚砜(DMSO)”在 298.2-318.2 K 和 101.1 kPa 下的溶解度。采用摇瓶法测定 FBX 的溶解度,并与“van't Hoff、Buchowski-Ksiazczak λh 和 Apelblat 模型”相关联。van't Hoff、Buchowski-Ksiazczak λh 和 Apelblat 模型的总误差值分别记录为 1.60、2.86 和 1.14%。在 318.2 K 时,FBX 在 PEG-400 中的最大摩尔分数溶解度为 3.06×10-2,而在 298.2 K 时,最小溶解度为 1.97×10-7,在水中。FBX 溶解度随温度升高而增加,在不同单溶剂中的顺序为 PEG-400(3.06×10-2)>THP(1.70×10-2)>2-BuOH(1.38×10-2)>1-BuOH(1.37×10-2)>IPA(1.10×10-2)>EtOH(8.37×10-3)>EA(8.31×10-3)>DMSO(7.35×10-3)>MeOH(3.26×10-3)>PG(1.88×10-3)>EG(1.31×10-3)>水(1.14×10-6)在 318.2 K 时。与 FBX 和单溶剂的其他组合相比,FBX-PEG-400 具有最强的溶质-溶剂相互作用。表观热力学分析表明,在所有研究的单溶剂中,FBX 的溶解均为“吸热和熵驱动”。基于这些发现,PEG-400 似乎是 FBX 溶解度的最佳共溶剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e631/9268579/3b09ecf8a046/molecules-27-04043-g001.jpg

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