Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6619097 | Fluid Phase Equilibria | 2018 | 8 Pages |
Abstract
Although β-lapachone is a promising drug with pharmacological activity, issues concerning its low aqueous solubility are known. The objective of this study was to measure the solubility of β-lapachone in water and ten organic solvents at temperatures ranging from 298.15â¯K to 318.15â¯K under atmospheric pressure. The modified Apelblat model, the Buchowski-Ksiazaczak λh model, and the ideal model were used to correlate experimentally obtained solubility values. Moreover, thermodynamic analysis of β-lapachone dissolution was performed based on experimental solubility data using the van't Hoff equation. The highest mole fraction solubility of β-lapachone at 298.15â¯K was found in acetone (2.05â¯Ãâ¯10â2), followed by acetonitrile (1.80â¯Ãâ¯10â2), ethyl acetate (8.53â¯Ãâ¯10â3), 1-butanol (7.43â¯Ãâ¯10â3), 1-propanol (6.69â¯Ãâ¯10â3), 2-butanol (5.65â¯Ãâ¯10â3), methanol (5.40â¯Ãâ¯10â3), ethanol (4.99â¯Ãâ¯10â3), 2-propanol (3.76â¯Ãâ¯10â3), propylene glycol (3.06â¯Ãâ¯10â3), and water (2.85â¯Ãâ¯10â6). Correlation results showed that the modified Apelblat model was more accurate than the Buchowski-Ksiazaczak λh model and the ideal model. Thermodynamic analysis indicated that β-lapachone dissolution was endothermic and entropy-driven process in all solvents studied. Data on solubility and thermodynamic properties in various solvents obtained in this study could be helpful in formulation development, purification, and crystallization of β-lapachone.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Engineering (General)
Authors
Ki Hyun Kim, Hee Kyung Oh, Bora Heo, Nam Ah Kim, Dae Gon Lim, Seong Hoon Jeong,