Department of Chemical Engineering, Faculty of Engineering, University of Kashan, 87317-53153, Kashan, Iran.
Laboratory of Supercritical Fluids and Nanotechnology, University of Kashan, 87317-53153, Kashan, Iran.
Sci Rep. 2021 Apr 6;11(1):7546. doi: 10.1038/s41598-021-87243-6.
One of the main steps in choosing the drug nanoparticle production processes by supercritical carbon dioxide (SC-CO) is determining the solubility of the solid solute. For this purpose, the solubility of Ketoconazole (KTZ) in the SC-CO, binary system, as well as in the SC-CO-menthol (cosolvent), ternary system, was measured at 308-338 K and 12-30 MPa using the static analysis method. The KTZ solubility in the SC-CO ranged between 0.20 × 10 and 8.02 × 10, while drug solubility in the SC-CO with cosolvent varied from 1.2 × 10 to 1.96 × 10. This difference indicated the significant effect of menthol cosolvent on KTZ solubility in the SC-CO. Moreover, KTZ solubilities in the two systems were correlated by several empirical and semiempirical models. Among them, Sodeifian et al., Bian et al., MST, and Bartle et al. models can more accurately correlate experimental data for the binary system than other used models. Also, the Sodeifian and Sajadian model well fitted the solubility data of the ternary system with AARD% = 6.45, R = 0.995.
选择超临界二氧化碳 (SC-CO2) 生产药物纳米粒子的过程中,主要步骤之一是确定固体溶质的溶解度。为此,使用静态分析方法在 308-338 K 和 12-30 MPa 下测量了酮康唑 (KTZ) 在 SC-CO2 二元体系以及 SC-CO2-薄荷醇(共溶剂)三元体系中的溶解度。KTZ 在 SC-CO2 中的溶解度在 0.20×10 和 8.02×10 之间,而药物在含共溶剂的 SC-CO2 中的溶解度在 1.2×10 和 1.96×10 之间变化。这种差异表明薄荷醇共溶剂对 KTZ 在 SC-CO2 中的溶解度有显著影响。此外,通过几种经验和半经验模型对两个体系中的 KTZ 溶解度进行了关联。其中,Sodeifian 等人、Bian 等人、MST 和 Bartle 等人的模型比其他使用的模型更能准确地关联二元体系的实验数据。此外,Sodeifian 和 Sajadian 模型也很好地拟合了三元体系的溶解度数据,AARD%=6.45,R=0.995。