Albadran Firas H, Abbood Nabeel K, Al-Mayyahi Mohammad A, Hosseini Seyednooroldin, Abed Mohammed S
Basrah University for Oil and Gas, Basrah, Iraq.
EOR Research Center, Department of Petroleum Engineering, Omidiyeh Branch, Islamic Azad University, Post Box 164, Omidiyeh, 63731-93719, Iran.
Sci Rep. 2024 Jun 10;14(1):13260. doi: 10.1038/s41598-024-63416-x.
This study aims to use a static-based solubility method for measuring the solubility of lumiracoxib at a temperature of 308-338 K and pressure of 120-400 bar for the first time. The obtained solubility data for lumiracoxib is between 4.74 × 10 and 3.46 × 10 (mole fraction) for the studied ranges of pressure and temperature. The solubility values reveal that the lumiracoxib experiences a crossover pressure of about 160 bar. Moreover, the measured solubility data of these two drugs are correlated with density-based semi-empirical correlations namely Bartle et al., Mendez-Santiago-Teja, Kumar and Johnstone, Chrastil and modified Chrastil models with an average absolute relative deviation of 10.7%, 9.5%, 9.8%, 7.8%, and 8.7% respectively for lumiracoxib. According to these findings, it is obvious that all of the examined models are rather accurate and there is no superiority between these models for both examined drugs although the Chrastil model is slightly better in the overall view.
本研究旨在首次采用基于静态的溶解度方法,在温度为308 - 338 K、压力为120 - 400 bar的条件下测定鲁米考昔的溶解度。在所研究的压力和温度范围内,获得的鲁米考昔溶解度数据在4.74×10至3.46×10(摩尔分数)之间。溶解度值表明,鲁米考昔的交叉压力约为160 bar。此外,这两种药物的实测溶解度数据与基于密度的半经验关联式相关,即Bartle等人、Mendez - Santiago - Teja、Kumar和Johnstone、Chrastil以及修正的Chrastil模型,鲁米考昔的平均绝对相对偏差分别为10.7%、9.5%、9.8%、7.8%和8.7%。根据这些发现,很明显所有检验的模型都相当准确且对于这两种检验的药物而言这些模型之间没有优越性,尽管从总体来看Chrastil模型略好一些。