Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia.
Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Al-Azhar University, Assiut, Egypt.
PLoS One. 2021 Apr 8;16(4):e0249485. doi: 10.1371/journal.pone.0249485. eCollection 2021.
The aim of this work was to solubilize simvastatin (SIM) using different micellar solutions of various non-ionic surfactants such as Tween-80 (T80), Tween-20 (T20), Myrj-52 (M52), Myrj-59 (M59), Brij-35 (B35) and Brij-58 (B58). The solubility of SIM in water (H2O) and different micellar concentrations of T80, T20, M52, M59, B35 and B58 was determined at temperatures T = 300.2 K to 320.2 K under atmospheric pressure p = 0.1 MPa using saturation shake flask method. The experimental solubility data of SIM was regressed using van't Hoff and Apelblat models. The solubility of SIM (mole fraction) was recorded highest in M59 (1.54 x 10-2) followed by M52 (6.56 x 10-3), B58 (5.52 x 10-3), B35 (3.97 x 10-3), T80 (1.68 x 10-3), T20 (1.16 x 10-3) [the concentration of surfactants was 20 mM in H2O in all cases] and H2O (1.94 x 10-6) at T = 320.2 K. The same results were also recorded at each temperature and each micellar concentration of T80, T20, M52, M59, B35 and B58. "Apparent thermodynamic analysis" showed endothermic and entropy-driven dissolution/solubilization of SIM in H2O and various micellar solutions of T80, T20, M52, M59, B35 and B58.
这项工作的目的是使用不同的非离子表面活性剂胶束溶液(如吐温-80(T80)、吐温-20(T20)、Myrj-52(M52)、Myrj-59(M59)、Brij-35(B35)和 Brij-58(B58))来增溶辛伐他汀(SIM)。在大气压力 p = 0.1 MPa 下,于温度 T = 300.2 K 至 320.2 K 范围内,使用饱和摇瓶法测定了 SIM 在水中(H2O)和不同 T80、T20、M52、M59、B35 和 B58 胶束浓度下的溶解度。使用范特霍夫(van't Hoff)和阿佩尔布拉特(Apelblat)模型对 SIM 的实验溶解度数据进行了回归。SIM(摩尔分数)的溶解度在 M59 中记录最高(1.54 x 10-2),其次是 M52(6.56 x 10-3)、B58(5.52 x 10-3)、B35(3.97 x 10-3)、T80(1.68 x 10-3)、T20(1.16 x 10-3)[所有情况下,H2O 中的表面活性剂浓度均为 20 mM]和 H2O(1.94 x 10-6),在 T = 320.2 K 时。在每个温度和 T80、T20、M52、M59、B35 和 B58 的每个胶束浓度下也记录了相同的结果。“表观热力学分析”表明 SIM 在 H2O 和 T80、T20、M52、M59、B35 和 B58 的各种胶束溶液中的溶解/增溶是吸热和熵驱动的。