Sintra T E, Shimizu K, Ventura S P M, Shimizu S, Canongia Lopes J N, Coutinho J A P
CICECO - Aveiro Institute of Materials, Department of Chemistry, University of Aveiro, 3810-193 Aveiro, Portugal.
Phys Chem Chem Phys. 2018 Jan 17;20(3):2094-2103. doi: 10.1039/c7cp07569c.
The therapeutic effectiveness of a drug largely depends on its bioavailability, and thus ultimately on its aqueous solubility. Hydrotropes are compounds able to enhance the solubility of hydrophobic substances in aqueous media and therefore are extensively used in the formulation of drugs and personal care products. Recently, some ionic liquids were shown to display a strong ability to enhance the solubility of biomolecules through hydrotropy. In this work, the impact of the ionic liquid chemical structures and their concentration on the solubility of ibuprofen was evaluated and compared with the performance of conventional hydrotropes. The results obtained clearly evidence the exceptional capacity of ionic liquids to enhance the solubility of ibuprofen. [CCim][SCN] and [CCim][N(CN)] seem to be the most promising ionic liquids for ibuprofen solubilisation, where an increase in the solubility of 60- and 120-fold was observed with ionic liquid concentrations of circa 1 mol kg, respectively. Dynamic light scattering and molecular dynamics simulations were used to investigate the mechanism of the IL-mediated drug solubility and the results obtained indicate that the structure of aqueous solutions of ionic liquids and the role it plays in the formation of ionic liquid-drug aggregates is the mechanism driving the hydrotropic dissolution.
药物的治疗效果很大程度上取决于其生物利用度,因此最终取决于其水溶性。助溶剂是能够提高疏水性物质在水性介质中溶解度的化合物,因此广泛用于药物和个人护理产品的配方中。最近,一些离子液体被证明具有通过助溶作用增强生物分子溶解度的强大能力。在这项工作中,评估了离子液体化学结构及其浓度对布洛芬溶解度的影响,并与传统助溶剂的性能进行了比较。所得结果清楚地证明了离子液体增强布洛芬溶解度的特殊能力。[CCim][SCN]和[CCim][N(CN)]似乎是用于增溶布洛芬最有前景的离子液体,在离子液体浓度约为1 mol kg时,分别观察到溶解度增加了60倍和120倍。使用动态光散射和分子动力学模拟来研究离子液体介导的药物溶解机制,所得结果表明离子液体水溶液的结构及其在离子液体-药物聚集体形成中所起的作用是驱动助溶溶解的机制。