MHRA, London SW8 5NQ, UK.
J Drug Target. 2010 Dec;18(10):787-93. doi: 10.3109/1061186X.2010.525653.
Room temperature ionic liquids (RTILs), salts which are liquid at room temperature, may be water-soluble or water immiscible, depending on the combination of cation and anion. They are efficient solvents for a wide range of solutes including drugs. The water-immiscible RTILs studied in this paper (the 1-butyl, hexyl and octyl 3-methyl imidazolium (BMIM, HMIM, and OMIM) hexafluorophosphate (PF(6)(-)) salts) can act as drug reservoirs. Passage of an electric current through these immiscible liquids can enhance the release of some solutes into an aqueous medium. Current flow (over the range 1-5 mA) increased the release rate of a solubilized hydrophilic solute, (3)H-sucrose, and of a model hydrophobic drug, (3)H-dexametasone. A threefold increase in the release rate of both sucrose and dexamethasone into water was observed under some conditions although the effect of application of current was not always linear. OMIM[PF(6)] was the most responsive liquid. Some measurable physical properties of the ionic liquids change on the application of current. For example, the surface tension of the three RTILs studied decreased significantly on application of current for 15 min (from 47.8 mNm(-1) to 36.2 mNm(-1) for BMIM) but the effect on the surface tension of the OMIM salt was small. Only a small decrease in the viscosity of RTILs was observed. Although the mechanisms of the enhanced release are not yet elucidated, RTILs are potentially interesting depots for electrically controlled drug delivery.
室温离子液体(RTILs)是指在室温下呈液态的盐类,可以是水溶性的,也可以与水不混溶,这取决于阳离子和阴离子的组合。它们是广泛溶质(包括药物)的有效溶剂。本文研究的不混溶性 RTILs(1-丁基、己基和辛基 3-甲基咪唑鎓(BMIM、HMIM 和 OMIM)六氟磷酸盐(PF(6)(-))盐)可以作为药物储库。电流通过这些不混溶液体可以增强某些溶质向水相的释放。电流(1-5 mA 范围内)的流动增加了水溶性亲溶质(3H-蔗糖)和模型疏水性药物(3H-地塞米松)的释放速率。在某些条件下,蔗糖和地塞米松的释放速率均增加了三倍,尽管电流的应用效果并不总是线性的。OMIM[PF(6)]是最敏感的液体。电流应用会改变离子液体的一些可测量物理性质。例如,三种研究的 RTIL 的表面张力在电流应用 15 分钟后显著降低(BMIM 从 47.8 mNm(-1)降至 36.2 mNm(-1)),但 OMIM 盐的表面张力变化较小。仅观察到 RTIL 粘度略有下降。尽管增强释放的机制尚未阐明,但 RTIL 是电控制药物释放的潜在有趣储库。