首页> 外文期刊>Skin pharmacology and physiology >Influence of ethanol on the solubility, ionization and permeation characteristics of Ibuprofen in silicone and human skin.
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Influence of ethanol on the solubility, ionization and permeation characteristics of Ibuprofen in silicone and human skin.

机译:乙醇对布洛芬在硅酮和人体皮肤中的溶解度,电离和渗透特性的影响。

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In the context of topical and transdermal delivery, cosolvents may be expected to enhance solubility, modify drug partitioning behaviour and alter skin barrier properties. In the present study, we have investigated systematically the influence of increasing amounts of the cosolvent ethanol on the solubility, ionization, and permeability characteristics of ibuprofen in silicone and in skin. The possibility of ibuprofen self-association was also examined. As the amount of ethanol was raised from 0 to 100%, ibuprofen solubility was enhanced 5,500-fold relative to its aqueous solubility. Up to 50%, the pK(a) of ibuprofen shifted from 4.44 to 5.68. Infrared spectroscopy confirmed the presence of ibuprofen in both monomer and dimer forms in vehicles containing 75 and 100% ethanol. In silicone membranes, the flux of ibuprofen increased 8-fold over the range of ethanol concentrations studied (0-100%) relative to aqueous solutions, with the highest flux observed for 100% ethanol. However, in skin, the flux of ibuprofen was optimal for 50:50 and 75:25 ethanol-water vehicles (>10-fold flux enhancement). The lower ibuprofen flux from pure ethanol may reflect the alcohol's ability to dehydrate human skin. In general, the flux data confirm that increasing ethanol content enhances the solubility of ibuprofen in silicone and human skin as well as in the vehicle itself.
机译:在局部和透皮递送的情况下,可以期望助溶剂增强溶解性,改变药物分配行为并改变皮肤屏障性质。在本研究中,我们系统地研究了助溶剂乙醇的添加量对布洛芬在硅酮和皮肤中的溶解度,离子化和渗透性特征的影响。还检查了布洛芬自缔合的可能性。随着乙醇的量从0增加到100%,布洛芬的溶解度相对于其水溶性增加了5500倍。高达50%,布洛芬的pK(a)从4.44变为5.68。红外光谱法证实,在含有75%和100%乙醇的载体中,布洛芬以单体和二聚体形式存在。在有机硅膜中,相对于水溶液,布洛芬的通量在所研究的乙醇浓度范围内(0-100%)增加了8倍,其中100%的乙醇通量最高。但是,在皮肤中,布洛芬的通量对于50:50和75:25的乙醇-水媒介物是最佳的(通量增加> 10倍)。纯乙醇中较低的布洛芬通量可能反映出该醇使人体皮肤脱水的能力。通常,通量数据证实乙醇含量的增加会提高布洛芬在硅酮和人体皮肤以及车辆本身中的溶解度。

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