Minghetti Paola, Cilurzo Francesco, Casiraghi Antonella, Montanari Luisa, Fini Adamo
Istituto di Chimica Farmaceutica e Tossicologica, Università degli Studi di Milano, Milano, Italy.
J Pharm Sci. 2007 Apr;96(4):814-23. doi: 10.1002/jps.20770.
The ex vivo permeation of diclofenac was studied using four different salts (sodium, potassium, diethylamine, and epolamine) dissolved in four different solvents (water, propylene glycol (PG), Transcutol, and oleic acid (OA)) as donor phases through a human skin membrane. The four salts show different solubility values and different behavior in the four solvents, which are also permeation enhancers and this fact further is connected to the permeation results. The same order of magnitude of fluxes through the membrane as those previously reported for acidic diclofenac released from buffer solutions of pH >7 were found, taking into account differences originated by different membranes and other parameters tested in the experiments. Saturation concentration for the four salts in different solvents, necessary to calculate permeation coefficients, was critically evaluated; a short discussion made it possible to explain that corrections in the solubility values must be considered, related to the complex behavior in solution of these salts. Statistical processing of the experimental data suggests that differences between the four salts in promoting absorption of the drug is unproven; while differences are evident between the solvents, water is the most effective enhancing vehicle. Aqueous formulations containing diclofenac salt with an organic base appear to be the best combination to promote permeation in topical applications.
使用溶解于四种不同溶剂(水、丙二醇(PG)、二甲基亚砜和油酸(OA))中的四种不同盐(钠盐、钾盐、二乙胺盐和依泊二醇盐)作为供体相,通过人皮肤膜研究双氯芬酸的离体渗透。这四种盐在四种溶剂中表现出不同的溶解度值和不同的行为,而这些溶剂也是渗透促进剂,这一事实进一步与渗透结果相关。考虑到不同膜以及实验中测试的其他参数所产生的差异,发现通过膜的通量与之前报道的从pH>7的缓冲溶液中释放的酸性双氯芬酸的通量处于相同数量级。对计算渗透系数所需的四种盐在不同溶剂中的饱和浓度进行了严格评估;简短的讨论使得能够解释必须考虑溶解度值的校正,这与这些盐在溶液中的复杂行为有关。实验数据的统计处理表明,四种盐在促进药物吸收方面的差异未经证实;而溶剂之间的差异很明显,水是最有效的增强载体。含有双氯芬酸盐与有机碱的水性制剂似乎是局部应用中促进渗透的最佳组合。