College of Pharmacy and Health Sciences, St. John's University , Queens, NY , USA.
Pharm Dev Technol. 2014 May;19(3):373-84. doi: 10.3109/10837450.2013.788658. Epub 2013 May 1.
The objective of the present investigation was to enhance skin permeation of diclofenac using water-in-oil microemulsion and to elucidate its skin permeation mechanism. The w/o microemulsion formulations were selected based on constructed pseudoternary phase diagrams depending on water solubilization capacity and thermodynamic stability. These formulations were also subjected to physical characterization based on droplet size, viscosity, pH and conductivity. Permeation of diclofenac across rat skin using side-by-side permeation cells from selected w/o microemulsion formulations were evaluated and compared with control formulations. The selected w/o microemulsion formulations were thermodynamically stable, and incorporation of diclofenac sodium into microemulsion did not affect the phase behavior of system. All microemulsion formulations had very low viscosity (11-17 cps) and droplet size range of 30-160 nm. Microemulsion formulations exhibited statistically significant increase in diclofenac permeation compared to oily solution, aqueous solution and oil-Smix solution. Higher skin permeation of diclofenac was observed with low Smix concentration and smaller droplet size. Increase in diclofenac loading in aqueous phase decreased the partition of diclofenac. Diclofenac from the oil phase of microemulsion could directly partition into skin, while diclofenac from the aqueous droplets was carried through skin by carrier effect.
本研究旨在通过油包水乳状液来提高双氯芬酸的皮肤渗透,并阐明其皮肤渗透机制。根据水溶解度和热力学稳定性,构建伪三元相图,选择 w/o 乳状液配方。这些配方还根据粒径、粘度、pH 值和电导率进行了物理特性分析。从选定的 w/o 乳状液配方中使用侧-侧渗透细胞评估双氯芬酸在大鼠皮肤中的渗透,并与对照配方进行比较。所选的 w/o 乳状液配方热力学稳定,将双氯芬酸钠掺入乳状液不会影响体系的相行为。所有乳状液配方的粘度均非常低(11-17 cps),粒径范围为 30-160 nm。与油性溶液、水性溶液和油-Smix 溶液相比,乳状液配方显著增加了双氯芬酸的渗透。双氯芬酸在低 Smix 浓度和较小粒径时的皮肤渗透更高。水相中的双氯芬酸负载增加会降低双氯芬酸的分配。乳状液油相中的双氯芬酸可以直接分配到皮肤中,而来自水性液滴的双氯芬酸通过载体效应携带到皮肤中。