Hao Jinsong, Li S Kevin
Division of Pharmaceutical Sciences, College of Pharmacy, University of Cincinnati, Cincinnati, Ohio 45267, USA.
J Pharm Sci. 2008 Dec;97(12):5186-97. doi: 10.1002/jps.21368.
The objective of this study was to investigate the effects of pH and ionic strength on electroosmotic transport in transungual iontophoresis. Transungual iontophoretic transport of model neutral permeants mannitol (MA) and urea (UR) across fully hydrated human nail plates in phosphate-buffered saline of different pH and ionic strengths were investigated in vitro. Two protocols were involved in the transport experiments with each protocol divided into stages including passive and iontophoresis transport at 0.1 and/or 0.3 mA. Nail plate electrical resistance and water uptake of nail clippings were measured at various pH and ionic strengths. In the pH study, electroosmosis enhanced the anodal transport of MA at pH 9 and cathodal transport at pH 3. The Peclet numbers of MA were more than two times higher than those of UR under these conditions. No significant electroosmosis enhancement was observed for MA and UR at pH 5. In the ionic strength study, a decrease in solution ionic strength from 0.7 to 0.04 M enhanced electroosmotic transport. Nail electrical resistance increased with decreasing the ionic strength of the equilibrating solution, but reached a plateau when the ionic strength was less than approximately 0.07 M. Solution pH and ionic strength had no significant effect on nail hydration. Under the studied pH and ionic strength conditions, the effects of electroosmosis were small compared to the direct-field effects in transungual iontophoretic transport of small to moderate size permeants.
本研究的目的是调查pH值和离子强度对经皮离子电渗疗法中电渗转运的影响。在体外研究了模型中性渗透剂甘露醇(MA)和尿素(UR)在不同pH值和离子强度的磷酸盐缓冲盐溶液中通过完全水合的人指甲板的经皮离子电渗转运。转运实验涉及两种方案,每种方案分为多个阶段,包括在0.1和/或0.3 mA下的被动转运和离子电渗转运。在不同的pH值和离子强度下测量了指甲板电阻和指甲剪的吸水量。在pH值研究中,电渗作用增强了MA在pH 9时的阳极转运以及在pH 3时的阴极转运。在这些条件下,MA的佩克莱数比UR的佩克莱数高出两倍以上。在pH 5时,未观察到MA和UR的电渗作用有明显增强。在离子强度研究中,溶液离子强度从0.7 M降低到0.04 M增强了电渗转运。指甲电阻随着平衡溶液离子强度的降低而增加,但当离子强度小于约0.07 M时达到平稳状态。溶液pH值和离子强度对指甲水合作用无显著影响。在所研究的pH值和离子强度条件下,与中小尺寸渗透剂经皮离子电渗转运中的直接电场效应相比,电渗作用的影响较小。