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吲哚美辛离子化和非离子化形式的皮肤渗透系数计算

Calculation of skin permeability coefficient for ionized and unionized species of indomethacin.

作者信息

Hayashi T, Sugibayashi K, Morimoto Y

机构信息

Faculty of Pharmaceutical Sciences, Josai University, Saitama, Japan.

出版信息

Chem Pharm Bull (Tokyo). 1992 Nov;40(11):3090-3. doi: 10.1248/cpb.40.3090.

Abstract

The contribution of ionized and unionized species to the overall permeation of weak electrolytes through the skin was investigated to determine the effect of pH in the vehicle on the permeability of indomethacin (IDM), as a model drug, through hairless rat skin. The permeability of IDM through polydimethylsiloxane (silicone) and poly(2-hydroxyethyl methacrylate) (pHEMA) membranes which may reflect lipid and aqueous pathway, respectively, was also measured for comparison. As the pH in the vehicle increased, there was an exponential increase in the skin permeation rate of IDM. The permeation rate of IDM through the silicone membrane was constant independent of pH, whereas that through the pHEMA membrane increased with increasing pH, similar to the skin permeation. The permeability coefficients of ionized and unionized species through the skin estimated using the skin permeation rates and solubilities of IDM at various pHs were 1.50 x 10(-7) and 2.79 x 10(-5) cm/s, respectively. These results indicated that the permeation of ionized species greatly contributed to the total permeation of IDM at higher pH, and that the total permeation rate of IDM was determined by the permeation of unionized species at lower pH. These contributions depend on the pH and pKa values and the ratio of permeability coefficient of each species. It was also confirmed that the skin has at least two kinds of permeation pathways and these two species permeate through a different pathway.

摘要

研究了离子化和非离子化形式对弱电解质经皮整体渗透的贡献,以确定载体pH值对作为模型药物的吲哚美辛(IDM)经无毛大鼠皮肤渗透性的影响。还测量了IDM通过聚二甲基硅氧烷(硅酮)和聚甲基丙烯酸2-羟乙酯(pHEMA)膜的渗透性,这两种膜可能分别反映脂质和水性途径,以便进行比较。随着载体pH值的升高,IDM的皮肤渗透速率呈指数增加。IDM通过硅酮膜的渗透速率与pH无关,保持恒定,而通过pHEMA膜的渗透速率则随pH升高而增加,与皮肤渗透情况相似。利用不同pH值下IDM的皮肤渗透速率和溶解度估算出离子化和非离子化形式通过皮肤的渗透系数分别为1.50×10⁻⁷和2.79×10⁻⁵ cm/s。这些结果表明,在较高pH值下,离子化形式的渗透对IDM的总渗透贡献很大,而在较低pH值下,IDM的总渗透速率由非离子化形式的渗透决定。这些贡献取决于pH值和pKa值以及每种形式的渗透系数之比。还证实皮肤至少有两种渗透途径,且这两种形式通过不同途径渗透。

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