Li L C, Vu N T, Allen L V
College of Pharmacy, University of Oklahoma, Oklahoma City 73190.
J Pharm Pharmacol. 1992 May;44(5):444-6. doi: 10.1111/j.2042-7158.1992.tb03642.x.
The iontophoretic transport properties of sodium cromoglycate were characterized using a synthetic membrane and excised hairless mouse skin. The permeation rate of sodium cromoglycate through the synthetic membrane was found to be linearly dependent on the density of electrical current applied. Passive diffusion through the excised hairless mouse skin was not demonstrated for sodium cromoglycate; however, under iontophoresis, an appreciable permeation was exhibited by the drug through the animal skin, which was also found to be a function of the electrical current density.
使用合成膜和切除的无毛小鼠皮肤对色甘酸钠的离子导入传输特性进行了表征。发现色甘酸钠通过合成膜的渗透速率与施加的电流密度呈线性相关。未证明色甘酸钠通过切除的无毛小鼠皮肤进行被动扩散;然而,在离子导入条件下,该药物通过动物皮肤表现出明显的渗透,且也发现这是电流密度的函数。