许东航, 胡巧红, 梁文权. 接受室溶液电导率对盐酸丁卡因离子导入的影响J. 药学学报, 2004, 39(2): 144-148.
引用本文: 许东航, 胡巧红, 梁文权. 接受室溶液电导率对盐酸丁卡因离子导入的影响J. 药学学报, 2004, 39(2): 144-148.
XU Dong-hang, HU Qiao-hong, LIANG Wen-quan. Effect of receptor solution specific conductivity on iontophoresis of tetracaine hydrochlorideEffect of receptor solution specific conductivity on iontophoresis of tetracaine hydrochlorideJ. Acta Pharmaceutica Sinica, 2004, 39(2): 144-148.
Citation: XU Dong-hang, HU Qiao-hong, LIANG Wen-quan. Effect of receptor solution specific conductivity on iontophoresis of tetracaine hydrochlorideEffect of receptor solution specific conductivity on iontophoresis of tetracaine hydrochlorideJ. Acta Pharmaceutica Sinica, 2004, 39(2): 144-148.

接受室溶液电导率对盐酸丁卡因离子导入的影响

Effect of receptor solution specific conductivity on iontophoresis of tetracaine hydrochlorideEffect of receptor solution specific conductivity on iontophoresis of tetracaine hydrochloride

  • 摘要: 目的研究接受室溶液电导率对离子导入渗透速率的影响和作用机理。方法以盐酸丁卡因为模型药物,采用Valia-chien双室扩散池,供应室组成恒定,分别测定不同组成和不同浓度的接受室溶液下的离子导入渗透速率,并测定供应室和接受室的离子电导率。结果盐酸丁卡因离子导入渗透随着接受室阴离子(Cl-)浓度的减少而增加。当电流强度恒定,盐酸丁卡因的离子导入增渗倍数(ER,ER=离子导入渗透速率/被动扩散渗透速率)与供应室和接受室电导率和的倒数[1/(ks,d+ks,r),ks,dks,r分别是供应室和接受室的电导率]成线性关系。结论接受室离子电导率可能是离子导入的重要影响因素。

     

    Abstract: AimTo examine the quantitative relationship between solution specific conductivity and the permeability of tetracaine HCl, and to investigate the effect of receptor solution specific conductivity on the iontophoretic transport. MethodsAn in vitro study was carried out to determine the iontophoretic permeability of tetracaine hydrochloride through rat skin. Iontophoretic flux of tetracaine hydrochloride through excised rat skin was determined using Valia-Chien two-chamber diffusion cells with a constant d.c. current and Ag/AgCl electrodes. The specific conductivities of donor and receptor solution were also measured. Results Iontophoretic flux of tetracaine hydrochloride increased with a decrease of anion (chloride ion) concentration in receptor. And the iontophoretic permeability (ER, ER is the enhacement ratio, and ER=iontophoretic flux/passive flux) for tetracaine hydrochloride was directly related to the conductivity of receptor solution when other conditions were held constant. Linear regressions comfirmed that ER was related to inverse of overall specific conductivity of donor and receptor solution [1/(ks,d+ks,r), ks,d and ks,r are the specific conductivity of donor and receptor solution]. ConclusionThe results suggest that specific conductivity of receptor solution may be a important factor for the iontophoretic permeability of a solute.

     

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