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用于评估经皮离子电渗迁移率的毛细管区带电泳法。

Capillary zone electrophoresis for the estimation of transdermal iontophoretic mobility.

作者信息

Abla Nada, Geiser Laurent, Mirgaldi Myriam, Naik Aarti, Veuthey Jean-Luc, Guy Richard H, Kalia Yogeshvar N

机构信息

School of Pharmaceutical Sciences, University of Geneva, 30 Quai Ernest-Ansermet, 1211 Geneva, Switzerland.

出版信息

J Pharm Sci. 2005 Dec;94(12):2667-75. doi: 10.1002/jps.20483.

Abstract

The objective of the study was to investigate the relationship between transdermal iontophoretic flux--specifically, the electromigratory component--and electrophoretic mobility as determined by capillary zone electrophoresis (CZE). First, the steady-state iontophoretic transport rates of a series of dipeptides across porcine skin were determined in vitro. Co-iontophoresis of acetaminophen was used to quantify the respective contributions of electroosmosis (EO) and electromigration (EM). Second, the electrophoretic mobilities of the dipeptides and three other cationic drugs (lidocaine, propranolol, and quinine) were determined, under equivalent experimental conditions, using CZE. Analysis of the transport data using the results of the CZE experiments revealed a linear dependence (r2 > 0.9) between EM flux and electrophoretic mobility. The CZE measurements also provided insight into the charge state of "zwitterionic" dipeptides, H-Glu-epsilon-Lys-OH and H-Tyr-Gln-OH, revealing that these molecules had partial net negative charges under the formulation conditions, accounting for the absence of anodal iontophoretic delivery. The results suggest that CZE might (i) enable identification of ionization states of complex molecules, (ii) serve as a preliminary screen to identify electrically mobile compounds suitable for iontophoretic delivery, and (iii) prove useful for predicting the EM contribution to transdermal iontophoretic flux.

摘要

本研究的目的是通过毛细管区带电泳(CZE)来研究透皮离子导入通量(具体而言是电迁移成分)与电泳迁移率之间的关系。首先,在体外测定了一系列二肽在猪皮上的稳态离子导入转运速率。采用对乙酰氨基酚的共离子导入法来量化电渗(EO)和电迁移(EM)各自的贡献。其次,在等效实验条件下,使用CZE测定了二肽以及其他三种阳离子药物(利多卡因、普萘洛尔和奎宁)的电泳迁移率。利用CZE实验结果对转运数据进行分析,结果显示电迁移通量与电泳迁移率之间呈线性相关(r2 > 0.9)。CZE测量还揭示了两性离子二肽H-Glu-ε-Lys-OH和H-Tyr-Gln-OH的电荷状态,发现在制剂条件下这些分子带有部分净负电荷,这解释了阳极离子导入给药不存在的原因。结果表明,CZE可能(i)有助于识别复杂分子的电离状态,(ii)作为初步筛选手段来识别适合离子导入给药的可电迁移化合物,以及(iii)在预测电迁移对透皮离子导入通量的贡献方面证明是有用的。

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