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离子电渗法药物透过人指甲的递送

Iontophoretic drug delivery across human nail.

作者信息

Narasimha Murthy S, Wiskirchen Dora E, Bowers Christopher Paul

机构信息

Department of Pharmaceutics, The University of Mississippi, Oxford, Mississippi 38677, USA.

出版信息

J Pharm Sci. 2007 Feb;96(2):305-11. doi: 10.1002/jps.20757.

Abstract

Topical trans-nail delivery of antifungal drugs is limited by several physicochemical and physiological factors. Use of chemical permeation enhancers has been a common approach for enhancing trans-nail delivery of drugs. The potential of physical permeation enhancement techniques has been found to be higher than the potential of chemical permeation enhancers in transdermal delivery of hydrophilic drugs and macromolecular therapeutic agents. However, application of physical permeation enhancement techniques has not been explored for trans-nail drug delivery. In the current work, iontophoresis was applied across human nail in vitro to assess its efficiency in enhancing drug delivery. Salicylic acid (SA) was used as test diffusant. The influence of pH, ionic strength, and current density was studied. Obviously, increase in current density increased the trans-nail transport flux. It appears that about 50-100 mM ionic strength is required for optimal conduction of electric current across nail. The flux enhancement factor (iontophoretic flux/passive flux) also increased with increase in pH due to increased ionization of SA. This study demonstrates the efficacy of iontophoresis in enhancing the trans-nail delivery of drugs.

摘要

抗真菌药物的经指甲局部给药受到多种物理化学和生理因素的限制。使用化学渗透促进剂一直是增强药物经指甲给药的常用方法。在亲水性药物和大分子治疗剂的透皮给药中,物理渗透增强技术的潜力已被发现高于化学渗透促进剂的潜力。然而,物理渗透增强技术在经指甲药物递送中的应用尚未得到探索。在当前的工作中,在体外将离子电渗法应用于人体指甲,以评估其在增强药物递送方面的效率。水杨酸(SA)用作测试扩散剂。研究了pH值、离子强度和电流密度的影响。显然,电流密度的增加会增加经指甲的转运通量。似乎需要约50-100 mM的离子强度才能使电流在指甲上实现最佳传导。由于SA的离子化增加,通量增强因子(离子电渗通量/被动通量)也随着pH值的增加而增加。这项研究证明了离子电渗法在增强药物经指甲递送方面的有效性。

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