首页> 外文期刊>Scientia pharmaceutica >Iontophoresis: A Potential Emergence of a Transdermal Drug Delivery System
【24h】

Iontophoresis: A Potential Emergence of a Transdermal Drug Delivery System

机译:离子电渗疗法:透皮给药系统的潜在出现

获取原文
           

摘要

The delivery of drugs into systemic circulation via skin has generated much attention during the last decade. Transdermal therapeutic systems propound controlled release of active ingredients through the skin and into the systemic circulation in a predictive manner. Drugs administered through these systems escape first-pass metabolism and maintain a steady state scenario similar to a continuous intravenous infusion for up to several days. However, the excellent impervious nature of the skin offers the greatest challenge for successful delivery of drug molecules by utilizing the concepts of iontophoresis. The present review deals with the principles and the recent innovations in the field of iontophoretic drug delivery system together with factors affecting the system. This delivery system utilizes electric current as a driving force for permeation of ionic and non-ionic medications. The rationale behind using this technique is to reversibly alter the barrier properties of skin, which could possibly improve the penetration of drugs such as proteins, peptides and other macromolecules to increase the systemic delivery of high molecular weight compounds with controlled input kinetics and minimum inter-subject variability. Although iontophoresis seems to be an ideal candidate to overcome the limitations associated with the delivery of ionic drugs, further extrapolation of this technique is imperative for translational utility and mass human application.
机译:在过去的十年中,通过皮肤将药物输送到全身循环系统引起了广泛关注。透皮治疗系统以可预测的方式促进活性成分通过皮肤和全身循环的受控释放。通过这些系统给药的药物可以逃避首过代谢,并保持类似于连续静脉输注长达几天的稳定状态。然而,通过利用离子电渗疗法的概念,皮肤优异的不渗透性为成功递送药物分子提出了最大的挑战。本综述涉及离子电渗药物递送系统领域的原理和最新创新以及影响该系统的因素。该输送系统利用电流作为驱动离子和非离子药物渗透的动力。使用该技术的基本原理是可逆地改变皮肤的屏障特性,这可能会改善药物(如蛋白质,肽和其他大分子)的渗透性,从而以受控的输入动力学和最小的相互作用来增加高分子量化合物的全身递送。主题变异性。尽管离子电渗疗法似乎是克服与离子药物递送相关的局限性的理想选择,但对于翻译实用性和大规模人类应用而言,必须进一步推广该技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号