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体外离子电渗促进甘氨酸经皮递送的研究。

Investigation of in vitro iontophoresis facilitated transdermal delivery of glycine.

作者信息

Dasgupta Rajdeep, Banthia Ajit K, Tibarewala D N

机构信息

Materials Science Centre, Indian Institute of Technology, Kharagpur, India.

出版信息

Curr Drug Deliv. 2009 Apr;6(2):145-50. doi: 10.2174/156720109787846207.

Abstract

The research presented in this paper discusses the potential of iontophoresis facilitated transdermal delivery of glycine. Iontophoresis has been widely investigated as a noninvasive transdermal drug delivery system. Iontophoresis is the use of a low electric current to carry ionized as well as unionized drug molecules across tissues (like skin) in a noninvasive technique. In the present paper, a custom made low cost, battery powered, portable transdermal iontophoretic system has been investigated for the various parameters of transdermal iontophoretic drug delivery namely drug density in donor formulation, current density, current profile, presence of competitive ions and type of electrode material. In vitro release studies of glycine, as a drug, were done using a modified Franz type glass diffusion cell through excised mouse skin. Factors affecting the delivery of glycine (a non-essential amino acid used to treat schizophrenia, anxiety, insomnia, hypoglycemia etc.) by iontophoresis include concentration of glycine in donor solution, ionic strength of donor solution, density of applied current & its aspect ratio. The change in frequency and electrode type (Ag/AgCl & stainless steel) did not have any significant effect on glycine delivery. In conclusion it could be stated that it is possible to achieve appreciable control over the transdermal delivery of glycine by the low-cost portable iontophoretic drug delivery system developed.

摘要

本文所展示的研究探讨了离子电渗促进甘氨酸经皮递送的潜力。离子电渗作为一种非侵入性经皮给药系统已得到广泛研究。离子电渗是利用低电流以非侵入性技术使离子化以及非离子化的药物分子穿过组织(如皮肤)。在本文中,针对经皮离子电渗给药的各种参数,即供体配方中的药物密度、电流密度、电流分布、竞争离子的存在以及电极材料类型,研究了一种定制的低成本、电池供电的便携式经皮离子电渗系统。使用改良的弗兰兹型玻璃扩散池,通过切除的小鼠皮肤进行了甘氨酸作为药物的体外释放研究。影响离子电渗递送甘氨酸(一种用于治疗精神分裂症、焦虑症、失眠、低血糖等的非必需氨基酸)的因素包括供体溶液中甘氨酸的浓度、供体溶液的离子强度、施加电流的密度及其纵横比。频率和电极类型(银/氯化银和不锈钢)的变化对甘氨酸的递送没有任何显著影响。总之,可以说通过开发的低成本便携式离子电渗给药系统能够对甘氨酸的经皮递送实现可观的控制。

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