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采用脂质体和离子导入相结合的方法实现无创性和持久性经毛囊药物传递系统。

Noninvasive and persistent transfollicular drug delivery system using a combination of liposomes and iontophoresis.

机构信息

Hokkaido University, Sapporo, Hokkaido 060-0812, Japan.

出版信息

Int J Pharm. 2011 Jan 17;403(1-2):57-65. doi: 10.1016/j.ijpharm.2010.10.021. Epub 2010 Oct 21.

Abstract

Iontophoresis is a promising technique for enhancing transdermal administration of charged drugs. However, conventional iontophoresis is not sufficient for effective delivery of large, hydrophilic, or electrically neutral molecules. In this study, we utilized charged liposomes as carriers, focused on a transfollicular route for delivery of the liposomes, and optimized iontophoretic conditions and lipid composition for this method in both in vitro and in vivo conditions. As a result, we identified the optimum condition (lipid composition: DOTAP/EPC/Chol=2:2:1, current supply: 0.45mA/cm(2), duration: 1h) for effective iontophoretic delivery of aqueous solution, which cannot be transferred into the skin without charged liposomes. We also examined the pharmacological effects of iontophoresis of liposomes encapsulating insulin (INS-lipo) using a rat model of type I diabetes. Interestingly, iontophoresis of INS-lipo onto a diabetes rat skin resulted in a gradual decrease in blood glucose levels, with levels reaching 20% of initial values at 18h after administration. These lower blood glucose levels were maintained for up to 24h. Significant amount of insulin were also detected in plasma 18h after iontophoresis of INS-lipo. We succeeded in developing a non-invasive and persistent transfollicular drug delivery system that used a combination of liposomes and iontophoresis.

摘要

电渗析是一种很有前途的技术,可增强带电荷药物的经皮给药。然而,传统的电渗析对于有效传递大的、亲水性的或电中性的分子是不够的。在这项研究中,我们利用带电荷的脂质体作为载体,专注于通过毛囊途径传递脂质体,并优化了这种方法的电渗析条件和脂质组成,包括在体外和体内条件下。结果,我们确定了最佳条件(脂质组成:DOTAP/EPC/Chol=2:2:1,电流供应:0.45mA/cm(2),持续时间:1 小时),可有效传递不带电荷脂质体无法传递的水溶液。我们还使用 I 型糖尿病大鼠模型检查了包封胰岛素的脂质体(INS-lipo)电渗析的药理作用。有趣的是,将 INS-lipo 电渗析到糖尿病大鼠皮肤上会导致血糖水平逐渐下降,给药 18 小时后降至初始值的 20%。这些较低的血糖水平可维持长达 24 小时。在电渗析 INS-lipo 18 小时后,还可以在血浆中检测到大量的胰岛素。我们成功开发了一种非侵入性和持续的经毛囊药物传递系统,该系统结合了脂质体和电渗析。

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