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优化自微乳给药系统以增强格列美脲透皮贴片的体内降血糖功效。

Optimization of self-nanoemulsifying systems for the enhancement of in vivo hypoglycemic efficacy of glimepiride transdermal patches.

机构信息

King Abdulaziz University, Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy , Jeddah-21589 , Saudi Arabia +966 599120686 ; +966 26951696 ;

出版信息

Expert Opin Drug Deliv. 2014 Jul;11(7):1005-13. doi: 10.1517/17425247.2014.906402. Epub 2014 Apr 5.

Abstract

OBJECTIVES

To optimize and use of glimepiride (GMD)-loaded self-nanoemulsifying delivery systems (SNEDs) for the preparation of transdermal patches.

METHODS

Mixture design was utilized to optimize GMD-loaded SNEDs in acidic and aqueous pH media. Optimized GMD-loaded SNEDs were used in the preparation of chitosan (acidic) and hydroxypropyl methyl cellulose (HPMC) (aqueous) films. The prepared optimized formulations were investigated for ex vivo skin permeation, for in vivo hypoglycemic activity and for their pharmacokinetic parameters using animal model.

RESULTS

The optimized formulations showed flux value of (2.88 and 4.428 μg/cm(2)/h) through rat skin for chitosan and HPMC films, respectively. The pattern of GMD release from both formulations was in favor of Higuchi and approaching zero order models. The n values for Korsmeyer-Peppas equation were characteristic of anomalous (non-Fickian) release mechanism. Moreover, HPMC patches have shown significant reductions (p < 0.05) in blood glucose levels; (213.33 ± 15.19) mg/100 ml from the base-line measurement after 12 h of application.

CONCLUSIONS

Optimized GMD SNEDs patches were found to improve GMD skin permeability and the essential pharmacokinetic parameters. Further extensive pre/clinical studies are necessary prior to use transdermal GMD as a valuable alternative to peroral dosage forms with improved bioavailability, longer duration of action and more patient convenience.

摘要

目的

优化和利用载格列美脲(GMD)的自微乳给药系统(SNEDs)制备透皮贴剂。

方法

采用混合设计优化 GMD 载 SNEDs 在酸性和水性 pH 介质中的载药量。优化的 GMD 载 SNEDs 用于壳聚糖(酸性)和羟丙基甲基纤维素(HPMC)(水性)薄膜的制备。对所制备的优化配方进行了体外皮肤渗透、体内降血糖活性以及动物模型的药代动力学参数研究。

结果

优化后的配方在大鼠皮肤中的通量值分别为壳聚糖和 HPMC 薄膜的(2.88 和 4.428μg/cm(2)/h)。两种制剂中 GMD 的释放模式均有利于 Higuchi 并接近零级模型。Korsmeyer-Peppas 方程的 n 值表明,释放机制为异常(非菲克)。此外,HPMC 贴片能显著降低(p < 0.05)血糖水平;与基线测量相比,应用 12 小时后降低了(213.33 ± 15.19)mg/100ml。

结论

优化的 GMD SNEDs 贴片能提高 GMD 的皮肤渗透性和重要的药代动力学参数。在将透皮 GMD 作为口服剂型的有价值替代品之前,还需要进行进一步的广泛的临床前/临床研究,以提高生物利用度、延长作用时间和提高患者便利性。

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