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齐多夫定的经皮给药:萜类化合物的作用及其作用机制

Transdermal delivery of zidovudine: effect of terpenes and their mechanism of action.

作者信息

Narishetty Sunil Thomas Kumar, Panchagnula Ramesh

机构信息

Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER) Sector 67, Phase 10, Mohali-160062, Punjab, India.

出版信息

J Control Release. 2004 Mar 24;95(3):367-79. doi: 10.1016/j.jconrel.2003.11.022.

Abstract

The effect of various oxygen-containing monoterpenes such as cineole, menthol, alpha-terpineol, menthone, pulegone and carvone was investigated on ex vivo permeation of zidovudine (AZT) across rat skin. Furthermore, saturation solubility of AZT, its stratum corneum (SC)/vehicle partition coefficient and activation energy for diffusion across skin with or without terpene(s) in vehicle (66.6% ethanol in water) were determined to understand their mechanism of action. All the terpenes studied significantly increased transdermal flux of AZT in comparison to vehicle (p<0.05) and their enhancement activities are in the following decreasing order: cineole>menthol>menthone approximately pulegone approximately alpha-terpineol>carvone>vehiclewater. On the other hand, saturation solubility and SC/vehicle partition coefficient of AZT were not significantly altered (p>0.05) by terpenes. Activation energies of AZT permeation across rat skin from water, vehicle and cineole in vehicle were measured to be 20.4, 18.6 and 10.6 kcal/mol, respectively. Interactions between terpenes and SC lipids were studied with molecular modeling and found that terpenes form hydrogen bonds (bond lengths<2 A) with lipid head groups. The mechanism of permeation enhancement of AZT by terpenes was explained with thermodynamic activity, SC/vehicle partition coefficient, activation energy and molecular modeling studies.

摘要

研究了桉叶油素、薄荷醇、α-松油醇、薄荷酮、胡薄荷酮和香芹酮等各种含氧单萜对齐多夫定(AZT)离体透过大鼠皮肤的影响。此外,还测定了AZT的饱和溶解度、其角质层(SC)/载体分配系数以及在载体(66.6%乙醇水溶液)中有无萜类物质时皮肤扩散的活化能,以了解其作用机制。与载体相比,所有研究的萜类物质均显著增加了AZT的透皮通量(p<0.05),其增强活性按以下降序排列:桉叶油素>薄荷醇>薄荷酮≈胡薄荷酮≈α-松油醇>香芹酮>载体水溶液。另一方面,萜类物质对AZT的饱和溶解度和SC/载体分配系数没有显著影响(p>0.05)。测定了AZT从水、载体和载体中的桉叶油素透过大鼠皮肤的活化能,分别为20.4、18.6和10.6 kcal/mol。通过分子模拟研究了萜类物质与SC脂质之间的相互作用,发现萜类物质与脂质头部基团形成氢键(键长<2 Å)。通过热力学活性、SC/载体分配系数、活化能和分子模拟研究解释了萜类物质增强AZT渗透的机制。

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