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首页> 外文期刊>International Journal of Nanomedicine >Effect of microemulsions on transdermal delivery of citalopram: optimization studies using mixture design and response surface methodology
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Effect of microemulsions on transdermal delivery of citalopram: optimization studies using mixture design and response surface methodology

机译:微乳对西酞普兰透皮递送的影响:使用混合物设计和响应面法的优化研究

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摘要

Abstract: The aim of this study was to evaluate the potential of microemulsions as a drug vehicle for transdermal delivery of citalopram. A computerized statistical technique of response surface methodology with mixture design was used to investigate and optimize the influence of the formulation compositions including a mixture of Brij 30/Brij 35 surfactants (at a ratio of 4:1, 20%–30%), isopropyl alcohol (20%–30%), and distilled water (40%–50%) on the properties of the drug-loaded microemulsions, including permeation rate (flux) and lag time. When microemulsions were used as a vehicle, the drug permeation rate increased significantly and the lag time shortened significantly when compared with the aqueous control of 40% isopropyl alcohol solution containing 3% citalopram, demonstrating that microemulsions are a promising vehicle for transdermal application. With regard to the pharmacokinetic parameters of citalopram, the flux required for the transdermal delivery system was about 1280 μg per hour. The microemulsions loaded with citalopram 3% and 10% showed respective flux rates of 179.6 μg/cm2 and 513.8 μg/cm2 per hour, indicating that the study formulation could provide effective therapeutic concentrations over a practical application area. The animal study showed that the optimized formulation (F15) containing 3% citalopram with an application area of 3.46 cm2 is able to reach a minimum effective therapeutic concentration with no erythematous reaction.
机译:摘要:本研究旨在评估微乳作为西酞普兰透皮给药的药物载体的潜力。采用响应表面方法的计算机化统计技术和混合物设计用于研究和优化配方组合物的影响,包括Brij 30 / Brij 35表面活性剂(比例为4:1、20%–30%),异丙基的混合物酒精(20%–30%)和蒸馏水(40%–50%)对载药微乳剂的性能(包括渗透率(通量)和滞后时间)的影响。当将微乳用作载体时,与含3%西酞普兰的40%异丙醇水溶液的对照相比,药物的渗透率显着提高,并且滞后时间显着缩短,这表明微乳是一种有希望的透皮应用载体。关于西酞普兰的药代动力学参数,透皮递送系统所需的通量为每小时约1280μg。载有3%和10%西酞普兰的微乳剂的通量速率分别为每小时179.6μg/ cm2和513.8μg/ cm2,表明该研究制剂可在实际应用领域提供有效的治疗浓度。动物研究表明,含有3%西酞普兰,施用面积为3.46 cm2的优化配方(F15)能够达到最小有效治疗浓度,而不会出现红斑反应。

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