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首页> 外文期刊>Journal of Microencapsulation: Microcapsules Liposomes Nanoparticles Microcells Microspheres >Formulation optimization of transdermal meloxicam potassium-loaded mesomorphic phases containing ethanol, oleic acid and mixture surfactant using the statistical experimental design methodology
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Formulation optimization of transdermal meloxicam potassium-loaded mesomorphic phases containing ethanol, oleic acid and mixture surfactant using the statistical experimental design methodology

机译:使用统计实验设计方法优化含有乙醇,油酸和混合表面活性剂的美洛昔康钾盐透皮介晶相的配方优化

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摘要

Response surface methodology (RSM) was used to develop and optimize the mesomorphic phase formulation for a meloxicam transdermal dosage form. A mixture design was applied to prepare formulations which consisted of three independent variables including oleic acid (X1), distilled water (X2) and ethanol (X3). The flux and lag time (LT) were selected as dependent variables. The result showed that using mesomorphic phases as vehicles can significantly increase flux and shorten LT of drug. The analysis of variance showed that the permeation parameters of meloxicam from formulations were significantly influenced by the independent variables and their interactions. The X3 (ethanol) had the greatest potential influence on the flux and LT, followed by X1 and X2. A new formulation was prepared according to the independent levels provided by RSM. The observed responses were in close agreement with the predicted values, demonstrating that RSM could be successfully used to optimize mesomorphic phase formulations.
机译:使用响应表面方法(RSM)开发和优化美洛昔康透皮剂型的同晶相配方。应用混合物设计来制备由三个独立变量组成的制剂,包括油酸(X1),蒸馏水(X2)和乙醇(X3)。通量和滞后时间(LT)被选为因变量。结果表明,使用介晶相作为载体可以显着增加药物通量并缩短药物的LT。方差分析表明,制剂中美洛昔康的渗透参数受到独立变量及其相互作用的显着影响。 X3(乙醇)对通量和LT的潜在影响最大,其次是X1和X2。根据RSM提供的独立水平制备新配方。观察到的响应与预测值非常一致,表明RSM可以成功地用于优化介晶相配方。

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