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首页> 外文期刊>Drug development and industrial pharmacy >Design and evaluation of transdermal drug delivery system for curcumin as an anti-inflammatory drug.
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Design and evaluation of transdermal drug delivery system for curcumin as an anti-inflammatory drug.

机译:姜黄素作为消炎药的透皮给药系统的设计和评估。

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摘要

The purpose of this research was to develop a matrix-type transdermal therapeutic system containing herbal drug, curcumin (CUR), with different ratios of hydrophilic (hydroxyl propyl methyl cellulose K4M [HPMC K4M]) and hydrophobic (ethyl cellulose [EC]) polymeric systems by the solvent evaporation technique. Different concentrations of oleic acid (OA) were used to enhance the transdermal permeation of CUR. The physicochemical compatibility of the drug and the polymers was also studied by differential scanning calorimetry (DSC) and infrared (IR) spectroscopy. The results suggested no physicochemical incompatibility between the drug and the polymers. Formulated transdermal films were physically evaluated with regard to drug content, tensile strength, folding endurance, thickness, and weight variation. All prepared formulations indicated good physical stability. In vitro permeation studies of formulations were performed by using Franz diffusion cells. The results followed Higuchi kinetics, and the mechanism of release was diffusion-mediated. Formulation prepared with hydrophilic polymer containing permeation enhancer showed best in vitro skin permeation through rat skin as compared with all other formulations. This formulation demonstrated good anti-inflammatory activity against carrageenan-induced oedema in Wistar albino rats similar to standard formulation.
机译:这项研究的目的是开发一种包含草药姜黄素(CUR)的基质型透皮治疗系统,其中姜黄素(CUR)具有不同比例的亲水性(羟丙基甲基甲基纤维素K4M [HPMC K4M])和疏水性(乙基纤维素[EC])聚合物系统采用溶剂蒸发技术。使用不同浓度的油酸(OA)增强CUR的透皮渗透。还通过差示扫描量热法(DSC)和红外(IR)光谱研究了药物与聚合物的物理化学相容性。结果表明药物与聚合物之间没有物理化学不相容性。就药物含量,抗张强度,耐折性,厚度和重量变化对配制的透皮薄膜进行物理评估。所有制备的制剂表明良好的物理稳定性。通过使用Franz扩散池进行制剂的体外渗透研究。结果遵循Higuchi动力学,并且释放机理是扩散介导的。与所有其他制剂相比,用含有渗透促进剂的亲水性聚合物制备的制剂表现出通过大鼠皮肤的最佳体外皮肤渗透。与标准制剂相似,该制剂在Wistar白化病大鼠中显示出对角叉菜胶诱导的水肿的良好抗炎活性。

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