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首页> 外文期刊>Current Drug Delivery >L9 Orthogonal Design Assisted Formulation and Evaluation of Chitosanbased Buccoadhesive Films of Miconazole Nitrate
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L9 Orthogonal Design Assisted Formulation and Evaluation of Chitosanbased Buccoadhesive Films of Miconazole Nitrate

机译:L9正交设计辅助配方和硝酸壳酸咪康唑的颊粘膜评价

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The present study was aimed to prepare and evaluate buccoadhesive films of miconazole nitrate (MCZ). The films based on chitosan were prepared by solvent casting method using L9 orthogonal array design to release the drug above its minimum inhibitory concentration (MIC) for a prolonged period of time so as to reduce its frequency of administration. As per the experimental design, guar gum, HPMC K15M and HEC were added at three different levels to control the drug release. Films showed smooth, uniform and non-sticky surface with good flexibility and folding endurance. Thickness and weight-variation data showed no significant difference among the batches, indicating that the polymeric blend possessed a good film forming ability and its desired properties could easily be achieved by varying the composition of the casting solution.nnFilms composed of chitosan with guar gum appeared to be tougher; comparatively more bioadhesive in vitro, resided to an appropriate time interval and swelled at a more reasonable rate than those containing HPMC and HEC, suggesting the superiority of guar gum over other polymers. In vitro drug release studies conducted on all batches and microbiological studies done on the statistically optimized formulation demonstrated that the films had ability to sustain the drug concentration above its MIC for 6 hrs, despite the incorporation of a smaller dose (2.5 mg/cm of the film). Films, except CF2 and CF3, followed Fickian diffusion of release mechanism. FT-IR spectra revealed no interactions between the drug and polymers.
机译:本研究旨在制备和评估硝酸咪康唑(MCZ)的颊黏膜。基于壳聚糖的薄膜是通过溶剂浇铸法制备的,采用L9正交阵列设计,可长时间释放高于其最低抑菌浓度(MIC)的药物,从而降低了给药频率。根据实验设计,瓜耳胶,HPMC K15M和HEC以三种不同的水平添加以控制药物释放。薄膜显示光滑,均匀且不粘的表面,具有良好的柔韧性和耐折性。厚度和重量变化数据显示各批次之间无显着差异,表明该聚合物共混物具有良好的成膜能力,并且通过改变流延溶液的组成可以轻松实现所需的性能。nn由壳聚糖和瓜尔胶组成的薄膜出现了更坚强与含有HPMC和HEC的胶粘剂相比,离体生物胶粘剂在体外具有相对较高的生物粘附力,停留时间适当,并且以更合理的速率溶胀,表明瓜尔豆胶优于其他聚合物。对所有批次进行的体外药物释放研究以及对统计优化配方进行的微生物学研究表明,尽管加入了较小剂量(2.5 mg / cm 2的电影)。除CF2和CF3外,其他胶片均遵循Fickian扩散机制。 FT-IR光谱显示药物与聚合物之间没有相互作用。

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