Sandhya Maurya, J. Malik, G. Kumar, Sunil Kumar, Gyan Singh, Surendra Pratap Singh, V. Siroliya
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引用次数: 0
摘要
研究目的本研究旨在开发基于壳聚糖的左氧氟沙星缓释微球,以减少给药次数。材料与方法:以戊二醛为交联剂,采用乳化交联法制备左氧氟沙星微球。将准确称量的壳聚糖溶解在 1%(v/v)的乙酸水溶液中。结果根据改进制剂(F2)的体外溶解分析(表 7.8),当药物被包裹在壳聚糖微球中时,95% 的制剂在 12 小时后释放,这表明药物从制剂中释放是可控的。结论药物:聚合物比例和 GA 体积对药物的夹持效果百分比、粒度和药物释放百分比有显著影响。根据扫描电子显微镜(SEM)的研究,微球呈圆形,表面光滑。尼可地尔负载壳聚糖微球配方通过费克扩散作用释放药物。
Preparation and Evaluation of Chitosan Microspheres Containing Levofloxacin
Objectives: The objective of present study was to develop chitosan-based sustained release Levofloxacin microspheres to reduce the dosing frequency. Materials and Methods: The Levofloxacin -loaded microspheres were prepared by emulsification cross-linking method using glutaraldehyde as cross-linking agent. Accurately weighed quantity of Chitosan was dissolved in 1% (v/v) aqueous acetic acid. Results: The percentage yield of the emulsification cross-linking method was determined to be between 74 and 81.5 percent, and the spherical microspheres had particle sizes ranging from 2 m to 200 m. According to the in vitro dissolution analysis of the improved formulation (F2) (table 7.8), when the medication was enclosed in Chitosan microspheres, 95 percent of the formulation was released after 12 hours, demonstrating that the drug is released from the formulation in a controlled way. Conclusions: The percentage of entrapment effectiveness, particle size, and percentage of drug release were significantly impacted by the drug: polymer ratio and GA volume. According to research using scanning electron microscopy (SEM), microspheres were round and had a smooth surface. Nicorandil-loaded chitosan microsphere formulations released their drugs via fickian diffusion.