Joshi M R, Misra A
Pharmacy Department, Faculty of Technology and Engineering, Kalabhavan, P.O. Box No. 51, M.S. University of Baroda, Vadodara- 39000, Gujarat, India.
AAPS PharmSciTech. 2001 Nov 30;2(4):25. doi: 10.1208/pt020425.
The purpose of the study was to prepare stable liposomally entrapped budesonide (BUD) for a dry powder inhaler (DPI) formulation. BUD liposomes composed of egg phosphatidyl choline and cholesterol were prepared by lipid film hydration technique and sonicated to have the desired size (< 5 micro m). A rapid method was used for separation of free drug by centrifugation at a lower centrifugal force (G value). Liposomal dispersion was subjected to lyophilization after blending BUD with cryoprotectant in varying bulk and mass ratios, and percent drug remaining entrapped after lyophilization was optimized. Comparative drug retention studies on storage of DPI formulations were carried out in accordance with International Conference on Harmonization guidelines. Critical relative humidity of the formulations was determined and reported as one of the manufacturing controls. Sucrose was found to be the most effective cryoprotectant when present on both sides of the lamellae of liposomes in a bulk strength of 500 mM and mass ratio of lipid:sugar; 1:10. Blending of sorbolac before lyophilization showed better retention of encapsulated drug (95.59%). The respirable fraction of the product (20.69 +/- 1.50%) was comparable with that of the control (26.49 +/- 1.52%), suggesting that the liposomal BUD can be successfully delivered throughout the broncho-pulmonary tree. The findings demonstrate that liposome of BUD can be prepared with a high entrapment value, stabilized by lyophilization, and delivered as an aerosolized DPI. The stability studies of lyophilized product suggests a shelf-life of one year when stored under refrigeration (2 degrees C-8 degrees C).
本研究的目的是制备用于干粉吸入器(DPI)制剂的稳定脂质体包裹布地奈德(BUD)。由卵磷脂酰胆碱和胆固醇组成的BUD脂质体通过脂质膜水合技术制备,并进行超声处理以达到所需尺寸(<5微米)。采用一种快速方法,通过较低离心力(G值)离心分离游离药物。将BUD与冷冻保护剂按不同体积和质量比混合后,对脂质体分散液进行冻干,并优化冻干后药物的包封率。根据国际协调会议指南,对DPI制剂储存时的药物保留情况进行了对比研究。测定并报告了制剂的临界相对湿度,作为生产控制指标之一。当脂质体片层两侧均存在体积强度为500 mM、脂质与糖质量比为1:10的蔗糖时,发现其为最有效的冷冻保护剂。冻干前混合山梨醇显示出更好的包封药物保留率(95.59%)。产品的可吸入部分(20.69±1.50%)与对照品(26.49±1.52%)相当,表明脂质体BUD可成功递送至整个支气管肺树。研究结果表明,BUD脂质体可以高包封率制备,通过冻干稳定,并作为雾化DPI给药。冻干产品的稳定性研究表明,在冷藏(2℃-8℃)条件下储存时,保质期为一年。