首页> 外文期刊>Drug development and industrial pharmacy >Formulation design of a highly hygroscopic drug (pyridostigmine bromide) for its hygroscopic character improvement and investigation of in vitro/in vivo dissolution properties.
【24h】

Formulation design of a highly hygroscopic drug (pyridostigmine bromide) for its hygroscopic character improvement and investigation of in vitro/in vivo dissolution properties.

机译:高吸湿性药物(溴化吡啶斯的明)的配方设计,以改善其吸湿性并研究体内/体外溶出特性。

获取原文
获取原文并翻译 | 示例
       

摘要

Pyridostigmine bromide (PB) sustained-release (SR) pellets were developed by extrusion-spheronization and fluid-bed methods using Taguchi experimental and 2(3) full factorial design. In vitro studies, the 2(3) full factorial design was utilized to search for the optimal SR pellets with specific release rate at different time intervals (release percent of 2, 6, 12, and 24 hr were 6.24, 33.48, 75.18, and 95.26%, respectively) which followed a zero-order mechanism (n=0.93). The results of moisture absorption by Karl Fischer has shown the optimum SR pellets at 25 degrees C/60% RH, 30 degrees C/65% RH, and 40 degrees C/75% RH chambers from 1 hr-4 weeks, attributing that the moisture absorption was not significantly increased. In the in vivo study, the results of the bioavailability data showed the Tmax (from 0.65+/-0.082 hr-4.82+/-2.12 hr) and AUC0-30 hr (from 734.88+/-230.68 ng/mL.hr-1454.86+/-319.28 ng/mL.hr) were prolonged and increased, as well as Cmax (from 251.87+/-27.51 ng/mL-115.08+/-14.87 ng/mL) was decreased for optimum SR-PB pellets when compared with commercial immediate-release (IR) tablets. Furthermore, a good linear regression relationship (r=0.9943) was observed between the fraction dissolution and fraction absorption for the optimum SR pellets. In this study, the formulation design not only improved the hygroscopic character of PB but also achieved the SR effect.
机译:使用Taguchi实验和2(3)全因子设计,通过挤出滚圆法和流化床方法开发了溴吡斯的明溴(PB)缓释(SR)颗粒。在体外研究中,采用2(3)全因子设计来搜索在不同时间间隔具有特定释放速率的最佳SR药丸(2、6、12和24小时的释放百分比分别为6.24、33.48、75.18和分别为95.26%)和零序机制(n = 0.93)。卡尔·费休(Karl Fischer)吸湿的结果表明,在1小时4周内,在25摄氏度/ 60%相对湿度,30摄氏度/ 65%相对湿度和40摄氏度/ 75%相对湿度的箱体中,最佳的SR颗粒是最佳的。吸湿率没有明显增加。在体内研究中,生物利用度数据的结果显示Tmax(从0.65 +/- 0.082 hr-4.82 +/- 2.12 hr)和AUC0-30 hr(从734.88 +/- 230.68 ng / mL.hr-1454.86)与最佳SR-PB沉淀物相比,延长和增加了+/- 319.28 ng / mL.hr),降低了Cmax(从251.87 +/- 27.51 ng / mL-115.08 +/- 14.87 ng / mL)商业速释(IR)平板电脑。此外,对于最佳SR颗粒,在馏分溶解和馏分吸收之间观察到良好的线性回归关系(r = 0.9943)。在这项研究中,配方设计不仅改善了PB的吸湿特性,而且还达到了SR效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号