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不同粒径的防风粉体体外溶出度研究
引用本文:何杰,向丽,张水寒,蔡光先. 不同粒径的防风粉体体外溶出度研究[J]. 中国药房, 2012, 0(47): 4449-4452
作者姓名:何杰  向丽  张水寒  蔡光先
作者单位:湖南省中医药研究院/湖南省中药粉体与创新药物省部共建重点实验室
基金项目:国家中医药管理局中医药行业科研专项项目(200807054)
摘    要:目的:考察不同粒径的防风粉体体外溶出变化特征和规律。方法:采用浆法,对不同粒径的防风粉体中升麻素苷、升麻素、5-O-甲基维斯阿米醇苷、亥茅酚苷体外溶出度及溶出动力学进行考察,并以威布尔方程进行溶出动力学模拟。结果:不同粒径的防风粉体中有效成分的溶出量有显著性差异(P〈0.05),且有效成分的溶出量和溶出速率随着粒径的减小而增加。结论:防风微粉中有效成分的溶出量和溶出速率均优于防风细粉,且微粉系列随着粒径的减小,溶出量增多。

关 键 词:防风  粉体  溶出度  升麻素苷  升麻素  5-O-甲基维斯阿米醇苷  亥茅酚苷

Research on in vitro Dissolution of Different Particle Sizes of Saposhnikovia divaricata Powder
HE Jie,XIANG Li,ZHANG Shui-han,CAI Guang-xian. Research on in vitro Dissolution of Different Particle Sizes of Saposhnikovia divaricata Powder[J]. China Pharmacy, 2012, 0(47): 4449-4452
Authors:HE Jie  XIANG Li  ZHANG Shui-han  CAI Guang-xian
Affiliation:(Hunan Province Key Laboratory of Traditional Chinese Medicine Powder and Innovation Drug,Ministry of Education, Hunan Academy of Traditional Chinese Medicin- e,Changsha 410013, China)
Abstract:OBJECTIVE: To investigate the characteristics and regularity of in vitro dissolution of different particle sizes of Saposhnikovia divaricata powder. METHODS: Using paddle method, in vitro dissolution and dissolution kinetics of macrotin glyocoside, cimitin, 5-O-methylvysemaishamy glyocoside and haikayaphenol glyocoside were investigated, and the dissolution kinetics was simulated using Weibull equation. RESULTS: There was significant difference in the dissolution amount of effective component of different particle sizes of S. divaricata powder(P0.05). With the decrease of the particle size, dissolution rate and amount of effective component were increased. CONCLUSION: The dissolution rate and amount of effective component of S. divaricata micron powder are better than those of S. divaricata fine powder. The dissolution amount of micron powder is increased with the decrease of particle size.
Keywords:Saposhnikovia divaricata  Powder  Dissolution rate  Macrotin glyocoside  Cimitin  5-O-methylvysemaishamy glyocoside  Haikayaphenol glyocoside
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