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作 者:陈绪龙[1] 赵国巍[1] 廖正根[1] 梁新丽[1] 王光发[1] 祝婧云[1] 招丽君[1] 蒋且英
机构地区:[1]江西中医学院现代中药制剂教育部重点实验室,南昌330004 [2]江西中医学院成人教育学院,南昌330006
出 处:《中国实验方剂学杂志》2010年第18期1-5,共5页Chinese Journal of Experimental Traditional Medical Formulae
基 金:国家中医药管理局公益性行业科研专项(200807054);十一五重大新药创制项目(2009ZX09310-005);江西省对外科技合作项目(2008BB24800)
摘 要:目的:比较当归超微粉体和普通粉体的粉体学性质,为超微粉粹应用于当归提供试验依据。方法:通过测定当归粉体的粒径及分布、吸湿性、粉体的形貌结构等粉体学特征和体外溶出行为,研究当归粉体的粒径对其粉体学特性、含量和体外溶出行为的影响。结果:随当归粉体粒度的减小,比表面积及孔容和吸湿性增加,流动性变弱,4种粉体中阿魏酸含量大小顺序为普通粉>微粉Ⅰ>微粉Ⅱ>微粉Ⅲ,但是随着粉碎程度的加强,微粉Ⅱ中的阿魏酸溶出速率、累积溶出率和溶出总量均高于其它粒径级别的当归粉体。结论:适度的微粉化能促进当归有效成分的溶出。Objective:To compare the powder properties between common powder and micropowders of Angelica to provide experimental evidence for the superfine grinding application. Method:Morphology structure, hygroscopic property, liquidity, surface area and porosity of Angelica powders were investigated; the contents and the dissolution of ferulic acid of Angelica powders were determined by HPLC. Result: With the decreasing of particle size of powders, the surface area, pore volume and moisture increased, and the liquidity decreased; the contents of ferulic acid from four Angelica powders were in the order of: common powder 〉 uhrafine powder I 〉 ultrafine powder II 〉 ultrafine powder III; but with the crushing level increased, dissolution rate and the total dissolution of the ultrafine powder II was higher than levels of particle size in other angelica powder. Conclusion : An appropriate degree of micronization is helpful for the dissolution of the active components in Angelica.
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