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超临界抗溶剂法制备吲哚美辛-羟丙基-β-环糊精微球

Preparation Process of Indometacin-(2-hydroxypropyl)-beta-cyclodextrin Microsphere by Supercritical CO_2 Anti-solvent Method
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摘要 采用超临界抗溶剂法制备吲哚美辛-羟丙基-β-环糊精复合微球。在单因素试验的基础上设计正交试验优选吲哚美辛-羟丙基-β-环糊精微球的制备工艺,并考察其体外溶出度。在最优工艺条件下吲哚美辛-羟丙基-β-环糊精复合微球的平均载药量为66. 04%。扫描电镜所得结果表明所制得的吲哚美辛复合微球为不规则絮状。傅里叶红外吸收光谱和差示扫描量热表明所制得的吲哚美辛与羟丙基-β-环糊精形成了复合结构。溶出实验表明产吲哚美辛复合微球达到平衡的时间相较于其原料有很大延缓,从而在保证药物溶出的前提下具备缓释效应。 Indometacin-(2-hydroxypropyl)-beta-cyclodextrin microspherewas prepared by supercritical CO2anti-solvent technology.The preparation process was optimized basedon single factor experiments,and dissolution rate was investigated in vitro.Underthe optimum condition,drug loading of Indometacin-(2-hydroxypropyl)-beta-cyclodextrin microsphere was66.04%.The results of scanning electron microscopy showed that indomethacin composite microspheres were irregular flocculation.Fourier infrared absorption spectra and differential scanning calorimetryalso showed that the indomethacin and the carrier were formed.Dissolution experiments showed that the equilibrium time of indomethacin composite microspheres is much slower than that of raw materials,which making indomethacin drug had a certain slow-releasing effect.
作者 乐龙 高赵华 王志祥 Yue Long;Gao Zhaohua;Wang Zhixiang(Department of Pharmaceutical Engineering,China Pharmaceutical University,Jiangsu Nanjing 210009)
出处 《化工时刊》 CAS 2018年第12期7-10,共4页 Chemical Industry Times
关键词 超临界抗溶剂法 吲哚美辛-羟丙基-β-环糊精复合微球 载药量 supercritical Anti-solvent method Indometacin-(2-hydroxypropyl)-β-cyclodextrin microsphere drug loading
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  • 1余高奇,汪厚植,张宗锁,杨洁.超临界流体干燥制备纳米Mn_xO_y[J].武汉科技大学学报,2004,27(3):224-226. 被引量:8
  • 2刘辉,潘卫三,周丽莉,张志宏.超临界二氧化碳制备布地奈德-聚氧乙烯固体分散体及体外评价[J].药学学报,2007,42(2):206-210. 被引量:9
  • 3Anne Mari Juppo , Catherine Boissier, Cynthia Khoo. [J]. International Journal of Pharmaceutics, 2003, 250:385-401
  • 4Hanna U, York P. Method and aparatus for the formation of particles [P]. WO 95101221,1994
  • 5Chattopadhyay Pratibhash, Gupta Ram B. [J]. International Journal of Pharmaceutics, 2001, 228:19-31
  • 6Badens E, Magnan C, Charbit G. [J]. Biotechnology and Bioengineering, 2001, 72(2);194-203
  • 7Cocero M J, Ferrero S. [J]. Journal of Supercritical Fluids, 2002, 22:237-245
  • 8Muller Martin, Meier Ulrich, Kessler Alwin, et al. [J]. Ind. Eng. Chem. Res., 2000, 39(7):2260-2268
  • 9Yeo Sang Do, Kim Min Su. [J]. Journal of Supercritical Fluid, 2003, 25: 143-154
  • 10Moshashaee Saeed, Mikael Bisrat, Robert T. [J]. European Journal of Pharmaceutical Sciences, 2000, 11:239-245

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