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超临界流体技术制备固体分散体的研究进展 被引量:14

Progress in preparation of solid dispersions using supercritical fluid process
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摘要 超临界流体具有溶解性好、传质能力高、表面张力低及渗透性强等优点,使用超临界流体技术制备的固体分散体粒径均匀可控、纯度高、无溶剂残留,具有传统方法不可比拟的优势。目前,使用超临界流体技术制备固体分散体国内研究还处于起步阶段,该文介绍了超临界流体技术制备固体分散体的方法、原理,归纳总结各方法最新研究进展并提出其存在的问题,为该方面研究者提供参考。 Supercritical fluid possesses the advantages of both the gas and the liquid,such as great solubility,favorable mass transfer capacity,low surface tension and satisfactory permeability.The solid dispersions prepared by supercritical fluid process have the characteristics of uniform and controlling particle size,high purity and no residual solvent.The applications of traditional methods are limited due to the disadvantages,including the requirement of organic or toxic solvents,long drying step and low efficiency.Preparation of solid dispersions using supercritical fluid process is still in the initial stage in China.In the present paper,the production processes of solid dispersions by supercritical fluid process are classified,the latest research progress of various processes is summarized and the existing problems are put forward based on a great deal of literature in home and abroad,providing a reference for the researchers.
出处 《安徽医药》 CAS 2013年第6期903-905,共3页 Anhui Medical and Pharmaceutical Journal
关键词 超临界流体技术 固体分散体 制备 超临界二氧化碳 supercritical fluid process solid dispersions preparation SC-CO2
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  • 1Sekiguchi K,Obi N.Studies on absorption of eutectic mixture.I.a comparion of the behavior of eutectic mixture of sulfathiazole and that of ordinary sulfathiazole in man[J].Chem Pharm Bull,1961,9(11):866. 被引量:1
  • 2陈镇,苏乐群,许杜娟,夏泉.浅谈超临界流体技术在药物研究中的应用[J].安徽医药,2008,12(5):462-463. 被引量:3
  • 3Alam MA,Ali R,Jenoobi FI,et al.Solid dispersions:a strategy for poorly aqueous soluble drugs and technology updates[J].Drug Deliv,2012,9(11):1419-1440. 被引量:1
  • 4Bikiaris DN.Solid dispersions,Part II:new strategies in manufacturing methods for dissolution rate enhancement of poorly water-soluble drugs[J].Drug Deliv,2011,8(12):1663-1680. 被引量:1
  • 5Sonoda R,Hara Y,Iwasaki T,et al.Improvement of dissolution property of poorly water-soluble drug by dupercritical freeze granulation[J].Chem Pharm Bull,2009,57(10):1040-1044. 被引量:1
  • 6Varshosaz J,Hassanzadeh F,Mahmoudzadeh M,et al.Preparation of cefuroxime axetil nanoparticles by rapid expansion of supercritical fluid technology[J].Powder Technology,2009,189:97-102. 被引量:1
  • 7Turk M,Lietzow R.Formation and stabilization of submicron particles via rapid expansion processes[J].J Supercritical Fluids,2008,45:346-355. 被引量:1
  • 8Turk M,Bolten D.Formation of submicron poorly water-soluble drugs by rapid expansion of supercritical solution(RESS):Results for Naproxen[J].J Supercritical Fluids,2010,55:778-785. 被引量:1
  • 9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
  • 10Labuschagne PW,Kazarian SG,Sadiku RE.Supercritical CO2-assisted preparation of ibuprofen-loaded PEG-PVP complexes[J].J Supercritical Fluids,2011,57:190-197. 被引量:1

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