Application of dense gas techniques for the production of fine particles.

AAPS PharmSci Pub Date : 2003-01-01 DOI:10.1208/ps050211
Neil R Foster, Fariba Dehghani, Kiang M Charoenchaitrakoo, Barry Warwick
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引用次数: 43

Abstract

The feasibility of using dense gas techniques such as rapid expansion of supercritical solutions (RESS) and aerosol solvent extraction system (ASES) for micronization of pharmaceutical compounds is demonstrated. The chiral nonsteroidal anti-inflammatory racemic ibuprofen is soluble in carbon dioxide at 35 degrees C and pressures above 90 bar. The particle size decreased to less than 2 microm while the degree of crystallinity was slightly decreased when processed by RESS. The dissolution rate of the ibuprofen (a poorly water-soluble compound) was significantly enhanced after processing by RESS. The nonsteroidal anti-inflammatory drug Cu2(indomethacin)4L2(Cu-Indo); (L = dimethylformamide [DMF]), which possessed very low solubility in supercritical CO2, was successfully micronized by ASES at 25 degrees C and 68.9 bar using DMF as the solvent and CO2 as the antisolvent. The concentration of solute dramatically influenced the precipitate characteristics. The particles obtained from the ASES process were changed from bipyramidal to spherical, with particle size less than 5 microm, as the concentration increased from 5 to 100 mg/g. A further increase in solute concentration to 200 mg/g resulted in large porous spheres, between 20 and 50 micron, when processing Cu-Indo by the ASES method. The dissolution rate of the micronized Cu-Indo was significantly higher than the commercial product.

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致密气体技术在细颗粒生产中的应用。
本文论证了超临界溶液快速膨胀(RESS)和气溶胶溶剂萃取系统(ASES)等致密气体技术用于药物化合物微粉化的可行性。手性非甾体抗炎外消旋布洛芬在35摄氏度和90巴以上的压力下可溶于二氧化碳。经RESS处理后,颗粒尺寸减小到2微米以下,结晶度略有下降。经RESS处理后,布洛芬(一种水溶性较差的化合物)的溶出率显著提高。非甾体抗炎药Cu2(吲哚美辛)4L2(Cu-Indo);(L =二甲基甲酰胺[DMF])在超临界CO2中溶解度极低,以DMF为溶剂,CO2为抗溶剂,在25℃,68.9 bar的条件下,用能谱法成功地将其微化。溶质的浓度对析出物的特征有显著影响。当浓度从5 mg/g增加到100 mg/g时,所得颗粒由双锥体变为球形,粒径小于5微米。当溶质浓度进一步增加到200 mg/g时,用ase方法处理Cu-Indo时会得到20 - 50微米的大孔球。微粉化铜的溶出率明显高于商品铜的溶出率。
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