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超临界流体萃取法纯化药用辅料

Purification of pharmaceutical excipients with supercritical fluid extraction.

作者信息

Ashraf-Khorassani Mehdi, Taylor Larry T, Waterman Kenneth C, Narayan Padma, Brannegan Daniel R, Reid George L

机构信息

Department of Chemistry, Virginia Tech, Blacksburg, Virginia, USA.

出版信息

Pharm Dev Technol. 2005;10(4):507-16. doi: 10.1080/10837450500299958.

Abstract

Supercritical fluid extraction (SFE), with carbon dioxide as the solvent, was tested for its ability to remove common reactive impurities from several pharmaceutical excipient powders including starch, microcrystalline cellulose (MCC), hydroxypropylcellulose (HPC), polyethylene oxide (PEO), and polyvinylpyrrolidone (PVP). Extraction of the small molecule impurities, formic acid and formaldehyde, was conducted using SFE methods under conditions that did not result in visible physical changes to polymeric excipient powders. It could be shown that spiked, largely surface-bound, impurities could be removed effectively; however, SFE could only remove embedded impurities in the excipient particles after significant exposure times due to slow diffusion of the impurities to the particle surfaces. Attempts at hydrogen peroxide extraction were hindered by its low solubility in CO2, thereby effectively precluding SFE for removal of hydrogen peroxide from excipients. This work suggests that SFE will only be commercially useful for removal of low molecular weight impurities in polymeric excipients when migration of the impurities to the particle surfaces is sufficiently rapid for extraction to be completed in a reasonable time frame.

摘要

以二氧化碳为溶剂的超临界流体萃取(SFE)技术,被用于测试从包括淀粉、微晶纤维素(MCC)、羟丙基纤维素(HPC)、聚环氧乙烷(PEO)和聚乙烯吡咯烷酮(PVP)在内的多种药用辅料粉末中去除常见活性杂质的能力。在不会导致聚合物辅料粉末出现明显物理变化的条件下,采用SFE方法对小分子杂质甲酸和甲醛进行萃取。结果表明,对于添加的、主要吸附在表面的杂质能够有效去除;然而,由于杂质向颗粒表面的扩散缓慢,SFE仅在较长暴露时间后才能去除辅料颗粒中嵌入的杂质。由于过氧化氢在二氧化碳中的溶解度较低,阻碍了其萃取,从而实际上排除了使用SFE从辅料中去除过氧化氢的可能性。这项研究表明,只有当杂质向颗粒表面的迁移足够快,能够在合理的时间内完成萃取时,SFE在商业上才适用于去除聚合物辅料中的低分子量杂质。

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