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冷冻研磨诱导难形成玻璃/难溶于水的甲芬那酸与聚乙烯吡咯烷酮K12形成固体分散体。

Cryomilling-induced solid dispersion of poor glass forming/poorly water-soluble mefenamic acid with polyvinylpyrrolidone K12.

作者信息

Kang Naewon, Lee Jangmi, Choi Ji Na, Mao Chen, Lee Eun Hee

机构信息

College of Pharmacy, Korea University , Sejong , Korea and.

出版信息

Drug Dev Ind Pharm. 2015 Jun;41(6):978-88. doi: 10.3109/03639045.2014.920024. Epub 2014 May 22.

Abstract

The effect of mechanical impact on the polymorphic transformation of mefenamic acid (MFA) and the formation of a solid dispersion of mefenamic acid, a poor glass forming/poorly-water soluble compound, with polyvinylpyrrolidone (PVP) K12 was investigated. The implication of solid dispersion formation on solubility enhancement of MFA, prepared by cryomilling, was investigated. Solid state characterization was conducted using powder X-ray diffraction (PXRD) and Fourier-transform infrared (FTIR) spectroscopy combined with crystal structure analysis. Apparent solubility of the mixtures in pH 7.4 buffer was measured. A calculation to compare the powder patterns and FTIR spectra of solid dispersions with the corresponding physical mixtures was conducted. Solid state characterization showed that (1) MFA I transformed to MFA II when pure MFA I was cryogenically milled (CM); and (2) MFA forms a solid dispersion when MFA was cryogenically milled with PVP K12. FTIR spectral analysis showed that hydrogen bonding facilitated by mechanical impact played a major role in forming solid dispersions. The apparent solubility of MFA was significantly improved by making a solid dispersion with PVP K12 via cryomilling. This study highlights the importance of cryomilling with a good hydrogen bond forming excipient as a technique to prepare solid dispersion, especially when a compound shows a poor glass forming ability and therefore, is not easy to form amorphous forms by conventional method.

摘要

研究了机械冲击对甲芬那酸(MFA)多晶型转变的影响,以及甲芬那酸(一种难形成玻璃/难溶于水的化合物)与聚乙烯吡咯烷酮(PVP)K12形成固体分散体的情况。研究了通过低温研磨制备的MFA固体分散体对其溶解度增强的影响。使用粉末X射线衍射(PXRD)和傅里叶变换红外(FTIR)光谱结合晶体结构分析进行固态表征。测定了混合物在pH 7.4缓冲液中的表观溶解度。进行了一项计算,以比较固体分散体与相应物理混合物的粉末图谱和FTIR光谱。固态表征表明:(1)纯MFA I进行低温研磨(CM)时,MFA I转变为MFA II;(2)MFA与PVP K12进行低温研磨时,MFA形成固体分散体。FTIR光谱分析表明,机械冲击促进的氢键在形成固体分散体中起主要作用。通过低温研磨与PVP K12形成固体分散体,MFA的表观溶解度显著提高。本研究强调了与良好的氢键形成赋形剂一起进行低温研磨作为制备固体分散体技术的重要性,特别是当一种化合物显示出较差的玻璃形成能力,因此不容易通过常规方法形成无定形形式时。

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