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热熔挤出和喷雾干燥工艺制备的固体分散体的特性和性能评估。

Characterization and performance assessment of solid dispersions prepared by hot melt extrusion and spray drying process.

机构信息

Boehringer Ingelheim Pharmaceuticals Inc., 900 Ridgebury Road, Ridgefield, CT 06877, United States.

出版信息

Int J Pharm. 2013 Nov 30;457(1):71-81. doi: 10.1016/j.ijpharm.2013.08.081. Epub 2013 Sep 6.

Abstract

The present study investigated effect of manufacturing methods such as hot melt extrusion (HME) and spray drying (SD) on physicochemical properties, manufacturability, physical stability and product performance of solid dispersion. Solid dispersions of compound X and PVP VA64 (1:2) when prepared by SD and HME process were amorphous by polarized light microscopy, powder X-ray diffractometry, and modulated differential scanning calorimetry analyses with a single glass transition temperature. Fourier transform infrared (FT-IR) and Raman spectroscopic analyses revealed similar molecular level interactions between compound X and PVP VA64 as evident by overlapping FT-IR and FT Raman spectra in SD and HME solid dispersions. The compactibility, tabletability, disintegration and dissolution performance were similar for solid dispersions prepared by both processing techniques. Differences in material properties such as surface area, morphological structure, powder densities, and flow characteristics were observed between SD and HME solid dispersion. The SD solid dispersion was physically less stable compared to HME solid dispersion under accelerated stability conditions. Findings from this study suggest that similar product performance could be obtained if the molecular properties of the solid dispersion processed by two different techniques are similar. However differences in material properties might affect the physical stability of the solid dispersions.

摘要

本研究考察了热熔挤出(HME)和喷雾干燥(SD)等制造方法对固体分散体的物理化学性质、可制造性、物理稳定性和产品性能的影响。通过偏光显微镜、粉末 X 射线衍射和调制差示扫描量热分析,以单一玻璃化转变温度分析,发现化合物 X 与 PVP VA64(1:2)的 SD 和 HME 工艺制备的固体分散体为无定形。傅里叶变换红外(FT-IR)和拉曼光谱分析表明,化合物 X 与 PVP VA64 之间存在相似的分子水平相互作用,这可以通过 SD 和 HME 固体分散体中重叠的 FT-IR 和 FT 拉曼光谱得到证实。两种加工技术制备的固体分散体的可压缩性、可压性、崩解性和溶解性能相似。SD 和 HME 固体分散体之间观察到材料性质的差异,如比表面积、形态结构、粉末密度和流动特性。在加速稳定性条件下,SD 固体分散体的物理稳定性比 HME 固体分散体差。本研究结果表明,如果两种不同技术处理的固体分散体的分子性质相似,则可以获得相似的产品性能。然而,材料性质的差异可能会影响固体分散体的物理稳定性。

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