首页> 外文期刊>Journal of pharmaceutical sciences. >Preparation of porous microcrystalline cellulose pellets by freeze-drying: effects of wetting liquid and initial freezing conditions.
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Preparation of porous microcrystalline cellulose pellets by freeze-drying: effects of wetting liquid and initial freezing conditions.

机译:通过冷冻干燥制备多孔微晶纤维素颗粒:润湿液体和初始冷冻条件的影响。

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摘要

The effects of wetting liquid and initial freezing conditions on the pore volume and pore size distribution of freeze-dried microcrystalline cellulose (MCC) pellets were studied with mercury porosimetry. Freeze-drying was applied after extrusion/spheronization using two wetting liquids (water and water-isopropanol) and three initial freezing conditions (-30, 80, and -197 degrees C). Also, the effects of initial freezing were compared to those on pellets prepared with extraction of NaCl from Avicel(R)/NaCl pellets. Pellet porosity was found to increase with decreasing initial freezing temperature and the increase is greater for pellets made with water as wetting liquid. The mean pore diameter is greater for the extracted pellets, followed by nonextracted MCC pellets made with water and water-isopropanol. Also, the pore diameter is greater for freezing at -80 degrees C comparatively to that at -30 degrees C, while it is smaller for freezing at -197 degrees C. Narrower and more symmetrical pore size distributions were obtained with water-isopropanol at -197 degrees C. The higher porosity obtained with water alone and the smallest mean pore diameter and narrower distribution obtained with water-isopropanol may be due to the effects of H-bonding between isopropanol and water molecules on the nucleation and growth of ice crystals during the initial freezing.
机译:用汞孔隙率法研究了润湿液体和初始冷冻条件对冷冻干燥微晶纤维素(MCC)粒料的孔体积和孔径分布的影响。挤出/滚圆后,使用两种润湿液(水和水-异丙醇)和三种初始冷冻条件(-30、80和-197摄氏度)进行冷冻干燥。而且,将初始冷冻的效果与通过从Avicel / NaCl沉淀中提取NaCl制备的沉淀进行了比较。发现颗粒孔隙率随着初始冷冻温度的降低而增加,并且以水作为润湿液制成的颗粒的增加更大。提取的颗粒的平均孔径较大,其次是用水和水-异丙醇制得的未提取的MCC颗粒。此外,与在-30摄氏度下相比,在-80摄氏度下冷冻时孔径较大,而在-197摄氏度下冷冻时孔径较小。使用水-异丙醇在-时可获得较窄且对称的孔径分布197摄氏度。仅使用水可获得较高的孔隙度,而使用水-异丙醇可获得的最小平均孔径和较窄的分布可能是由于异丙醇与水分子之间的氢键作用对冰晶成核和生长造成的影响。最初冻结。

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