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甘露醇在乙醇-水共溶剂体系中的低温行为

Subambient behavior of mannitol in ethanol-water co-solvent system.

作者信息

Takada Akira, Nail Steven L, Yonese Masakatsu

机构信息

Pharmaceutical Development Laboratories, Ono Pharmaceutical Co., Ltd., Shimamoto, Osaka, Japan.

出版信息

Pharm Res. 2009 Mar;26(3):568-76. doi: 10.1007/s11095-008-9775-0. Epub 2008 Nov 12.

Abstract

PURPOSE

The purpose of this study is to characterize the freezing behavior of mannitol in ethanol-water co-solvent systems in comparison with the corresponding aqueous solution.

METHODS

Subambient differential scanning calorimetry (DSC) and microscopy techniques were used to investigate the freezing behavior of mannitol in aqueous solutions and in ethanol-water co-solvent systems.

RESULTS

The DSC thermogram of the frozen aqueous solution, which was warmed after cooling at 5.0 degrees C/min, consisted of a glass transition, an endothermic transition, and a crystallization exotherm from mannitol, respectively. The thermograms of ethanol-containing solutions were different in view of including some thermal events attributable to ethanol hydrates. The glass transition of amorphous mannitol was also observed in the thermograms, but became unclear with increasing ethanol in the co-solvent system. The microscopy experiments enabled understanding of the subambient behavior of mannitol. Ethanol was largely removed by vacuum drying rather than freeze-drying. In addition, such manipulations as annealing during the freezing process and slower cooling (0.5 degrees C/min) enhanced the crystallization of mannitol in the frozen system.

CONCLUSIONS

In the presence of ethanol, crystallization of mannitol was inhibited under subambient conditions. Annealing or slower cooling promoted the crystallization of mannitol during the freezing process.

摘要

目的

本研究的目的是将甘露醇在乙醇 - 水共溶剂体系中的冷冻行为与相应的水溶液进行比较并加以表征。

方法

采用亚环境差示扫描量热法(DSC)和显微镜技术研究甘露醇在水溶液及乙醇 - 水共溶剂体系中的冷冻行为。

结果

以5.0℃/min冷却后再升温的冷冻水溶液的DSC热谱图分别由玻璃化转变、吸热转变和甘露醇的结晶放热组成。含乙醇溶液的热谱图有所不同,因为其中包含一些归因于乙醇水合物的热事件。在热谱图中也观察到了无定形甘露醇的玻璃化转变,但随着共溶剂体系中乙醇含量的增加而变得不明显。显微镜实验有助于了解甘露醇在亚环境下的行为。乙醇主要通过真空干燥而非冷冻干燥去除。此外,诸如冷冻过程中的退火处理以及较慢的冷却速度(0.5℃/min)可增强冷冻体系中甘露醇的结晶。

结论

在乙醇存在的情况下,亚环境条件下甘露醇的结晶受到抑制。退火或较慢冷却可促进冷冻过程中甘露醇的结晶。

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