化学
无水的
海藻糖
糖苷键
无定形固体
水溶液
结晶学
糖
Crystal(编程语言)
红外光谱学
分子
晶体结构
立体化学
有机化学
酶
程序设计语言
计算机科学
作者
Ken‐ichi Akao,Yusei Okubo,Naoki Asakawa,Yoshio Inoue,Minoru Sakurai
标识
DOI:10.1016/s0008-6215(01)00182-3
摘要
FTIR spectra were obtained for several different states of trehalose including dihydrate crystal, anhydrous form II (designated by Gil, A. M.; Belton, P. S.; Felix V. Spectrochim. Acta 1996, A52, 1649-1659), anhydrate crystal, dried melt, amorphous solid and aqueous solution. From the observation of the symmetric and antisymmetric stretch vibrations of the glycosidic linkage, it is found that this sugar assumes at least three types of backbone conformations. Among them, the conformation with C(2) symmetry is characterized as 'open state', which means that the sugar easily absorbs water molecules. The conformation of the sugars in anhydrous form II and in freeze-dried trehalose is shown to be in the open state. Next, the hygroscopic properties of the anhydrate, form II and the amorphous solid are compared based on their IR spectra. Interestingly, form II alone is converted to the original dihydrate in a week under mild environmental-like conditions: relative humidity of 40% and room temperature. These results suggest the possibility that form II plays a role in avoiding the devitrification of the sugar glass. Finally, we discuss the role of form II in preserving freeze-dried biomaterials.
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