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Water interplay in trehalose polymorphism

机译:海藻糖多态性中的水相互作用

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An investigation on the transformation paths of trehalose polymorphs and the interplay of water molecules is presented with the aim of underlining the role of trehalose structural and dynamic functions in the "protection" of biosystems and living organisms. To this end, physico-chemical studies have been carried out on water-trehalose interactions and on the structure and stability of the several forms, from the solution to the solid state (either amorphous or crystalline). In this paper the relevant results are critically presented and discussed with particular reference to most recent findings. The dehydration process performed under different confined conditions and controlled scan rates provides a dynamic phase diagram as a function of the time-scales of trehalose transformations and water effusion. A careful analysis of these data and of the stability of the glassy state in the presence of water evidences the reversibility of some trehalose transitions under the same conditions of natural processes of slow heating and controlled evaporation rate. This observation points at the hypothesis of the occurrence of these reversible paths at the basis of the bioprotection process. In this paper, the relevant results from our laboratory and literature are critically presented and discussed in reference to the most recent findings.
机译:为了强调海藻糖的结构和动态功能在生物系统和活生物体的“保护”中的作用,对海藻糖多晶型物的转化路径和水分子的相互作用进行了研究。为此,已经对水-海藻糖相互作用以及从溶液到固态(无定形或结晶)的几种形式的结构和稳定性进行了物理化学研究。本文对相关结果进行了批判性介绍和讨论,并特别参考了最新发现。在不同密闭条件和受控扫描速率下进行的脱水过程提供了动态相图,该图是海藻糖转化和水渗出时间尺度的函数。仔细分析这些数据以及在水存在下玻璃态的稳定性,证明了在与缓慢加热和受控蒸发速率的自然过程相同的条件下,某些海藻糖转变的可逆性。该观察结果指出了在生物保护过程的基础上这些可逆路径发生的假设。在本文中,我们对实验室和文献的相关结果进行了批判性介绍,并参考了最新发现。

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