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首页> 外文期刊>Journal of Molecular Liquids >Water in the hydration shell of cryoprotectants and their non-cryoprotecting structural analogues as observed by Raman-MCR spectroscopy
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Water in the hydration shell of cryoprotectants and their non-cryoprotecting structural analogues as observed by Raman-MCR spectroscopy

机译:用拉曼-MCR光谱观察到的冷冻保护剂水合壳中的水合化壳及其非冷冻保护结构类似物

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摘要

Cryoprotectant preserves cellular integrity of biological entities at sub-zero temperatures via vitrification of cellular constituents. To shed light onto the molecular mechanism of cryoprotectant induced vitrification of water, we have selectively extracted the vibrational response of water at the immediate vicinity (hydration shell) of two prototype cryoprotectants (dimethyl sulfoxide (DMSO) and ethyleneglycol (EG)) and their non-cryoprotecting structural analogues (acetone and 1,4 dioxane (DXN)), using Raman multivariate curve resolution (Raman-MCR) spectroscopy. It is observed that the hydrogen-bonding (H-bonding) of water in the hydration shell of the cryoprotectant is similar to that in bulk water; whereas that in the hydration shell of the non-cryoprotectant is weaker than that in bulk water. Thus, the H-bonding environment provided by a cryoprotectant to its neighboring water is very similar to the one, a water molecule provides to its neighboring water. As a result, aqueous cryoprotectant solution solidifies at sub-zero temperature along with the cryoprotecting molecules, leading to vitrification. Non-cryoprotectant on the other hand, because of its weaker interaction with water, gets excluded from the H-bond network, enabling the water to form ice. (C) 2018 Elsevier B.V. All rights reserved.
机译:冷冻保护剂通过细胞成分的玻璃化保留在亚零温度下生物实体的细胞完整性。为了脱光到冷冻保护剂诱导的水的分子机制,我们选择性地提取了两种原型冷冻保护剂(二甲基亚甲醚)和乙二醇(例如))的直接附近(水合壳)的振动响应。它们的非 - 使用拉曼多变量曲线分辨率(拉曼-MCR)光谱法来保护结构类似物(丙酮和1,4二恶烷(DXN))。观察到冷冻保护剂的水合壳中的水的氢键(H键合)类似于大量水中的水;然而,在非冷冻保护剂的水合壳中比散装水较弱。因此,通过冷冻保护剂提供的H键合环境与其邻近的水非常相似,水分子为其邻近的水提供。结果,水性冷冻保护溶液在亚零温度和冷冻保护分子中凝固,导致玻璃化。另一方面,非冷冻保护剂由于其与水的相互作用较弱,从H键网络中排除,使水形成冰。 (c)2018年elestvier b.v.保留所有权利。

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