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Hierarchical viscosity of aqueous solution of tilapia scale collagen investigated via dielectric spectroscopy between 500 MHz and 2.5 THz

机译:罗非鱼皮胶原蛋白水溶液的介电谱在500 MHz至2.5 THz之间的分层粘度

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摘要

Aqueous solutions of biomolecules such as proteins are very important model systems for understanding the functions of biomolecules in actual life processes because interactions between biomolecules and the surrounding water molecules are considered to be important determinants of biomolecules’ functions. Globule proteins have been extensively studied via dielectric spectroscopy; the results indicate three relaxation processes originating from fluctuations in the protein molecule, the bound water and the bulk water. However, the characteristics of aqueous solutions of collagens have rarely been investigated. In this work, based on broadband dielectric measurements between 500 MHz and 2.5 THz, we demonstrate that the high viscosity of a collagen aqueous solution is due to the network structure being constructed of rod-like collagen molecules surrounding free water molecules and that the water molecules are not responsible for the viscosity. We determine that the macroscopic viscosity is related to the mean lifetime of the collagen-collagen interactions supporting the networks and that the local viscosity of the water surrounded by the networks is governed by the viscosity of free water as in the bulk. This hierarchical structure in the dynamics of the aqueous solution of biomolecules has been revealed for the first time.
机译:生物分子的水溶液(例如蛋白质)对于理解生物分子在现实生活过程中的功能是非常重要的模型系统,因为生物分子与周围水分子之间的相互作用被认为是生物分子功能的重要决定因素。球蛋白已经通过介电谱进行了广泛的研究。结果表明三个松弛过程源自蛋白质分子,结合水和大量水的波动。然而,很少研究胶原蛋白水溶液的特性。在这项工作中,基于500 MHz和2.5 THz之间的宽带电介质测量,我们证明了胶原蛋白水溶液的高粘度是由于网络结构是由围绕自由水分子的棒状胶原蛋白分子构成的,并且水分子对粘度不负责任。我们确定宏观粘度与支持网络的胶原蛋白-胶原蛋白相互作用的平均寿命有关,并且网络所包围的水的局部粘度由游离水的粘度决定。首次揭示了生物分子水溶液动力学中的这种分层结构。

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