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Hydration of gelatin molecules studied with terahertz time-domain spectroscopy

机译:用太赫兹时域光谱学研究明胶分子的水合

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Gelatin is an irreversible hydrolyzed form of collagen having similar amino acid composites with its parent collagen. The hydrogen atoms on the side chains of the long peptide strings can weakly bond with their surrounding gelatin as well as water molecules in aqueous environment, forming a cross-linked 3D matrix. Gelatin has been used as a model for soft tissue phantoms in several medical imaging studies including in terahertz imaging. In the terahertz regime, the dielectric property of the gelatin relies largely on its hydration status and the relationship has been shown to be non-linear. It is therefore essential to study the change of the dielectric properties with respect to the hydration status so as to accurately mimic the properties of fresh biological tissues in the terahertz spectrum. In this work, we studied the hydration status of gelatin with a terahertz time-domain spectroscopy system in the reflection setup. Gelatin gels with different molar weights were prepared with the weight concentration varying from 0 to 33.3%. The complex dielectric constants of the samples were calculated and fitted with an effective medium approximation model. The results provide a quantitative knowledge on the total number of the water molecules affected by each gelatin molecule and how the hydration status is influenced by the concentration and the molar weight.
机译:明胶是胶原蛋白的不可逆水解形式,具有与其母体胶原蛋白相似的氨基酸复合物。长肽链侧链上的氢原子可以与周围的明胶以及水性环境中的水分子弱结合,形成交联的3D基质。在包括太赫兹成像在内的数项医学成像研究中,明胶已被用作软组织模型的模型。在太赫兹状态下,明胶的介电性能在很大程度上取决于其水合状态,并且该关系已显示为非线性。因此,有必要研究介电特性相对于水合状态的变化,以便准确地模拟太赫兹光谱中新鲜生物组织的特性。在这项工作中,我们在反射设置中使用太赫兹时域光谱系统研究了明胶的水合状态。制备具有不同分子量的明胶凝胶,其重量浓度为0至33.3%。计算了样品的复介电常数,并拟合了有效的介质近似模型。结果提供了有关每个明胶分子影响的水分子总数以及水合状态如何受浓度和摩尔质量影响的定量知识。

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