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Investigation of the Hydration State of Self-AssembledPeptide Nanostructures with Advanced Electron Paramagnetic ResonanceSpectroscopy

机译:自组装水化状态的研究具有高级电子顺磁共振的肽纳米结构光谱学

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摘要

Probing the intermolecular interactions and local environments of self-assembled peptide nanostructures (SPNs) is crucial for a better understanding of the underlying molecular details of self-assembling phenomena. In particular, investigation of the hydration state is important to understand the nanoscale structural and functional characteristics of SPNs. In this report, we examined the local hydration environments of SPNs in detail to understand the driving force of the discrete geometric structural self-assembling phenomena for peptide nanostructures. Advanced electron paramagnetic resonance spectroscopy was used to probe the hydrogen bond formation and geometry as well as the hydrophobicity of the local environments at various spin-labeled sites in SPNs. The experimental results supplement the sparse experimental data regarding local structures of SPNs, such as the hydrogen bonding and the hydrophobicity of the local environment, providing important information on the formation of SPNs, which have immense potential for bioactive materials.
机译:探究自组装肽纳米结构(SPN)的分子间相互作用和局部环境对于更好地了解自组装现象的潜在分子细节至关重要。尤其是,研究水合状态对于理解SPN的纳米级结构和功能特性很重要。在此报告中,我们详细研究了SPN的局部水合环境,以了解肽纳米结构的离散几何结构自组装现象的驱动力。先进的电子顺磁共振波谱用于探测SPN中各个自旋标记位点的氢键形成和几何形状以及局部环境的疏水性。实验结果补充了有关SPN局部结构的稀疏实验数据,例如氢键和局部环境的疏水性,为SPN的形成提供了重要的信息,对生物活性材料具有巨大的潜力。

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