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Evaluation of the bulk water dynamics inside HeLa cells using terahertz time-domain attenuated total reflection spectroscopy

机译:使用太赫兹时域衰减全反射光谱法评估HeLa细胞内部的大量水动力学

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In spite of intensive efforts to elucidate the cellular functions and activities of biological macromolecules, such as DNA and proteins, the intermediary role of intracellular water in these activities is still cloaked in mystery. This is because bulk water dynamics, which occur on sub-picosecond and picosecond timescales, cannot be directly probed by conventional experimental techniques. With a periodic electric field on a sub-picosecond or picosecond timescale, terahertz waves are selectively sensitive to the dynamics of the hydrogen bond network associated with the bulk water. We use THz TD-ATR measurements, combined with a two-interface model, to determine the complex dielectric constant of a living cell monolayer, and thus characterize their intracellular water dynamics. Further interrogation was undertaken by decomposing the complex dielectric constant into its slow relaxation, fast relaxation and intermolecular stretching vibration components. The results indicated that intracellular water has a fragile hydrogen bond network, releasing water molecules from the network. Additionally, tetrahedrally coordinated water in the cell interior is structurally disordered compared to the extracellular water.
机译:尽管人们为阐明DNA和蛋白质等生物大分子的细胞功能和活性付出了巨大的努力,但细胞内水在这些活性中的中介作用仍被掩盖。这是因为发生在亚皮秒和皮秒时间尺度上的大量水动力学无法通过常规实验技术直接探测到。在亚皮秒或皮秒时间尺度上具有周期性电场的情况下,太赫兹波对与大量水有关的氢键网络的动力学选择性敏感。我们使用太赫兹TD-ATR测量,结合两个界面模型,以确定活细胞单层的复介电常数,从而表征其细胞内水动力学。通过将复数介电常数分解为慢弛豫,快弛豫和分子间拉伸振动分量,可以进行进一步的询问。结果表明细胞内水具有脆弱的氢键网络,从网络中释放水分子。另外,与细胞外水相比,细胞内部的四面体配位水在结构上是无序的。

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