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Terahertz Spectroscopic Signatures of Microcystin Aptamer Solution Probed with a Microfluidic Chip

机译:微流控芯片探测微囊藻毒素适体溶液的太赫兹光谱特征。

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摘要

Terahertz signature detection of biological samples in aqueous solution remains a great challenge due to the strong terahertz absorption of water. Here we propose a new preparation process for fabricating a microfluidic chip and use it as an effective sensor to probe the terahertz absorption signatures of microcystin aptamer (a linear single-stranded DNA with 60 nucleotides) dissolved in TE buffer with different concentrations. The microfluidic chip made of silicon includes thousands of 2.4 μm × 2.4 μm square-cross-section channels. One repeatable terahertz absorption signature is detected and recognized around 830 GHz, fitted to a Lorentz oscillator. This signature is theorized to originate from the bending of hydrogen bonds formed between adjacent hydrated DNA bases surrounded by water molecules. Furthermore, the low-lying vibrational modes are also investigated by molecular dynamics simulations which suggest that strong resonant oscillations are highly probable in the 815–830 GHz frequency band.
机译:由于太赫兹对水的强烈吸收,水溶液中生物样品的太赫兹特征检测仍然是一个巨大的挑战。在这里,我们提出了一种制备微流控芯片的新制备方法,并将其用作有效的传感器,以探测溶解在不同浓度的TE缓冲液中的微囊藻毒素适体(具有60个核苷酸的线性单链DNA)的太赫兹吸收特征。由硅制成的微流控芯片包括数千个2.4μm×2.4μm方形截面通道。在Lorentz振荡器上安装了一个可重复的太赫兹吸收信号,并在830 GHz附近被识别。从理论上说,该签名源自于被水分子包围的相邻水合DNA碱基之间形成的氢键弯曲。此外,还通过分子动力学模拟研究了低层振动模式,这表明在815-830 GHz频带内很可能发生强烈的共振。

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