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Ultrasensitive label-free detection and quantitation of DNA hybridization via terahertz spectrometry

机译:通过太赫兹光​​谱法对DNA杂交进行超灵敏的无标记检测和定量

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Time-domain terahertz (THz) spectrometry has been used to analyze DNA hybridization state and its quantitation in a label-free manner. Time-resolved THz signal (or temporal signal) converted to frequency domain constitutes a signature of a given molecular "event" (e.g., a vibrational or a conformational state). The temporal signal provides a means of probing a molecular event in an appropriate time window. This is a unique ability of this technique because different molecular events exhibit different time response based on their physical and chemical nature. Conformational difference of a given molecule results in different signature with an appropriate time response that can be accurately probed by a terahertz temporal signal. In this work we discriminate between single stranded and double stranded 25-mer oligonucleotides via spectral signature. For each species, different peaks were identified; however, the peaks are distinctly different allowing an easy comparison. Additionally, temporal transmission spectra of the DNA specimens were collected at normal temperature and atmosphere. The peak value extracted from the temporal spectra exhibit a power law behavior over a region spanning from 13.6 femto-molar to 0.136 nano-molar. The results clearly demonstrate the ability of the spectrometer to detect a minute amount of biomolecules in a label-free fashion. This capability can be used as a diagnostic tool, as well as for studying molecular reactions such as mutation.
机译:时域太赫兹(THz)光谱已用于以无标记的方式分析DNA杂交状态及其定量。转换为频域的时间分辨的THz信号(或时间信号)构成了给定分子“事件”(例如,振动或构象状态)的特征。时间信号提供了在适当的时间窗口内探测分子事件的手段。这是这项技术的独特功能,因为不同的分子事件基于其物理和化学性质表现出不同的时间响应。给定分子的构象差异导致具有适当时间响应的不同特征,可以通过太赫兹时间信号精确探测。在这项工作中,我们通过光谱特征区分单链和双链25-mer寡核苷酸。对于每种物种,确定了不同的峰。但是,峰明显不同,因此可以轻松进行比较。另外,在常温常压下收集DNA样本的时间透射光谱。从时间谱中提取的峰值在从13.6毫微摩尔至0.136纳摩尔的区域内表现出幂律行为。结果清楚地证明了光谱仪能够以无标记的方式检测微量的生物分子。此功能可以用作诊断工具,也可以用于研究分子反应(例如突变)。

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