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Terahertz biochip based on optoelectronic devices

机译:基于光电器件的太赫兹生物芯片

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The accurate detection of minute amounts of chemical and biological substances has been a major goal in bioanalytical technology throughout the twentieth century. Fluorescence dye labeling detection remains the effective analysis method but it modifies the surroundings of molecules and lowering the precision of detection. An alternative label free detecting tool with little disturbance of target molecules is highly desired. Theoretical calculations and experiments have demonstrated that many biomolecules have intrinsic resonance due to vibration or rotation level transitions, allowing terahertz (THz)-probing technique as a potential tool for the label-free and noninvasive detection of biomolecules. In this paper, we first ever combined the THz optoelectronic technique with biochip technology to realize THz biosensing. By transferring the edge-coupled photonic transmitter into a thin glass substrate and by integrating with a polyethylene based biochip channel, near field THz detection of the biomolecules is demonstrated. By directly acquiring the absorption micro-spectrum in the THz range, different boiomecules can then be identified according to their THz fingerprints. For preliminary studies, the capability to identity different illicit drug powders is successfully demonstrated. This novel biochip sensing system has the advantages including label-free detection, high selectivity, high sensitivity, ease for sample preparation, and ease to parallel integrate with other biochip functionality modules. Our demonstrated detection capability allows specifying various illicit drug powders with weight of nano-gram, which also enables rapid identification with minute amounts of other important molecules including DNA, biochemical agents in terrorism warfare, explosives, viruses, and toxics.
机译:在整个二十世纪,精确检测微量的化学和生物物质一直是生物分析技术的主要目标。荧光染料标记检测仍然是有效的分析方法,但它会改变分子的周围环境并降低检测精度。迫切需要一种对目标分子干扰很小的替代性无标记检测工具。理论计算和实验表明,由于振动或旋转水平转换,许多生物分子具有固有共振,从而使太赫兹(THz)探测技术成为无标记和无创检测生物分子的潜在工具。在本文中,我们首次将太赫兹光电技术与生物芯片技术相结合,以实现太赫兹生物传感。通过将边缘耦合的光子发射器转移到薄玻璃基板中并与基于聚乙烯的生物芯片通道整合,证明了生物分子的近场THz检测。通过直接获取THz范围内的吸收光谱,可以根据它们的THz指纹识别不同的生物体。对于初步研究,已成功证明了鉴别不同非法药物粉末的能力。这种新颖的生物芯片传感系统具有以下优点:无标记检测,高选择性,高灵敏度,易于样品制备以及易于与其他生物芯片功能模块并行集成。我们证明的检测能力可以指定各种重量级的纳克非法药物粉末,这还可以快速识别微量的其他重要分子,包括DNA,恐怖主义战争中的生化试剂,炸药,病毒和有毒物质。

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