集成太赫兹生物分子DNA传感器

M. Nagel, F. Richter, P. Bolívar, H. Kurz, A. Bosserhoff, R. Buttner
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引用次数: 2

摘要

提出了一种基于太赫兹波的遗传物质无标记表征方法。基因序列(多核苷酸)的时间分辨太赫兹光谱分析表明,在太赫兹频率范围内,作为分析DNA序列杂交状态(杂交/变性)的函数,复折射率明显不同。通过监测太赫兹信号,可以推断出寡核苷酸和多核苷酸的结合状态,从而实现对多核苷酸遗传组成的无标记测定。综述了近年来在高灵敏度集成太赫兹传感器的发展方面取得的进展,这些传感器可达到飞模检测水平和单碱基突变检测能力。
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Integrated THz biomolecular sensors for DNA
A THz wave based approach for the label-free characterization of genetic material is presented. Time-resolved THz spectroscopic analysis of genetic sequences (polynucleotides) demonstrate a clearly distinct complex refractive index in the THz frequency range as a function of the hybridization state (hybridized/denatured) of the analysed DNA sequences. By monitoring THz signals one can thus infer the binding state of oligo- and polynucleotides, enabling the label-free determination of the genetic composition of polynucleotides. Recent advances in the development of high sensitivity integrated THz sensors reaching femtomol detection levels and single base mutation detection capabilities are reviewed.
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