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Label-free detection of real-time DNA amplification using a nanofluidic diffraction grating

机译:使用纳米流体衍射光栅对实时DNA扩增进行无标记检测

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摘要

Quantitative DNA amplification using fluorescence labeling has played an important role in the recent, rapid progress of basic medical and molecular biological research. Here we report a label-free detection of real-time DNA amplification using a nanofluidic diffraction grating. Our detection system observed intensity changes during DNA amplification of diffracted light derived from the passage of a laser beam through nanochannels embedded in a microchannel. Numerical simulations revealed that the diffracted light intensity change in the nanofluidic diffraction grating was attributed to the change of refractive index. We showed the first case reported to date for label-free detection of real-time DNA amplification, such as specific DNA sequences from tubercle bacilli (TB) and human papillomavirus (HPV). Since our developed system allows quantification of the initial concentration of amplified DNA molecules ranging from 1 fM to 1 pM, we expect that it will offer a new strategy for developing fundamental techniques of medical applications.
机译:使用荧光标记的定量DNA扩增在基础医学和分子生物学研究的近期快速发展中发挥了重要作用。在这里,我们报告使用纳米流体衍射光栅对实时DNA扩增进行无标记检测。我们的检测系统观察到了衍射光的DNA扩增过程中强度的变化,该衍射光是由于激光束穿过微通道中嵌入的纳米通道而产生的。数值模拟表明,纳米流体衍射光栅中的衍射光强度变化是由于折射率的变化所致。我们展示了迄今为止报道的第一例无标记的实时DNA扩增检测,例如结核杆菌(TB)和人乳头瘤病毒(HPV)的特定DNA序列。由于我们开发的系统可以量化扩增DNA分子的初始浓度,范围从1 fM到1 pM,我们希望它将为开发医学应用的基本技术提供新的策略。

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