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Label-Free, Single-Molecule Detection with Optical Microcavities

机译:带有光学微腔的无标签单分子检测

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Current single-molecule detection techniques require labeling the target molecule. We report a highly specific and sensitive optical sensor based on an ultrahigh quality (Q) factor (Q > 10~8) whispering-gallery microcavity. The silica surface is functionalized to bind the target molecule; binding is detected by a resonant wavelength shift. Single-molecule detection is confirmed by observation of single-molecule binding events that shift the resonant frequency, as well as by the statistics for these shifts over many binding events. These shifts result from a thermo-optic mechanism. Additionally, label-free, single-molecule detection of interleukin-2 was demonstrated in serum. These experiments demonstrate a dynamic range of 1012 in concentration, establishing the microcavity as a sensitive and versatile detector.
机译:当前的单分子检测技术需要标记靶分子。我们报告了一种基于超高品质(Q)因子(Q> 10〜8)耳语画廊微腔的高度特异性和灵敏的光学传感器。二氧化硅表面被官能化以结合目标分子;通过共振波长偏移检测结合。通过观察改变共振频率的单分子结合事件,以及通过统计许多结合事件上的这些位移,可以确认单分子检测。这些偏移是由热光机制引起的。此外,在血清中证明了白细胞介素2的无标记单分子检测。这些实验表明浓度的动态范围为1012,从而将微腔确立为灵敏且用途广泛的检测器。

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