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Toward Automatic Label-Free Whispering Gallery Modes Biodetection with a Quantum Dot-Coated Microsphere Population

机译:迈向具有量子点涂层微球群体的自动无标签窃窃私语画廊模式生物检测。

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摘要

We explore a new calibration-free approach to biodetection based on whispering gallery modes (WGMs) without a reference measure and relative shifts. Thus, the requirement to keep track of the sensor position is removed, and a freely moving population of fluorophore-doped polystyrene microspheres can now fulfill this role of sensing resonator. Breaking free from fixed surface-based biosensing promotes adhesion between the microsphere sensors and the analytes since both can now be thoroughly mixed. The 70-nm-wide spectrum of green fluorescent microbeads allows us to monitor over 20 WGMs simultaneously without needing evanescent light coupling into the microspheres, hence enabling remote sensing. Since the exact radius of each microsphere is unknown a priori, it requires algorithmic analyses to obtain a reliable result for the refractive index of a solution. We first test our approach with different solutions of alcohol in water obtaining 3 × 10−4 precision on the refractive index at lower concentrations. Then, the solutions of bacterial spores in water yield clear evidence of biodetection in the statistical analysis of WGMs from 50 microspheres. To extend the fluorescence spectral range of our WGM sensors, we present preliminary results on coating microspheres with CdSe/ZnS quantum dots.
机译:我们探索基于耳语画廊模式(WGM)的无标定生物检测新方法,该方法无需参考措施和相对偏移。因此,消除了跟踪传感器位置的要求,并且自由移动的荧光团掺杂的聚苯乙烯微球体现在可以满足感测谐振器的作用。从固定的基于表面的生物传感中脱颖而出,可促进微球传感器与分析物之间的粘附,因为现在可以将两者彻底混合。 70纳米宽的绿色荧光微珠光谱使我们能够同时监视20多个WGM,而无需将瞬逝光耦合到微球中,从而实现遥感。由于每个微球的确切半径先验未知,因此需要进行算法分析以获得溶液折射率的可靠结果。我们首先用不同的酒精水溶液测试我们的方法,该方法在较低浓度下的折射率具有3×10 −4 精度。然后,细菌孢子在水中的溶液产生了对来自50个微球的WGM进行统计分析的生物检测的清晰证据。为了扩展我们WGM传感器的荧光光谱范围,我们提出了用CdSe / ZnS量子点涂覆微球的初步结果。

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