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Fluorescence lifetime detection with particle counting devices

机译:使用粒子计数装置检测荧光寿命

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摘要

Fluorescence-based single particle counting devices have become very powerful tools for human health-related applications such as the detection of blood-borne pathogens. Instead of passing the sample fluid through a thin tube or microfluidic chip, as it is commonly practiced in flow cytometers and sorter devices, single particle counters scan the fluid volume by rotation and translation of the sample container. Hence, single particle counters are not limited by the fluid flow friction and can scan a large volume in a short timeframe while maintaining high sensitivity. A single particle can be detected in a milliliter of the fluid sample within minutes, and diagnostics are being developed using this principle. Until now, signal detection with particle counters has been based on signal intensity and signal separation into multiple wavelength bands coupled with multiple detectors, which limits the number of species that can be resolved. In this paper, we applied fluorescence lifetime detection to single particle counting to increase specificity and enable multiplexing with a single detector. We demonstrate how this principle can be used for diagnostic assays based on fluorescence quenching.
机译:基于荧光的单颗粒计数设备已成为用于人类健康相关应用(例如检测血源性病原体)的非常强大的工具。单颗粒计数器不是通过流式细胞仪和分选器中通常采用的使样品流体流经细管或微流控芯片的方法,而是通过旋转和平移样品容器来扫描流体体积。因此,单个粒子计数器不受流体流动摩擦的限制,并且可以在短时间内扫描大量体积,同时保持高灵敏度。几分钟之内就可以在毫升的液体样品中检测到单个颗粒,并且正在使用此原理进行诊断。到目前为止,使用粒子计数器进行信号检测一直基于信号强度以及将信号分离为多个波长带并与多个检测器耦合的情况,这限制了可以分辨的物种数量。在本文中,我们将荧光寿命检测应用于单个粒子计数,以提高特异性并实现与单个检测器的多路复用。我们演示了该原理如何用于基于荧光猝灭的诊断分析。

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