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Miniaturized, multiplexed readout of droplet-based microfluidic assays using time-domain modulation

机译:使用时域调制的基于液滴的微流化验的微型化,多重读出

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摘要

Recent advances in microfluidics to generate and control picoliter emulsions of water in oil have enabled ultra-sensitive assays for small molecules, proteins, nucleic acids, and cells. Unfortunately, the conventional fluorescence detection used to measure the outcome of these droplet-based assays has not proven suited to match the time and space multiplexing capabilities of microfluidic systems. To address this challenge, we developed an in-flow fluorescence detection platform that enables multiple streams of droplets to be monitored using only a single photodetector and no lenses. The key innovation of our technology is the amplitude modulation of the signal from fluorescent droplets using distinct micro-patterned masks for each channel. By taking advantage of the high bandwidth of electronics, our technique enables the velocity-independent recovery of weak fluorescent signals (SNR 1) using only simple hardware, obviating the need for lasers, bulky detectors, and complex fluid control. We demonstrated a handheld-sized device that simultaneously monitors four independent channels with the capability to be scaled-up to more than sixteen, limited primarily by the droplet density.
机译:微流控技术在油中产生和控制皮微升水乳液的最新进展使得对小分子,蛋白质,核酸和细胞的超灵敏测定成为可能。不幸的是,用于测量这些基于液滴的测定法的结果的常规荧光检测尚未证明适合于匹配微流体系统的时间和空间复用能力。为了应对这一挑战,我们开发了一种流入式荧光检测平台,该平台可以仅使用一个光电探测器就可以监控多个液滴流,而无需使用透镜。我们技术的关键创新是对每个通道使用不同的微图案掩模对荧光滴信号进行幅度调制。通过利用电子设备的高带宽,我们的技术仅使用简单的硬件即可实现弱荧光信号(SNR 1)的与速度无关的恢复,而无需使用激光器,笨重的检测器和复杂的流体控制。我们展示了一种手持设备大小的设备,该设备可以同时监视四个独立的通道,并能够按比例放大到十六个以上的通道,这主要受液滴密度的限制。

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