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A droplet-based optofluidic device for high-throughput quantitative bioanalysis

机译:用于高通量定量生物分析的基于液滴的Optiof流体装置

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摘要

Analysis of chemical or biomolecular contents in a tiny amount of specimen presents a significant challenge in many biochemical studies and diagnostic applications. In this work, we present a single-layer, optofluidic device for real-time, high-throughput, quantitative analysis of droplet contents. Our device integrates an optical fiber-based, on-chip detection unit with a droplet-based microfluidic unit. It can quantitatively analyze the contents of individual droplets in real-time. It also achieves a detection throughput of 2000 droplets per second, a detection limit of 20 nM, and an excellent reproducibility in its detection results. In a proof-of-concept study, we demonstrate that our device can be used to perform detection of DNA and its mutations by monitoring the fluorescent signal changes of the target DNA/molecular beacon complex in single droplets. Our approach can be immediately extended to a real-time, high-throughput detection of other biomolecules (such as proteins and viruses) in droplets. With its advantages in throughput, functionality, cost, size, and reliability, the droplet-based optofluidic device presented here can be a valuable tool for many medical diagnostic applications.
机译:在许多生化研究和诊断应用中,对少量样品中化学或生物分子含量的分析提出了重大挑战。在这项工作中,我们提出了一种用于实时,高通量,液滴含量定量分析的单层光流体设备。我们的设备将基于光纤的芯片上检测单元与基于液滴的微流控单元集成在一起。它可以实时定量分析各个液滴的含量。它还实现了每秒2000小滴的检测吞吐量,20 nM的检测极限,并且其检测结果具有出色的可重复性。在概念验证研究中,我们证明了通过监测单个液滴中目标DNA /分子信标复合体的荧光信号变化,我们的设备可用于检测DNA及其突变。我们的方法可以立即扩展到对液滴中其他生物分子(例如蛋白质和病毒)的实时,高通量检测。凭借其在通量,功能,成本,尺寸和可靠性方面的优势,此处介绍的基于液滴的光流控设备可以成为许多医疗诊断应用程序的宝贵工具。

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