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首页> 外文期刊>Analytical chemistry >One Sensor for Multiple Colors: Fluorescence Analysis of Microdroplets in Microbiological Screenings by Frequency-Division Multiplexing
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One Sensor for Multiple Colors: Fluorescence Analysis of Microdroplets in Microbiological Screenings by Frequency-Division Multiplexing

机译:一种用于多种颜色的传感器:通过频分复用微生物筛查中微型电池的荧光分析

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摘要

High-speed multiwavelength fluorescence measurements are of paramount importance in microfluidic analytics. However, multicolor detection requires an intricate arrangement of multiple detectors and meticulously aligned filters and dichroic beamsplitters that counteract the simplicity, versatility, and low cost of microfluidic approaches. To break free from the restrictions of optical setup complexity, we introduce a simpler single-sensor setup based on laser-frequency modulation and frequency-division multiplexing (FDM). We modulate lasers to excite the sample with four non-overlapping frequency signals. A single photomultiplier tube detects all the modulated emitted light collected by an optical fiber in the microfluidic chip. Signal demodulation is performed with a lock-in amplifier separating the emitted light into four color channels in real time. This approach not only reduces complexity and provides setup flexibility but also results in improved signal quality and, thus, higher signal-to-noise ratios that translate into increased sensitivity. To validate the setup for high-throughput biological applications, we measured multiple signals from different microorganisms and fluorescently encoded droplet populations for exploring beneficial or antagonistic roles in microbial cocultivation systems, as is the case for antibiotic screening assays.
机译:高速多波长荧光测量在微流体分析中至关重要。然而,多色检测需要复杂的多个探测器布置和精心对齐的过滤器和二向导射线分离器,其抵消了微流体方法的简单性,多功能性和低成本。要摆脱光学设置复杂性的限制,我们根据激光频率调制和频分复用(FDM)引入简单的单传感器设置。我们调制激光器以四个非重叠频率信号激发样品。单个光电倍增管检测通过微流体芯片中的光纤收集的所有调制发射光。用锁定放大器执行信号解调,实时将发射的光分离为四种颜色通道。这种方法不仅可以降低复杂性并提供设置灵活性,而且还导致了改善的信号质量,从而导致更高的信噪比,转化为增加的灵敏度。为了验证用于高通量生物应用的设置,我们测量了来自不同微生物的多个信号和荧光编码的液滴群,以探索微生物培养系统中的有益或拮抗作用,以及抗生素筛选测定的情况。

著录项

  • 来源
    《Analytical chemistry》 |2019年第4期|共7页
  • 作者单位

    Hans Knoell Inst Leibniz Inst Nat Prod Res &

    Infect Biol Bio Pilot Plant D-07745 Jena Germany;

    Hans Knoell Inst Leibniz Inst Nat Prod Res &

    Infect Biol Bio Pilot Plant D-07745 Jena Germany;

    Hans Knoell Inst Leibniz Inst Nat Prod Res &

    Infect Biol Bio Pilot Plant D-07745 Jena Germany;

    Hans Knoell Inst Leibniz Inst Nat Prod Res &

    Infect Biol Bio Pilot Plant D-07745 Jena Germany;

    Hans Knoell Inst Leibniz Inst Nat Prod Res &

    Infect Biol Bio Pilot Plant D-07745 Jena Germany;

    LaCoSys GmbH D-07745 Jena Germany;

    Hans Knoell Inst Leibniz Inst Nat Prod Res &

    Infect Biol Bio Pilot Plant D-07745 Jena Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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