Department of Electrical and Computer Engineering, University of Illinois Urbana Champaign, Urbana, Illinois 61801, United States.
Department of Chemistry and the Beckman Institute, University of Illinois Urbana Champaign, Urbana, Illinois 61801, United States.
Anal Chem. 2022 Oct 11;94(40):13804-13809. doi: 10.1021/acs.analchem.2c02323. Epub 2022 Sep 27.
While droplet microfluidics is becoming an effective tool for biomedical research, sensitive detection of droplet content is still challenging, especially for multiplexed analytes compartmentalized within ultrasmall droplets down to picoliter volumes. To enable such measurements, we demonstrate a silicon-based integrated microfluidic platform for multiplexed analysis of neurochemicals in picoliter droplets via nanoelectrospray ionization (nESI)-mass spectrometry (MS). An integrated silicon microfluidic chip comprising downscaled 7 μm-radius channels, a compact T-junction for droplet generation, and an integrated nESI emitter tip is used for segmentation of analytes into picoliter compartments and their efficient delivery for subsequent MS detection. The developed system demonstrates effective detection of multiple neurochemicals encapsulated within oil-isolated plugs down to low picoliter volumes. Quantitative measurements for each neurochemical demonstrate limits of detection at the attomole level. Such results are promising for applications involving label-free and small-volume detection for monitoring a range of brain chemicals.
虽然液滴微流控技术正成为生物医学研究的有效工具,但对液滴内容物的灵敏检测仍然具有挑战性,尤其是对于超微液滴(低至皮升级别)内分隔的多重分析物。为了实现这种测量,我们展示了一种基于硅的集成微流控平台,用于通过纳喷雾电离(nESI)-质谱(MS)对皮升级别液滴中的神经化学物质进行多重分析。该集成硅微流控芯片包括缩小尺寸的 7 μm 半径通道、用于液滴生成的紧凑 T 型接头,以及集成的 nESI 发射器尖端,用于将分析物分段成皮升级别,并将其有效输送到后续的 MS 检测中。所开发的系统可有效检测封装在油隔离塞中的多种神经化学物质,低至皮升级别。对每种神经化学物质的定量测量表明,检测限达到了飞摩尔水平。这些结果对于涉及无标记和小体积检测以监测一系列脑化学物质的应用具有很大的应用潜力。