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高通量纳升电喷雾离子化-质谱分析微流控液滴样品。

High-Throughput Nanoelectrospray Ionization-Mass Spectrometry Analysis of Microfluidic Droplet Samples.

机构信息

Department of Chemistry , University of Michigan , 930 N. University Avenue , Ann Arbor , Michigan 48109 , United States.

Department of Pharmacology , University of Michigan , 1150 W. Medical Center Drive , Ann Arbor , Michigan 48109 , United States.

出版信息

Anal Chem. 2019 May 21;91(10):6645-6651. doi: 10.1021/acs.analchem.9b00571. Epub 2019 May 3.

Abstract

Droplet microfluidics enables high-throughput manipulation of fL-μL volume samples. Methods implemented for the chemical analysis of microfluidic droplets have been limited in scope, leaving some applications of droplet microfluidics difficult to perform or out of reach entirely. Nanoelectrospray ionization-mass spectrometry (nESI-MS) is an attractive approach for droplet analysis, because it allows rapid, label-free, information-rich analysis with high mass sensitivity and resistance to matrix effects. Previous proof-of-concept systems for the nESI-MS analysis of droplets have been limited by the microfluidics used so that stable, long-term operation needed for high-throughput applications has not been demonstrated. We describe a platform for the stable analysis of microfluidic droplet samples by nESI-MS. Continuous infusion of droplets to an nESI emitter was demonstrated for as long as 2.5 h, corresponding to analysis of over 20 000 samples. Stable signal was observed for droplets as small as 65 pL and for throughputs as high as 10 droplets/s. A linear-concentration-based response and sample-to-sample carryover of <3% were also shown. The system is demonstrated for measuring products of in-droplet enzymatic reactions.

摘要

液滴微流控技术能够实现 fL-μL 体积样品的高通量操控。用于分析微流控液滴的方法在应用范围上受到限制,这使得一些液滴微流控应用难以实现或完全无法实现。纳喷雾电离质谱(nESI-MS)是一种用于液滴分析的有吸引力的方法,因为它允许进行快速、无标记、信息丰富的分析,具有高的质量灵敏度和对基质效应的抵抗力。之前用于 nESI-MS 分析液滴的概念验证系统受到所用微流控技术的限制,因此尚未证明能够稳定、长期运行以实现高通量应用。我们描述了一种通过 nESI-MS 稳定分析微流控液滴样品的平台。连续将液滴注入 nESI 发射器,最长可运行 2.5 小时,相当于分析超过 20000 个样品。即使液滴小至 65 pL 且流速高达 10 个液滴/s,也能观察到稳定的信号。还显示出基于线性浓度的响应和<3%的样品间交叉污染。该系统用于测量液滴内酶反应的产物。

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