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High-throughput single cell metabolomics and cellular heterogeneity exploration by inertial microfluidics coupled with pulsed electric field-induced electrospray ionization-high resolution mass spectrometry

代谢组学 化学 单细胞分析 电喷雾电离 微流控 质谱法 电喷雾 解吸电喷雾电离 色谱法 分析化学(期刊) 吞吐量 细胞 电离 纳米技术 生物化学 化学电离 材料科学 计算机科学 电信 离子 有机化学 无线
作者
Disheng Feng,Hang Li,Tianrun Xu,Fujian Zheng,Chunxiu Hu,Xianzhe Shi,Guowang Xu
出处
期刊:Analytica Chimica Acta [Elsevier BV]
卷期号:1221: 340116-340116 被引量:24
标识
DOI:10.1016/j.aca.2022.340116
摘要

Single cell metabolomics can obtain the metabolic profiles of individual cells and reveal cellular heterogeneity. However, high-throughput single-cell mass spectrometry (MS) analysis under physiological conditions remains a great challenge due to the presence of complex matrix and extremely small cell volumes. Herein, a serpentine channel microfluidic device which was designed to achieve continuous cell separation and inertial focusing, was coupled with a pulsed electric field-induced electrospray ionization-high resolution MS (PEF-ESI-HRMS) to achieve high-throughput single cell analysis. The pulsed square wave electric field was applied to realize on-line cell disruption and induce electrospray ionization. Single cells were analyzed under near-physiological conditions at a throughput of up to 80 cells min-1. More than 900 features were detected and approximately 120 metabolites were tentatively identified from a single cell. Further, by continually analyzing more than 3000 MCF7 and HepG2 cells, discrimination of different cancer cells based on their individual metabolic profiles was achieved by using the principal component analysis. The PEF-ESI-HRMS method was also applied for the analysis of single yeast cells, and more than 40 metabolites were annotated. This method is versatile and has good robustness, which is promising for high-throughput single cell metabolomics analysis.
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