2018
DOI: 10.1039/c7cc09608a
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Dean flow assisted cell ordering system for lipid profiling in single-cells using mass spectrometry

Abstract: This study describes a novel Dean flow assisted cell ordering system which is connected to an electrospray ionization-mass spectrometer for the detection of lipids in a single-cell. This platform provides a facile method for direct analysis of label-free lipids in single-cells and significantly improves the efficiency of single-cell mass spectrometry.

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Cited by 70 publications
(52 citation statements)
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“…D) A novel Dean flow‐based microfluidics platform which can be connected to an ESI‐MS to conduct lipid profiling at single‐cell level. Reproduced with permission . Copyright 2018, Royal Society of Chemistry.…”
Section: Single‐cell Omics Analysismentioning
confidence: 99%
See 1 more Smart Citation
“…D) A novel Dean flow‐based microfluidics platform which can be connected to an ESI‐MS to conduct lipid profiling at single‐cell level. Reproduced with permission . Copyright 2018, Royal Society of Chemistry.…”
Section: Single‐cell Omics Analysismentioning
confidence: 99%
“…Huang et al developed a novel Dean flow based microfluidics platform which could be connected to an ESI‐MS to conduct lipid profiling at single‐cell level. This design could reduce the agglomeration and uneven distributions of cells, significantly improving the efficiency of single‐cell mass spectrometry (Figure D) . Zenobi group developed a microarray for mass spectrometry (MAMS) platform which combined hydrophilic reservoirs for massively parallel and automated sample spotting.…”
Section: Single‐cell Omics Analysismentioning
confidence: 99%
“…For example, the spiral inertial microfluidic channel was integrated with the laser-induced fluorescence (LIF) setup for cell counting at a throughput of 2100 particles/s (Bhagat et al 2010). In addition to the microflow cytometer, Huang et al (2018) realized the lipid profiling in single cells through coupling the spiral inertial microfluidics with the mass spectrometry (see Fig. 3a).…”
Section: Focusing/orderingmentioning
confidence: 99%
“…This probe consists of a dual-bore quartz tubing that was pulled and fused to a silica capillary for nanoESI-MS analysis [12,13]. The probe showed highly promising results for sampling metabolites and peptides from live single-cells, with over 500 metabolites and peptides detected [17,18]. Traditional capillary microsampling with ESI-IMS-MS was also coupled with fluorescence microscopy to discriminate and select hepatocellular carcinoma cells in specific stages of cell mitosis in order to profile the cellular heterogeneity of dividing cells [39].…”
Section: Addressing the Challenges Of Single-cell Samplingmentioning
confidence: 99%