High-Throughput Analysis from Complex Matrices: Acoustic Ejection Mass Spectrometry from Phase-Separated Fluid Samples

Acoustic ejection mass spectrometry is a novel high-throughput analytical technology that delivers high reproducibility without carryover observed. It eliminates the chromatography step used to separate analytes from matrix components. Fully-automated liquid–liquid extraction is widely used for samp...

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Autores principales: Yuzhu Guo, Michael Forbush, Thomas R. Covey, Lucien Ghislain, Chang Liu
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Lenguaje:EN
Publicado: MDPI AG 2021
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Acceso en línea:https://doaj.org/article/b6f291e4dcb24e2aa3047370fceb9c1c
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spelling oai:doaj.org-article:b6f291e4dcb24e2aa3047370fceb9c1c2021-11-25T18:20:56ZHigh-Throughput Analysis from Complex Matrices: Acoustic Ejection Mass Spectrometry from Phase-Separated Fluid Samples10.3390/metabo111107892218-1989https://doaj.org/article/b6f291e4dcb24e2aa3047370fceb9c1c2021-11-01T00:00:00Zhttps://www.mdpi.com/2218-1989/11/11/789https://doaj.org/toc/2218-1989Acoustic ejection mass spectrometry is a novel high-throughput analytical technology that delivers high reproducibility without carryover observed. It eliminates the chromatography step used to separate analytes from matrix components. Fully-automated liquid–liquid extraction is widely used for sample cleanup, especially in high-throughput applications. We introduce a workflow for direct AEMS analysis from phase-separated liquid samples and explore high-throughput analysis from complex matrices. We demonstrate the quantitative determination of fentanyl from urine using this two-phase AEMS approach, with a LOD lower than 1 ng/mL, quantitation precision of 15%, and accuracy better than ±10% over the range of evaluation (1–100 ng/mL). This workflow offers simplified sample preparation and higher analytical throughput for some bioanalytical applications, in comparison to an LC-MS based approach.Yuzhu GuoMichael ForbushThomas R. CoveyLucien GhislainChang LiuMDPI AGarticleacoustic ejection mass spectrometryhigh-throughput analysissample preparationliquid–liquid extractionMicrobiologyQR1-502ENMetabolites, Vol 11, Iss 789, p 789 (2021)
institution DOAJ
collection DOAJ
language EN
topic acoustic ejection mass spectrometry
high-throughput analysis
sample preparation
liquid–liquid extraction
Microbiology
QR1-502
spellingShingle acoustic ejection mass spectrometry
high-throughput analysis
sample preparation
liquid–liquid extraction
Microbiology
QR1-502
Yuzhu Guo
Michael Forbush
Thomas R. Covey
Lucien Ghislain
Chang Liu
High-Throughput Analysis from Complex Matrices: Acoustic Ejection Mass Spectrometry from Phase-Separated Fluid Samples
description Acoustic ejection mass spectrometry is a novel high-throughput analytical technology that delivers high reproducibility without carryover observed. It eliminates the chromatography step used to separate analytes from matrix components. Fully-automated liquid–liquid extraction is widely used for sample cleanup, especially in high-throughput applications. We introduce a workflow for direct AEMS analysis from phase-separated liquid samples and explore high-throughput analysis from complex matrices. We demonstrate the quantitative determination of fentanyl from urine using this two-phase AEMS approach, with a LOD lower than 1 ng/mL, quantitation precision of 15%, and accuracy better than ±10% over the range of evaluation (1–100 ng/mL). This workflow offers simplified sample preparation and higher analytical throughput for some bioanalytical applications, in comparison to an LC-MS based approach.
format article
author Yuzhu Guo
Michael Forbush
Thomas R. Covey
Lucien Ghislain
Chang Liu
author_facet Yuzhu Guo
Michael Forbush
Thomas R. Covey
Lucien Ghislain
Chang Liu
author_sort Yuzhu Guo
title High-Throughput Analysis from Complex Matrices: Acoustic Ejection Mass Spectrometry from Phase-Separated Fluid Samples
title_short High-Throughput Analysis from Complex Matrices: Acoustic Ejection Mass Spectrometry from Phase-Separated Fluid Samples
title_full High-Throughput Analysis from Complex Matrices: Acoustic Ejection Mass Spectrometry from Phase-Separated Fluid Samples
title_fullStr High-Throughput Analysis from Complex Matrices: Acoustic Ejection Mass Spectrometry from Phase-Separated Fluid Samples
title_full_unstemmed High-Throughput Analysis from Complex Matrices: Acoustic Ejection Mass Spectrometry from Phase-Separated Fluid Samples
title_sort high-throughput analysis from complex matrices: acoustic ejection mass spectrometry from phase-separated fluid samples
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/b6f291e4dcb24e2aa3047370fceb9c1c
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