Fully Automated Electro Membrane Extraction Autosampler for LC-MS Systems Allowing Soft Extractions for High-Throughput Applications.

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Fully Automated Electro Membrane Extraction Autosampler for LC-MS Systems Allowing Soft Extractions for High-Throughput Applications. / Fuchs, David; Pedersen-Bjergaard, Stig; Jensen, Henrik; Rand, Kasper Dyrberg; Hansen, Steen Honoré; Petersen, Nickolaj J.

In: Analytical Chemistry, Vol. 88, No. 13, 29.05.2016, p. 6797−6804.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Fuchs, D, Pedersen-Bjergaard, S, Jensen, H, Rand, KD, Hansen, SH & Petersen, NJ 2016, 'Fully Automated Electro Membrane Extraction Autosampler for LC-MS Systems Allowing Soft Extractions for High-Throughput Applications.', Analytical Chemistry, vol. 88, no. 13, pp. 6797−6804. https://doi.org/10.1021/acs.analchem.6b01243

APA

Fuchs, D., Pedersen-Bjergaard, S., Jensen, H., Rand, K. D., Hansen, S. H., & Petersen, N. J. (2016). Fully Automated Electro Membrane Extraction Autosampler for LC-MS Systems Allowing Soft Extractions for High-Throughput Applications. Analytical Chemistry, 88(13), 6797−6804. https://doi.org/10.1021/acs.analchem.6b01243

Vancouver

Fuchs D, Pedersen-Bjergaard S, Jensen H, Rand KD, Hansen SH, Petersen NJ. Fully Automated Electro Membrane Extraction Autosampler for LC-MS Systems Allowing Soft Extractions for High-Throughput Applications. Analytical Chemistry. 2016 May 29;88(13):6797−6804. https://doi.org/10.1021/acs.analchem.6b01243

Author

Fuchs, David ; Pedersen-Bjergaard, Stig ; Jensen, Henrik ; Rand, Kasper Dyrberg ; Hansen, Steen Honoré ; Petersen, Nickolaj J. / Fully Automated Electro Membrane Extraction Autosampler for LC-MS Systems Allowing Soft Extractions for High-Throughput Applications. In: Analytical Chemistry. 2016 ; Vol. 88, No. 13. pp. 6797−6804.

Bibtex

@article{9733e663152644ee85df3dbe6dfe1b07,
title = "Fully Automated Electro Membrane Extraction Autosampler for LC-MS Systems Allowing Soft Extractions for High-Throughput Applications.",
abstract = "The current work describes the implementation of electro membrane extraction (EME) into an autosampler for high-throughput analysis of samples by EME-LC-MS. The extraction probe was built into a luer lock adapter connected to a HTC PAL autosampler syringe. As the autosampler drew sample solution, analytes were extracted into the lumen of the extraction probe and transferred to a LC-MS system for further analysis. Various parameters affecting extraction efficacy were investigated including syringe fill strokes, syringe pull up volume, pull up delay and volume in the sample vial. The system was optimized for soft extraction of analytes and high sample throughput. Further, it was demonstrated that by flushing the EME-syringe with acidic wash buffer and reverting the applied electric potential, carry-over between samples can be reduced to below 1%. Performance of the system was characterized (RSD, <10%; R(2), 0.994) and finally, the EME-autosampler was used to analyze in vitro conversion of methadone into its main metabolite by rat liver microsomes and for demonstrating the potential of known CYP3A4 inhibitors to prevent metabolism of methadone. By making use of the high extraction speed of EME, a complete analytical workflow of purification, separation, and analysis of sample could be achieved within only 5.5 min. With the developed system large sequences of samples could be analyzed in a completely automated manner. This high degree of automation makes the developed EME-autosampler a powerful tool for a wide range of applications where high-throughput extractions are required before sample analysis.",
author = "David Fuchs and Stig Pedersen-Bjergaard and Henrik Jensen and Rand, {Kasper Dyrberg} and Hansen, {Steen Honor{\'e}} and Petersen, {Nickolaj J.}",
year = "2016",
month = may,
day = "29",
doi = "10.1021/acs.analchem.6b01243",
language = "English",
volume = "88",
pages = "6797−6804",
journal = "Industrial And Engineering Chemistry Analytical Edition",
issn = "0003-2700",
publisher = "American Chemical Society",
number = "13",

}

RIS

TY - JOUR

T1 - Fully Automated Electro Membrane Extraction Autosampler for LC-MS Systems Allowing Soft Extractions for High-Throughput Applications.

AU - Fuchs, David

AU - Pedersen-Bjergaard, Stig

AU - Jensen, Henrik

AU - Rand, Kasper Dyrberg

AU - Hansen, Steen Honoré

AU - Petersen, Nickolaj J.

PY - 2016/5/29

Y1 - 2016/5/29

N2 - The current work describes the implementation of electro membrane extraction (EME) into an autosampler for high-throughput analysis of samples by EME-LC-MS. The extraction probe was built into a luer lock adapter connected to a HTC PAL autosampler syringe. As the autosampler drew sample solution, analytes were extracted into the lumen of the extraction probe and transferred to a LC-MS system for further analysis. Various parameters affecting extraction efficacy were investigated including syringe fill strokes, syringe pull up volume, pull up delay and volume in the sample vial. The system was optimized for soft extraction of analytes and high sample throughput. Further, it was demonstrated that by flushing the EME-syringe with acidic wash buffer and reverting the applied electric potential, carry-over between samples can be reduced to below 1%. Performance of the system was characterized (RSD, <10%; R(2), 0.994) and finally, the EME-autosampler was used to analyze in vitro conversion of methadone into its main metabolite by rat liver microsomes and for demonstrating the potential of known CYP3A4 inhibitors to prevent metabolism of methadone. By making use of the high extraction speed of EME, a complete analytical workflow of purification, separation, and analysis of sample could be achieved within only 5.5 min. With the developed system large sequences of samples could be analyzed in a completely automated manner. This high degree of automation makes the developed EME-autosampler a powerful tool for a wide range of applications where high-throughput extractions are required before sample analysis.

AB - The current work describes the implementation of electro membrane extraction (EME) into an autosampler for high-throughput analysis of samples by EME-LC-MS. The extraction probe was built into a luer lock adapter connected to a HTC PAL autosampler syringe. As the autosampler drew sample solution, analytes were extracted into the lumen of the extraction probe and transferred to a LC-MS system for further analysis. Various parameters affecting extraction efficacy were investigated including syringe fill strokes, syringe pull up volume, pull up delay and volume in the sample vial. The system was optimized for soft extraction of analytes and high sample throughput. Further, it was demonstrated that by flushing the EME-syringe with acidic wash buffer and reverting the applied electric potential, carry-over between samples can be reduced to below 1%. Performance of the system was characterized (RSD, <10%; R(2), 0.994) and finally, the EME-autosampler was used to analyze in vitro conversion of methadone into its main metabolite by rat liver microsomes and for demonstrating the potential of known CYP3A4 inhibitors to prevent metabolism of methadone. By making use of the high extraction speed of EME, a complete analytical workflow of purification, separation, and analysis of sample could be achieved within only 5.5 min. With the developed system large sequences of samples could be analyzed in a completely automated manner. This high degree of automation makes the developed EME-autosampler a powerful tool for a wide range of applications where high-throughput extractions are required before sample analysis.

U2 - 10.1021/acs.analchem.6b01243

DO - 10.1021/acs.analchem.6b01243

M3 - Journal article

C2 - 27237618

VL - 88

SP - 6797−6804

JO - Industrial And Engineering Chemistry Analytical Edition

JF - Industrial And Engineering Chemistry Analytical Edition

SN - 0003-2700

IS - 13

ER -

ID: 163187653