Data

Liquid chromatography ozone-induced dissociation mass spectrometry data - fatty acid discoveries in the human lipidome (OzFAD workflow)

Queensland University of Technology
Menzel, Jan Philipp ; Young, Reuben S.E. ; Benfield, Aurelie H. ; Scott, Julia S. ; Butler, Lisa M. ; Henriques, Sonia T. ; Poad, Berwyck L.J. ; Blanksby, Stephen J.
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.25912/RDF_1667992514317&rft.title=Liquid chromatography ozone-induced dissociation mass spectrometry data - fatty acid discoveries in the human lipidome (OzFAD workflow)&rft.identifier=10.25912/RDF_1667992514317&rft.publisher=Queensland University of Technology&rft.description=The data collection presented here underpins the following paper:  OzFAD: Ozone-enabled fatty acid discovery reveals unexpected diversity in the human lipidome. Jan Philipp Menzel, Reuben S.E. Young, Aurélie H. Benfield, Julia Scott, Lisa M. Butler, Sónia Troeira Henriques, Berwyck L.J. Poad, Stephen J. Blanksby. bioRxiv 2022.10.24.513604; doi: Code availability statement: Python source code, Windows batch files and associated files are publicly available at: . For more information on data analysis, please read the 'General data analysis', 'Data analysis protocol for direct infusion by loop injection', 'Data analysis protocol for data Independent acquisition; UPLC-OzID-MS' and 'Data analysis protocol for data dependent acquisition; UPLC-OzID-MS/MS' sections of the associated paper.  &rft.creator=Menzel, Jan Philipp &rft.creator=Young, Reuben S.E. &rft.creator=Benfield, Aurelie H. &rft.creator=Scott, Julia S. &rft.creator=Butler, Lisa M. &rft.creator=Henriques, Sonia T. &rft.creator=Poad, Berwyck L.J. &rft.creator=Blanksby, Stephen J. &rft.date=2022&rft.edition=1&rft.coverage=153.029197,-27.478244&rft_rights=© Queensland University of Technology, 2022.&rft_rights=Creative Commons Attribution-NonCommercial-No Derivatives 3.0 http://creativecommons.org/licenses/by-nc-nd/4.0/&rft_subject=Human plasma&rft_subject=Lipidomics&rft_subject=Fatty acid&rft_subject=SCD-1&rft_subject=Physical chemistry&rft_subject=CHEMICAL SCIENCES&rft_subject=Non-methylene interrupted fatty acid&rft_subject=LC-MS&rft_subject=Ozon-induced dissociation&rft_subject=LNCaP&rft_subject=Skyline&rft_subject=Analytical chemistry&rft_subject=Cancer&rft_subject=MCF7&rft_subject=Other chemical sciences&rft.type=dataset&rft.language=English Access the data

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Non-Derivative Licence view details
CC-BY-NC-ND

Creative Commons Attribution-NonCommercial-No Derivatives 3.0
http://creativecommons.org/licenses/by-nc-nd/4.0/

© Queensland University of Technology, 2022.

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Contact Information

Postal Address:
Dr Jan Philipp Menzel

j3.menzel@qut.edu.au

Full description

The data collection presented here underpins the following paper: 

OzFAD: Ozone-enabled fatty acid discovery reveals unexpected diversity in the human lipidome. Jan Philipp Menzel, Reuben S.E. Young, Aurélie H. Benfield, Julia Scott, Lisa M. Butler, Sónia Troeira Henriques, Berwyck L.J. Poad, Stephen J. Blanksby. bioRxiv 2022.10.24.513604; doi:

Code availability statement: Python source code, Windows batch files and associated files are publicly available at: .

For more information on data analysis, please read the 'General data analysis', 'Data analysis protocol for direct infusion by loop injection', 'Data analysis protocol for data Independent acquisition; UPLC-OzID-MS' and 'Data analysis protocol for data dependent acquisition; UPLC-OzID-MS/MS' sections of the associated paper. 

Data time period: 25 08 2020 to 21 10 2022

This dataset is part of a larger collection

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153.0292,-27.47824

153.029197,-27.478244

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