Published July 28, 2025 | Version 1.0.0

Diisopromine as a non-labelled CYP3A4 substrate: Implications for breath test development

  • 1. Institute for Breath Research, University of Innsbruck

Contributors

  • 1. Institute for Breath Research, University of Innsbruck

Description

LC-data:

The data used for the experiments are available in CSV files. As many control measurements were carried out, there are often more data in the files than was used for analysis. Except from the area comparison, each file contains a calibration, as well as blank and unknown sample measurements. The data were measured using a Vanquish HPLC Flex system with a binary pump, coupled to an Orbitrap Q-Exactive mass spectrometer (both from Thermo Fisher Scientific). Evaluation was performed using the ‘QuanBrowser’ software (Thermo Xcalibur 4.2.47, Thermo Fisher Scientific). See the following publication for more information: https://doi.org/10.1016/j.bioorg.2025.108772

PTR-data:

The data used for the experiments are available as .txt files. As many control measurements were carried out, there are often more data in the files than was used for analysis.  The data were measured using a PTR-ToF 6000 X2 (Ionicon Analytik GmbH, Innsbruck, Austria). The data obtained from these measurements were analysed using PTR-ToF-MS Viewer software (version 3.4.4.22, Ionicon Analytik GmbH) and saved as a .txt file. The acetone product ion signal (C₃H₇O⁺) was normalised to a reagent ion signal of 10⁶ ions per second, in accordance with the following publication: https://doi.org/10.1016/j.bioorg.2025.108772

Files

Stock_Diisopromine_2025.zip

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Additional details

Funding

FWF Austrian Science Fund
Towards Personalised Medicine: use of volatile metabolites P35312