Large-Scale Interlaboratory DI-FT-ICR MS Comparability Study Employing Various Systems.
Sara ForcisiFranco MoritzChristopher J ThompsonBasem KanawatiJenny UhlCarlos AfonsoChantal D BaderAiko BarschBerin A BoughtonRosalie K ChuJustine FereyFrancisco Fernandez LimaCéline GuéguenDimitri HeintzMario Gomez-HernandezKyoung-Soon JangNikolas KesslerVaughn MangalDaniel KrugRyo NakabayashiEdith NicolSimone NicolardiMagnus PalmbladLjiljana Paša-TolićJacob PorterIsabelle Schmitz-AfonsoJong Bok SeoEduardo SommellaYuri E M van der BurgtClaire VilletteMatthias WittAshley WittrigJeremy J WolffMichael L EasterlingFrank H LaukienPhilippe Schmitt-KopplinPublished in: Journal of the American Society for Mass Spectrometry (2022)
Ultrahigh resolution mass spectrometry (UHR-MS) coupled with direct infusion (DI) electrospray ionization offers a fast solution for accurate untargeted profiling. Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometers have been shown to produce a wealth of insights into complex chemical systems because they enable unambiguous molecular formula assignment even if the vast majority of signals is of unknown identity. Interlaboratory comparisons are required to apply this type of instrumentation in quality control (for food industry or pharmaceuticals), large-scale environmental studies, or clinical diagnostics. Extended comparisons employing different FT-ICR MS instruments with qualitative direct infusion analysis are scarce since the majority of detected compounds cannot be quantified. The extent to which observations can be reproduced by different laboratories remains unknown. We set up a preliminary study which encompassed a set of 17 laboratories around the globe, diverse in instrumental characteristics and applications, to analyze the same sets of extracts from commercially available standard human blood plasma and Standard Reference Material (SRM) for blood plasma (SRM1950), which were delivered at different dilutions or spiked with different concentrations of pesticides. The aim of this study was to assess the extent to which the outputs of differently tuned FT-ICR mass spectrometers, with different technical specifications, are comparable for setting the frames of a future DI-FT-ICR MS ring trial. We concluded that a cluster of five laboratories, with diverse instrumental characteristics, showed comparable and representative performance across all experiments, setting a reference to be used in a future ring trial on blood plasma.
Keyphrases
- mass spectrometry
- multiple sclerosis
- liquid chromatography
- gas chromatography
- ms ms
- quality control
- high performance liquid chromatography
- high resolution
- study protocol
- capillary electrophoresis
- clinical trial
- endothelial cells
- randomized controlled trial
- risk assessment
- human health
- current status
- cross sectional
- staphylococcus aureus
- high resolution mass spectrometry
- preterm infants
- gas chromatography mass spectrometry
- tandem mass spectrometry
- single cell
- open label
- case control
- candida albicans
- climate change