Resumen
We have implemented a linear ion trap (LIT)-based SIM-stitching method for ultra-high-resolution Fourier transform mass spectrometry (FTMS) that increases the S/N over a wide m/z range compared to non-segmented wide full-scan (WFS) spectra. Here we described an improved segmented spectral scan stitching method that was based on quadrupole mass filter (QMF)-SIM, which overcame previous limitations of ion signal loss in LIT. This allowed for accurate representation of isotopologue distributions, both at natural abundance and in stable isotope-resolved metabolomics (SIRM)-based experiments. We also introduced a new spectral binning method that provided more precise and resolution-independent bins for irreversibly noise-suppressed FTMS spectra. We demonstrated a substantial improvement in S/N and sensitivity (typically > 10-fold) for 13C labeled lipid extracts of human macrophages grown as three-dimensional (3D) cell culture, with detection of an increased number of 13C isotopologue ions. The method also enabled analysis of extracts from very limited biological samples.
| Idioma original | English |
|---|---|
| Páginas (desde-hasta) | 104-115 |
| Número de páginas | 12 |
| Publicación | Analytica Chimica Acta |
| Volumen | 1080 |
| DOI | |
| Estado | Published - nov 8 2019 |
Nota bibliográfica
Publisher Copyright:© 2019 Elsevier B.V.
Financiación
This work was supported in part by NIH grants 1P01CA163223-01A1 (to ANL and TWMF), 1U24DK097215-01A1 (to RMH, TWMF, and ANL), 1R01CA118434-01A2 (to TWMF), 3R01CA118434-02S1 (to TWMF), 5P20GM121327-03 (Metabolism Core to ANL and RMH), and the Redox Metabolism Shared Resource(s) of the University of Kentucky Markey Cancer Center ( P30CA177558 ). This work was supported in part by NIH grants 1P01CA163223-01A1 (to ANL and TWMF), 1U24DK097215-01A1 (to RMH, TWMF, and ANL), 1R01CA118434-01A2 (to TWMF), 3R01CA118434-02S1 (to TWMF), 5P20GM121327-03 (Metabolism Core to ANL and RMH), and the Redox Metabolism Shared Resource(s) of the University of Kentucky Markey Cancer Center (P30CA177558). We thank François Allain for providing the Thermo MSFileReader Python library. This work was supported in part by NIH grants 1P01CA163223-01A1 (to ANL and TWMF), 1U24DK097215-01A1 (to RMH, TWMF, and ANL), 1R01CA118434-01A2 (to TWMF), 3R01CA118434-02S1 (to TWMF), 5P20GM121327-03 (Metabolism Core to ANL and RMH), and the Redox Metabolism Shared Resource(s) of the University of Kentucky Markey Cancer Center (P30CA177558). We thank Fran?ois Allain for providing the Thermo MSFileReader Python library.
| Financiadores | Número del financiador |
|---|---|
| TWMF | |
| University of Kentucky Markey Comprehensive Cancer Center | P30CA177558 |
| National Institutes of Health (NIH) | 1U24DK097215-01A1, 1P01CA163223-01A1, ANL |
| National Childhood Cancer Registry – National Cancer Institute | R01CA118434 |
| Argonne National Laboratory | 3R01CA118434-02S1, 5P20GM121327-03 |
| Center for Outcomes Research and Evaluation, Yale School of Medicine | |
| Norges Idrettshøgskole |
ASJC Scopus subject areas
- Analytical Chemistry
- Environmental Chemistry
- Biochemistry
- Spectroscopy
Huella
Profundice en los temas de investigación de 'Improved segmented-scan spectral stitching for stable isotope resolved metabolomics (SIRM) by ultra-high-resolution Fourier transform mass spectrometry'. En conjunto forman una huella única.Citar esto
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