TY - JOUR
T1 - Development of an Internal Calibration Algorithm for Ultrahigh-Resolution Mass Spectra of Dissolved Organic Matter
AU - Fu, Qing Long
AU - Fujii, Manabu
AU - Kwon, Eunsang
N1 - Funding Information:
This study was financially supported by the National Natural Science Foundation of China (No. 42107484), the Fundamental Research Funds for the Central Universities, China University of Geosciences (Wuhan) (122-G1323522145), and the Japan Society for the Promotion of Science (Nos. 17H04588 and 19H02271). The authors are grateful to Hiroyuki Momma for his assistance with FTICR-MS measurements, Chen He and Chao Ma for kindly providing the NOM ESI(+)-FTICR-MS spectra, and Simeon Schum for his kind help in the calibration of an ESI(−)-FTICR-MS spectrum using MFAssignR. FTMSCalibrate is available upon request from the corresponding or first author.
Publisher Copyright:
© 2022 American Chemical Society.
PY - 2022/8/2
Y1 - 2022/8/2
N2 - In order to obtain a spectrum with high mass accuracy, an internal calibration of Fourier transform ion cyclotron resonance mass spectrometry (FTICR-MS) is inevitable. This in turn is critical for subsequent data processing and is generally performed using the commercial instrument software DataAnalysis in the benchmark calibration mode. However, no methodological study has systemically addressed the automated internal calibration of FTICR-MS spectra for dissolved organic matter (DOM) from different sources such as terrestrial and aquatic environments. In this study, a new piecewise algorithm, FTMSCalibrate, was developed to automatically calibrate FTICR-MS spectra in both positive and negative ion modes. FTMSCalibrate was found to reproduce 91.7% ± 4.4% (referred to as the true positive ratio) of the chemical formulas obtained by calibration using manual DataAnalysis. In addition to significantly reducing the mass error, FTMSCalibrate is more accurate in terms of the molecular formula assignment for low m/z peaks than Formularity and MFAssignR. FTMSCalibrate was compatible with deprotonated ions for FTICR-MS spectra in the negative ion mode as well as protonated and adduct ions, including Na- and K-adducts, for FTICR-MS spectra in the positive ion mode. These results suggest that FTMSCalibrate publicly available herein is a robust alternative for the internal calibration of FTICR-MS spectra during postdata processing and will facilitate DOM analysis by FTICR-MS.
AB - In order to obtain a spectrum with high mass accuracy, an internal calibration of Fourier transform ion cyclotron resonance mass spectrometry (FTICR-MS) is inevitable. This in turn is critical for subsequent data processing and is generally performed using the commercial instrument software DataAnalysis in the benchmark calibration mode. However, no methodological study has systemically addressed the automated internal calibration of FTICR-MS spectra for dissolved organic matter (DOM) from different sources such as terrestrial and aquatic environments. In this study, a new piecewise algorithm, FTMSCalibrate, was developed to automatically calibrate FTICR-MS spectra in both positive and negative ion modes. FTMSCalibrate was found to reproduce 91.7% ± 4.4% (referred to as the true positive ratio) of the chemical formulas obtained by calibration using manual DataAnalysis. In addition to significantly reducing the mass error, FTMSCalibrate is more accurate in terms of the molecular formula assignment for low m/z peaks than Formularity and MFAssignR. FTMSCalibrate was compatible with deprotonated ions for FTICR-MS spectra in the negative ion mode as well as protonated and adduct ions, including Na- and K-adducts, for FTICR-MS spectra in the positive ion mode. These results suggest that FTMSCalibrate publicly available herein is a robust alternative for the internal calibration of FTICR-MS spectra during postdata processing and will facilitate DOM analysis by FTICR-MS.
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U2 - 10.1021/acs.analchem.2c01342
DO - 10.1021/acs.analchem.2c01342
M3 - Article
AN - SCOPUS:85135898826
SN - 0003-2700
VL - 94
SP - 10589
EP - 10594
JO - Analytical Chemistry
JF - Analytical Chemistry
IS - 30
ER -