Summary of Study ST001328

This data is available at the NIH Common Fund's National Metabolomics Data Repository (NMDR) website, the Metabolomics Workbench, https://www.metabolomicsworkbench.org, where it has been assigned Project ID PR000906. The data can be accessed directly via it's Project DOI: 10.21228/M8KD7Z This work is supported by NIH grant, U2C- DK119886.

See: https://www.metabolomicsworkbench.org/about/howtocite.php

This study contains a large results data set and is not available in the mwTab file. It is only available for download via FTP as data file(s) here.

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Study IDST001328
Study TitleMultiplatform, non-targeted analysis of lung extracts of uninfected and Mtb-infected C57BL/6 mice at 4 and 9 weeks p.i.
Study SummaryThe goal of this multiplatform, non-targeted metabolomics study was to explore the metabolic alterations occurring during the natural progression of pulmonary tuberculosis in a murine model of disease (C57BL/6 genotype). For this purpose, we used gas chromatography, capillary electrophoresis, and reversed-phase liquid chromatography coupled to high-resolution mass analyzers (GC-EI-QTOF/MS, CE-ESI(+)-QTOF/MS, LC-ESI(+)-QTOF/MS and LC-ESI(-)-QTOF/MS to analyze lung extracts of age and sex-matched uninfected mice (UW, n=4), Mycobacterium tuberculosis-infected mice at 4 weeks post-infection (4W, n=4) and Mycobacterium tuberculosis-infected mice at 9 weeks post-infection. All data were acquired in MS1 mode, following a canonical non-targeted workflow.
Institute
Universidad CEU San Pablo
DepartmentDepartamento de Quimica y Bioquimica
LaboratoryCentro de Metabolomica y Bioanalisis (CEMBIO)
Last NameFernandez Garcia
First NameMiguel
AddressFacultad de Farmacia, Universidad San Pablo-CEU, CEU Universities, Urbanización Montepríncipe, 28660 Boadilla del Monte, Spain
Emailmiguel.fernandezgarcia@ceu.es
Phone+34690090778
Submit Date2020-03-12
Num Groups3
Total Subjects13
Num Males6
Num Females7
Raw Data AvailableYes
Raw Data File Type(s)d
Analysis Type DetailGC-MS/LC-MS
Release Date2021-03-15
Release Version1
Miguel Fernandez Garcia Miguel Fernandez Garcia
https://dx.doi.org/10.21228/M8KD7Z
ftp://www.metabolomicsworkbench.org/Studies/ application/zip

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Combined analysis:

Analysis ID AN002211 AN002212 AN002213 AN002214
Analysis type MS MS MS MS
Chromatography type Reversed phase Reversed phase GC CE
Chromatography system Agilent 1200 Agilent 1200 Agilent 7890B Agilent 7100 CE
Column Agilent Poroshell 120 EC-C8 (150 x 2.1mm,2.7um) Agilent Poroshell 120 EC-C8 (150 x 2.1mm,2.7um) Agilent DB5-MS (30m x 0.25mm, 0.25um) Agilent bare-fused silica capillary (96 cm x 50 um i.d.)
MS Type ESI ESI EI ESI
MS instrument type QTOF QTOF QTOF TOF
MS instrument name Agilent 6520 QTOF Agilent 6520 QTOF Agilent 7200 Agilent 6224 TOF
Ion Mode POSITIVE NEGATIVE POSITIVE POSITIVE
Units Abundance Abundance Abundance Abundance

MS:

MS ID:MS002057
Analysis ID:AN002211
Instrument Name:Agilent 6520 QTOF
Instrument Type:QTOF
MS Type:ESI
MS Comments:Mass spectrometry detection was performed in positive ESI mode in a full scan from 100 to 1000 m/z. Samples were analyzed in separate runs (positive and negative ionization modes), in a randomized order. Capillary voltage was set to 4.5 kV; the drying gas flow rate was 10 L·min-1 at 350 °C and gas nebulizer at 40 psi; fragmentor voltage, skimmer voltage and octopole radio frequency voltage were set to 175, 65 and 750 V, respectively. Data were collected at a scan rate of 1.05 spectra·s-1. The resulting LC-QTOF/MS data files were cleaned of background noise and unrelated ions by the Batch Recursive Feature Extraction tool with Agilent MassHunter Profinder software version B.06.00. Data were extracted using data mining algorithms of the software.
Ion Mode:POSITIVE
Capillary Voltage:4.5 kV
Dry Gas Flow:10 L·min-1
Dry Gas Temp:350 °C
Gas Pressure:40 psi
Octpole Voltage:750 V
  
MS ID:MS002058
Analysis ID:AN002212
Instrument Name:Agilent 6520 QTOF
Instrument Type:QTOF
MS Type:ESI
MS Comments:Mass spectrometry detection was performed in negative ESI mode in a full scan from 100 to 1000 m/z. Samples were analyzed in separate runs (positive and negative ionization modes), in a randomized order. Capillary voltage was set to 4.5 kV; the drying gas flow rate was 10 L·min-1 at 350 °C and gas nebulizer at 40 psi; fragmentor voltage, skimmer voltage and octopole radio frequency voltage were set to 175, 65 and 750 V, respectively. Data were collected at a scan rate of 1.05 spectra·s-1. The resulting LC-QTOF/MS data files were cleaned of background noise and unrelated ions by the Batch Recursive Feature Extraction tool with Agilent MassHunter Profinder software version B.06.00. Data were extracted using data mining algorithms of the software.
Ion Mode:NEGATIVE
Capillary Voltage:4.5 kV
Dry Gas Flow:10 L·min-1
Dry Gas Temp:350 °C
Gas Pressure:40 psi
Octpole Voltage:750 V
  
MS ID:MS002059
Analysis ID:AN002213
Instrument Name:Agilent 7200
Instrument Type:QTOF
MS Type:EI
MS Comments:The analysis was performed on an Agilent Technologies 7200 accurate mass Q/TOF analyzer equipped with an electron ionization (EI) source.The MS scan mode was chosen as the acquisition mode, with the mass range of 50-650 m/z and an acquisition rate of 10 spectra·s-1. The individual analytical fingerprints obtained were deconvoluted using MassHunter Unknown Analysis version B.07.00.
Ion Mode:POSITIVE
  
MS ID:MS002060
Analysis ID:AN002214
Instrument Name:Agilent 6224 TOF
Instrument Type:TOF
MS Type:ESI
MS Comments:The optimized MS parameters were: fragmentor 125 V, Skimmer 65 V, octopole 750 V, nebulizer pressure 10 psi, drying gas temperature at 200 °C and flow rate 10.0 L·min-1. The capillary voltage was 3500 V. Data were acquired in positive electrospray ionization (ESI) mode with a full scan from m/z 50 to 1000 at a rate of 1 spectra·s-1. The resulting CE-TOF/MS data files were cleaned of background noise and unrelated ions by the Batch Recursive Feature Extraction tool with Agilent MassHunter Profinder version B.06.00 software. Data were extracted using a data mining algorithm based on the software.
Ion Mode:POSITIVE
Capillary Voltage:3.5 kV
Dry Gas Flow:10 L·min-1
Octpole Voltage:750 V
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