Summary of Study ST002692

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 PR001667. The data can be accessed directly via it's Project DOI: 10.21228/M87727 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 IDST002692
Study TitlePer- and poly-fluoroalkyl substances (PFAS) Exposures and Child Health (PEACH) Study: Using targeted exposure assessment and untargeted metabolic profiling to characterize molecular pathways and mechanisms underlying PFAS toxicity on adverse birth and child health outcomes
Study TypeProspective Cohort Study
Study SummaryThe overarching goal of the Per- and poly-fluoroalkyl substances Exposures And Child Health (PEACH) Study is to apply an advanced untargeted metabolomics workflow to investigate associations between PFAS levels, perturbations in maternal and newborn metabolome and adverse birth outcomes. The Emory ECHO team has established a socio-economically diverse, exceptionally phenotyped African American (AA) maternal-child cohort that enrolls pregnant women in the early prenatal period and extends dyad follow-up through age five. PEACH draws from repeated metabolic profiling on a subset of 320 AA pregnant people within the Atlanta ECHO cohort, PFAS assessment, and untargeted metabolomics from newborn blood spots (n=279). Please contact Drs. Donghai Liang (Donghai.liang@emory.edu) and Anne Dunlop (amlang@emory.edu) via email for questions related to the subject characteristics and outcomes. This research was supported by the Environmental influences on Child Health Outcomes (ECHO) OIF program, Office of The Director, National Institutes of Health. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health. PEACH is an ECHO cohort which is supported by the following ECHO Program Collaborators: ECHO Coordinating Center: Duke Clinical Research Institute, Durham, North Carolina: Smith PB, Newby KL, Benjamin DK; U2C OD023375 ECHO Data Analysis Center: Johns Hopkins University Bloomberg School of Public Health, Baltimore, Maryland: Jacobson LP; Research Triangle Institute, Durham, North Carolina: Catellier D; U24 OD023382 North Carolina Human Health Exposure Analysis Resource Hub: Research Triangle Institute: Fennell T, University of North Carolina at Chapel Hill: Sumner S, University of North Carolina at Charlotte: Du X; U2C ES030857 Human Health Exposure Analysis Resource Coordinating Center: Westat, Inc., Rockville, Maryland: O’Brien B; U24 ES026539
Institute
Emory University
DepartmentEnvironmental Health
Last NameLiang
First NameDonghai
Address1518 Clifton Rd. NE Atlanta, GA 30322
Emaildonghai.liang@emory.edu
Phone(404) 712-9583
Submit Date2023-04-26
Total Subjects279
Study CommentsHHEAR Project EO19-0009, ECHO Project EC0386
Raw Data AvailableYes
Raw Data File Type(s)raw(Thermo)
Chear StudyYes
Analysis Type DetailLC-MS
Release Date2024-04-26
Release Version1
Donghai Liang Donghai Liang
https://dx.doi.org/10.21228/M87727
ftp://www.metabolomicsworkbench.org/Studies/ application/zip

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Combined analysis:

Analysis ID AN004365
Analysis type MS
Chromatography type Reversed phase
Chromatography system Thermo Vanquish
Column Waters ACQUITY UPLC HSS T3 (100 x 2.1mm,1.8um)
MS Type ESI
MS instrument type Orbitrap
MS instrument name Thermo Q Exactive HF-X Orbitrap
Ion Mode POSITIVE
Units Normalized intensity

MS:

MS ID:MS004112
Analysis ID:AN004365
Instrument Name:Thermo Q Exactive HF-X Orbitrap
Instrument Type:Orbitrap
MS Type:ESI
MS Comments:Instrument: Thermo Q Exactive HFx Software: Xcalibur 4.1.31.9 for data acquisition; Progenesis QI 2.4 for data preprocessing
Ion Mode:POSITIVE
Capillary Temperature:320 °C
Capillary Voltage:3.5 KV
Collision Energy:20-45, ramp
Collision Gas:N2
Dry Gas Flow:55
Dry Gas Temp:400°C
Fragmentation Method:CID
Ion Spray Voltage:3.5kV
Ionization:ES+
Mass Accuracy:5 ppm
Dataformat:Profile
Desolvation Gas Flow:55
Desolvation Temperature:400 ℃
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