Summary of Study ST002932

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 PR001823. The data can be accessed directly via it's Project DOI: 10.21228/M82Q61 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 IDST002932
Study TitleAnalyzing Metabolic Alterations in the Gut, Hippocampus and Brainstem of Mice Induced by Running Exercise Through Liquid Chromatography Mass Spectrometry
Study SummaryMetabolic analysis of the impact of running exercise on the gut, hippocampus and brainstem is crucial as it provides insights into how exercise affects memory, mood, and vital physiological functions. In our six-week study, we utilized a mouse model (C57BL/6 genotype) to investigate these metabolic changes. Employing liquid chromatography coupled with mass spectrometry followed by metabolomics for a comprehensive analysis, our approach offers insights into how exercise influences metabolic processes, including brain function. Our findings hold the potential to shape more effective exercise strategies for enhancing overall health and cognitive function.
Institute
University of Puerto Rico, School of Medicine
DepartmentBiochemistry
Last NameChorna
First NameNataliya
AddressUniversity of Puerto Rico, Medical Sciences Campus, San Juan, PR 00935
Emailnataliya.chorna@upr.edu
Phone7877582525 ext 1640
Submit Date2023-10-15
Num Groups2
Total Subjects24
Num Males24
Raw Data AvailableYes
Raw Data File Type(s)mzML
Analysis Type DetailLC-MS
Release Date2023-10-30
Release Version1
Nataliya Chorna Nataliya Chorna
https://dx.doi.org/10.21228/M82Q61
ftp://www.metabolomicsworkbench.org/Studies/ application/zip

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Factors:

Subject type: Mammal; Subject species: Mus musculus (Factor headings shown in green)

mb_sample_id local_sample_id Factor
SA318216bs_r1brainstem
SA318217bs_s5brainstem
SA318218bs_s3brainstem
SA318219bs_s7brainstem
SA318220bs_s4brainstem
SA318221bs_s9brainstem
SA318222bs_s12brainstem
SA318223bs_s11brainstem
SA318224bs_s10brainstem
SA318225bs_s2brainstem
SA318226bs_s8brainstem
SA318227bs_s6brainstem
SA318228bs_r5brainstem
SA318229bs_r6brainstem
SA318230bs_r4brainstem
SA318231bs_r3brainstem
SA318232bs_s1brainstem
SA318233bs_r7brainstem
SA318234bs_r2brainstem
SA318235bs_r8brainstem
SA318236bs_r11brainstem
SA318237bs_r12brainstem
SA318238bs_r9brainstem
SA318239bs_r10brainstem
SA318240fec_s5feces
SA318241fec_s4feces
SA318242fec_s3feces
SA318243fec_s6feces
SA318244fec_s2feces
SA318245fec_s10feces
SA318246fec_s12feces
SA318247fec_s11feces
SA318248fec_s9feces
SA318249fec_s8feces
SA318250fec_s7feces
SA318251fec_s1feces
SA318252fec_r4feces
SA318253fec_r5feces
SA318254fec_r3feces
SA318255fec_r2feces
SA318256fec_r12feces
SA318257fec_r6feces
SA318258fec_r1feces
SA318259fec_r11feces
SA318260fec_r7feces
SA318261fec_r10feces
SA318262fec_r9feces
SA318263fec_r8feces
SA318264hp_s6hippocampus
SA318265hp_s7hippocampus
SA318266hp_s3hippocampus
SA318267hp_s4hippocampus
SA318268hp_s5hippocampus
SA318269hp_s10hippocampus
SA318270hp_s2hippocampus
SA318271hp_s12hippocampus
SA318272hp_s11hippocampus
SA318273hp_s9hippocampus
SA318274hp_s8hippocampus
SA318275hp_r7hippocampus
SA318276hp_r4hippocampus
SA318277hp_r5hippocampus
SA318278hp_r3hippocampus
SA318279hp_r2hippocampus
SA318280hp_r1hippocampus
SA318281hp_r6hippocampus
SA318282hp_r8hippocampus
SA318283hp_r12hippocampus
SA318284hp_r11hippocampus
SA318285hp_r10hippocampus
SA318286hp_r9hippocampus
SA318287hp_s1hippocampus
Showing results 1 to 72 of 72
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