Compare metabolites in 2 of these studies:
Study A:   Study B:  

List of Studies ( Metabolite:PE 18:2_22:5)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST003703 AN006075 NAD Depletion in Skeletal Muscle does not Compromise Muscle Function or Accelerate Aging Muscle Mouse Sarcopenia University of Copenhagen LC-MS
ST003703 AN006076 NAD Depletion in Skeletal Muscle does not Compromise Muscle Function or Accelerate Aging Muscle Mouse Sarcopenia University of Copenhagen LC-MS
ST003694 AN006060 FOLFIRINOX effects on lipidomics in pancreatic cancer cells Pancreas Human Cancer Pennsylvania State University LC-MS
ST003678 AN006039 The effects of cystine limitation stress adaptation (CLSA) on lipidomics changes in pancreatic cancer cells Pancreas Human Cancer Pennsylvania State University LC-MS
ST003637 AN005974 lomitapide effects on lipidomics Pancreas Human Cancer Pennsylvania State University LC-MS
ST003629 AN005962 Impact of human PSMC5 gene mutations on neuronal development: Lipid profiling of PSMC5 mutant T cells T-cells Human Brain disease Leibniz Institute for Plasma Science and Technology LC-MS
ST003578 AN005874 NRF2 supports non-small cell lung cancer growth independently of CBP/p300-enhanced glutathione synthesis Cultured cells Human Cancer Genentech Inc. FIA-MS
ST003410 AN005599 Lipidomics Analysis of ER+ Breast Cancer Cells Treated with Giredestrant and Palbociclib Cultured cells Human Cancer Genentech Inc. LC-MS
ST003409 AN005596 Impact of giredestrant on the lipid profile of MCF-7 breast cancer cells Cultured cells Human Cancer Genentech Inc. LC-MS
ST003260 AN005344 Exploration of RSL3-induced and Chlorido[N,N’-disalicylidene-1,2-phenylenediamine]iron(III) complex-induced changes in the lipidome of MDA-MB-231 breast cancer cells Breast cancer cells Human Cancer University of Innsbruck LC-MS
ST003257 AN005342 Exploration of EMT-dependent changes in the lipidome of KPC cells Tumor cells Mouse Cancer University of Innsbruck LC-MS
ST003247 AN005319 Effects of mitoregulin loss in aged female mice Heart Mouse Cardiovascular disease University of Iowa LC-MS
ST003246 AN005317 Effects of mitoregulin loss on cardiac and mitochondrial lipids in aged male mice Heart Mouse Cardiovascular disease University of Iowa LC-MS
ST003245 AN005315 Exploration of Zeb1-dependent changes in the lipidome of MDA-MB-231 cells Breast cancer cells Human Cancer University of Innsbruck LC-MS
ST003226 AN005289 Lipidomic analysis of Axon Regeneration in Xenopus laevis Retina Eye tissue Frog Eye disease University of Miami LC-MS
ST003226 AN005289 Lipidomic analysis of Axon Regeneration in Xenopus laevis Retina Eye tissue Frog Glaucoma University of Miami LC-MS
ST003222 AN005283 A small molecule macrophage migration inhibitory factor agonist ameliorates age-related myocardial intolerance to ischemia-reperfusion insults via metabolic regulation - Part 1 Heart Mouse Ischemia University of Mississippi Medical Center LC-MS
ST002684 AN004357 MoTrPAC: Endurance exercise training study in young adult rats, Rat Brown Adipose Powder - Untargeted Lipidomics, Reversed-Phase Negative Brown adipose Rat Georgia Institute of Technology LC-MS
ST002651 AN004323 MoTrPAC: Endurance exercise training study in young adult rats, Rat Heart Powder - Untargeted Lipidomics, Reversed-Phase Negative Heart Rat Georgia Institute of Technology LC-MS
ST002644 AN004316 MoTrPAC: Endurance exercise training study in young adult rats, Rat Gastrocnemius Powder - Untargeted Lipidomics, Reversed-Phase Negative Gastrocnemius Rat Georgia Institute of Technology LC-MS
ST002522 AN004155 Lipidomics study on the effect of LBP protein on hepatic lipid composition in mice Liver Mouse Oxidative stress University of Science and Technology of China LC-MS
ST002398 AN003905 Lipidomics of Tango2 Deficient and Wildtype Zebrafish Muscle Tissue Muscle Zebrafish Myopathy University of North Carolina at Chapel Hill LC-MS
ST001725 AN002810 Lipidomics dataset of Danio rerio optic nerve regeneration model Eye tissue Zebrafish Eye disease University of Miami LC-MS
ST001267 AN002104 Mass spectrometry-based lipidomics of oral squamous cell carcinoma tissue reveals aberrant cholesterol and glycerophospholipid metabolism Tongue Human Cancer University of Helsinki MS(Dir. Inf.)
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