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

List of Studies ( Metabolite:DG 18:0_18:3)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST004300 AN007152 Two-dimensional liquid chromatography-mass spectrometry (2DLC-MS) platform to conduct an in-depth lipidomic analysis of liver and brain tissues from fat-1 transgenic mice exposed to ethanol. Brain Mouse Liver disease University of Louisville LC-MS
ST004300 AN007152 Two-dimensional liquid chromatography-mass spectrometry (2DLC-MS) platform to conduct an in-depth lipidomic analysis of liver and brain tissues from fat-1 transgenic mice exposed to ethanol. Liver Mouse Liver disease University of Louisville LC-MS
ST004300 AN007154 Two-dimensional liquid chromatography-mass spectrometry (2DLC-MS) platform to conduct an in-depth lipidomic analysis of liver and brain tissues from fat-1 transgenic mice exposed to ethanol. Brain Mouse Liver disease University of Louisville LC-MS
ST004300 AN007154 Two-dimensional liquid chromatography-mass spectrometry (2DLC-MS) platform to conduct an in-depth lipidomic analysis of liver and brain tissues from fat-1 transgenic mice exposed to ethanol. Liver Mouse Liver disease University of Louisville LC-MS
ST004039 AN006677 Soma to neuron communication links stress adaptation to stress avoidance behavior Worms C. elegans Stress University of Pittsburgh LC-MS
ST003645 AN005984 Targeting the c-MYC/ELOVL6 Pathway Alters Cell Membrane Mechanics and Enhances Chemotherapeutic Efficacy in Pancreatic Cancer Cultured cells Human Cancer Universidad Francisco de Vitoria - Hospital 12 de Octubre 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 AN005876 NRF2 supports non-small cell lung cancer growth independently of CBP/p300-enhanced glutathione synthesis Cultured cells Human Cancer Genentech Inc. FIA-MS
ST003390 AN005564 In-depth profiling of biosignatures for Type 2 diabetes mellitus cohort utilizing an integrated targeted LC-MS platform Blood Human Diabetes First Affiliated Hospital of Dalian Medical University LC-MS
ST003364 AN005511 Deep lipidomic profiling reveals sex dimorphism of lipid metabolism in fibro-calcific aortic valve disease Aortic valve tissue Human Heart disease Technical University Dresden LC-MS
ST002880 AN004719 Hypoxia-driven dynamics of tomato root lipidome Roots Tomato Leibniz Institute for Plasma Science and Technology LC-MS
ST002414 AN003935 Mass spectrometry dataset of LC-MS Lipidomics Analysis of Xenopus Laevis Optic Nerve Eye tissue Frog Eye disease University of Miami 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
ST002334 AN003810 Phospholipase D3 impact on the endolysosomal lipidome Cultured cells Human Alzheimers disease VIB-KU Leuven LC-MS
ST002180 AN003571 Global, distinctive and personal changes in molecular and microbial profiles induced by specific fibers in humans (Targeted) Blood Human Stanford University LC-MS
ST002101 AN003434 Functional metabolomics-based molecular profiling of acute and chronic hepatitis (Liver Lipidomics) Liver Mouse NASH Shanghai Center for Systems Biomedicine, Shanghai Jiaotong University LC-MS
ST002081 AN003790 Dynamic Lipidome Alterations Associated with Human Health, Disease, and Aging Blood Human Stanford University MS(Dir. Inf.)
ST001725 AN002810 Lipidomics dataset of Danio rerio optic nerve regeneration model Eye tissue Zebrafish Eye disease University of Miami LC-MS
ST001490 AN002469 Plasma lipidomic profiles after a low and high glycemic load dietary pattern in a randomized controlled cross over feeding study Blood Human Fred Hutchinson Cancer Research Center FIA-MS
ST001341 AN002235 C56BL6 BMDM stimulated with different TLRs W/O acetylated LDL (part-II) Macrophages Mouse University of California, Los Angeles MS(Dir. Inf.)
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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