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

List of Studies ( Metabolite:PE 18:1_20:0)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST004039 AN006677 Soma to neuron communication links stress adaptation to stress avoidance behavior Worms C. elegans Stress University of Pittsburgh LC-MS
ST004039 AN006678 Soma to neuron communication links stress adaptation to stress avoidance behavior Worms C. elegans Stress University of Pittsburgh LC-MS
ST003899 AN006402 Lipidome profiling of fly head tissues from wild-type and tty mutant flies (cohort 1) Head Insect Rutgers University LC-MS
ST003645 AN005985 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 AN005961 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
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
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
ST003364 AN005512 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
ST003250 AN005324 Lipidomic analysis of Axon Regeneration in Xenopus laevis Tectum Eye tissue Frog Eye disease University of Miami LC-MS
ST003250 AN005324 Lipidomic analysis of Axon Regeneration in Xenopus laevis Tectum Eye tissue Frog Glaucoma University of Miami 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
ST003226 AN005290 Lipidomic analysis of Axon Regeneration in Xenopus laevis Retina Eye tissue Frog Eye disease University of Miami LC-MS
ST003226 AN005290 Lipidomic analysis of Axon Regeneration in Xenopus laevis Retina Eye tissue Frog Glaucoma University of Miami LC-MS
ST003184 AN005228 A multimodal drug-diet-immunotherapy combination restrains melanoma progression and metastasis - tumor lipidomics Tumor cells Mouse Cancer University of Colorado Anschutz Medical Campus LC-MS
ST002967 AN004875 Lipidomics study of FASN inhibition in HT-29 and HCT 116 spheroids Cultured cells Human Cancer Ohio State University LC-MS
ST002880 AN004719 Hypoxia-driven dynamics of tomato root lipidome Roots Tomato Leibniz Institute for Plasma Science and Technology LC-MS
ST002880 AN004720 Hypoxia-driven dynamics of tomato root lipidome Roots Tomato Leibniz Institute for Plasma Science and Technology LC-MS
ST002713 AN004397 Ranolazine induced metabolic rewiring improves melanoma responses to targeted therapy and immunotherapy - lipidomics Cultured cells Human Cancer University of Colorado Denver 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
ST002093 AN003419 Lipidomics of High Fat vs Control Mice Lung Mouse Obesity 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
ST001687 AN002755 Non-transformed cells respond to fat by inducing glucose metabolism Liver Mouse VIB-KU Leuven Center for Cancer Biology 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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