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

List of Studies ( Metabolite:PC O-22:0/20:4)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST003751 AN006158 Comprehensive Lipidomic Analysis Identifies Critical Lipid and Metabolic Pathway Shifts in Alport Syndrome Blood Human Kidney disease Universidad CEU San Pablo LC-MS
ST003751 AN006158 Comprehensive Lipidomic Analysis Identifies Critical Lipid and Metabolic Pathway Shifts in Alport Syndrome Urine Human Kidney disease Universidad CEU San Pablo LC-MS
ST003751 AN006159 Comprehensive Lipidomic Analysis Identifies Critical Lipid and Metabolic Pathway Shifts in Alport Syndrome Blood Human Kidney disease Universidad CEU San Pablo LC-MS
ST003751 AN006159 Comprehensive Lipidomic Analysis Identifies Critical Lipid and Metabolic Pathway Shifts in Alport Syndrome Urine Human Kidney disease Universidad CEU San Pablo LC-MS
ST003514 AN005769 Highly reliable LC-MS lipidomics database for efficient human plasma profiling based on NIST SRM 1950 Blood Human Universidad CEU San Pablo LC-MS
ST003157 AN005179 Diet modulates the protective effects of dimethyl fumarate mediated by the immunometabolic neutrophil receptor HCA2 - Lipidomics Blood Mouse Multiple sclerosis University of Luebeck LC-MS
ST003103 AN005077 Reinforcing the Evidence of Mitochondrial Dysfunction in Long COVID Patients using a Multiplatform Mass Spectrometry-based Metabolomics Approach Blood Human COVID-19 Universidad CEU San Pablo GC-MS/LC-MS
ST002145 AN003511 The Carbohydrate Sensing Transcription Factor ChREBP Links Mitochondrial Lipidomes to Mitochondrial Dynamics and Progression of Diabetic Nephropathy Cultured cells Mouse Diabetes University of Texas MD Anderson Cancer Center LC-MS
ST002145 AN003512 The Carbohydrate Sensing Transcription Factor ChREBP Links Mitochondrial Lipidomes to Mitochondrial Dynamics and Progression of Diabetic Nephropathy Cultured cells Mouse Diabetes University of Texas MD Anderson Cancer Center LC-MS
ST001405 AN002347 MDM2-Dependent Rewiring of Metabolomic and Lipidomic Profiles in Dedifferentiated Liposarcoma Models Cultured cells Human Ohio State University LC-MS
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