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

List of Studies ( Metabolite:PC 18:2(9Z,12Z)/22:6(4Z,7Z,10Z,13Z,16Z,19Z))

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST004333 AN007236 Oxidative pentose phosphate pathway is required for T cell activation and anti-tumor immunity - G6PD-knockout T-cells Mouse Cancer Princeton University LC-MS
ST003378 AN005531 Effects of Aldehydes on lipid metabolism in mice Liver Mouse Liver disease Feinstein Institutes for Medical Research LC-MS
ST003378 AN005531 Effects of Aldehydes on lipid metabolism in mice Liver Mouse Obesity Feinstein Institutes for Medical Research LC-MS
ST003378 AN005533 Effects of Aldehydes on lipid metabolism in mice Liver Mouse Liver disease Feinstein Institutes for Medical Research LC-MS
ST003378 AN005533 Effects of Aldehydes on lipid metabolism in mice Liver Mouse Obesity Feinstein Institutes for Medical Research LC-MS
ST001274 AN002115 Metabolomics-based profiling of the mode of action of Pathogen Box compounds in Trypanosoma brucei (part-I) Cultured cells Trypanosoma brucei Sleeping sickness Monash University LC-MS
ST000624 AN000956 Human trabecular meshowrk phospholipid profiles of control and glaucomatous eyes Eye tissue Human Eye disease University of Miami MS(Dir. Inf.)
ST000616 AN000945 Human Aqueous Humor Phospholipids in Control and Glaucomatous eyes Eye tissue Human Eye disease University of Miami MS(Dir. Inf.)
ST000582 AN000893 DBA2J Phospholipid Analysis Eye tissue Mouse Eye disease University of Miami LC-MS
ST000310 AN000490 TC and B6 untreated plasma in lupus-prone mice lipidomics (part-II) Blood Mouse Lupus University of Florida LC-MS
ST000310 AN000492 TC and B6 untreated plasma in lupus-prone mice lipidomics (part-II) Blood Mouse Lupus University of Florida LC-MS
ST000241 AN000373 Cyclobutene- and cyclobutane-functionalized fatty acids as novel biochemical probes of structure and function in HepG2 cells Cultured cells Human University of Nebraska-Lincoln LC-MS
ST000241 AN000374 Cyclobutene- and cyclobutane-functionalized fatty acids as novel biochemical probes of structure and function in HepG2 cells Cultured cells Human University of Nebraska-Lincoln LC-MS
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