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

List of Studies ( Metabolite:Cer 14:1;O2/20:0)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST004291 AN007136 Metabolomics analysis of Plasmodium falciparum asexual-stage parasites treated with plasmepsin V peptidomimetics - 16 hour treatment Blood Plasmodium falciparum Malaria Monash University LC-MS
ST004290 AN007134 Metabolomics characterisation of Plasmodium falciparum response to plasmepsin V peptidomimetic inhibitors - 5 hour treatment Blood Plasmodium falciparum Malaria Monash University LC-MS
ST003900 AN006403 Lipidome profiling of fly head tissues from wild-type and tty mutant flies (cohort 2) Head Insect Rutgers University 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
ST003842 AN006315 Lipidomics analysis of Bombyx mori cocoon shell in positive and negative mode Cocoon shell Silkworm National and Kapodistrian University of Athens LC-MS
ST003162 AN005189 Loss of dihydroceramide desaturase drives neurodegeneration by disrupting endoplasmic reticulum and lipid droplet homeostasis in glial cells CNS Fruit fly Brain disease Washington University in St. Louis LC-MS
ST003162 AN005189 Loss of dihydroceramide desaturase drives neurodegeneration by disrupting endoplasmic reticulum and lipid droplet homeostasis in glial cells Larvae Fruit fly Brain disease Washington University in St. Louis LC-MS
ST003162 AN005190 Loss of dihydroceramide desaturase drives neurodegeneration by disrupting endoplasmic reticulum and lipid droplet homeostasis in glial cells CNS Fruit fly Brain disease Washington University in St. Louis LC-MS
ST003162 AN005190 Loss of dihydroceramide desaturase drives neurodegeneration by disrupting endoplasmic reticulum and lipid droplet homeostasis in glial cells Larvae Fruit fly Brain disease Washington University in St. Louis LC-MS
ST002108 AN003448 Genetic and chemical validation of Plasmodium falciparum aminopeptidase PfA-M17 as a drug target in the hemoglobin digestion pathway (Part 3) Blood Plasmodium falciparum Malaria Monash University LC-MS
ST002107 AN003446 Genetic and chemical validation of Plasmodium falciparum aminopeptidase PfA-M17 as a drug target in the hemoglobin digestion pathway (Part 2) Blood Plasmodium falciparum Malaria Monash University LC-MS
ST002107 AN003447 Genetic and chemical validation of Plasmodium falciparum aminopeptidase PfA-M17 as a drug target in the hemoglobin digestion pathway (Part 2) Blood Plasmodium falciparum Malaria Monash University LC-MS
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