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

List of Studies ( Metabolite:Lauroyl diethanolamide)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteUnits(range)
ST003438 AN005649 Unbiased genetic screening and metabolomics identifies glial adenosine metabolism as a therapeutic target in Parkinson’s disease Fly Head Fly Parkinson's Disease Broad Institute of MIT and Harvard Abundances
ST002758 AN004475 Metabolic responses of normal rat kidneys to a high salt intake (Plasma) Blood Rat Medical College of Wisconsin Area
ST002758 AN004477 Metabolic responses of normal rat kidneys to a high salt intake (Plasma) Blood Rat Medical College of Wisconsin Area
ST002759 AN004479 Metabolic responses of normal rat kidneys to a high salt intake (Kidney cortex) Kidney cortex Rat Medical College of Wisconsin Area
ST002761 AN004487 Metabolic responses of normal rat kidneys to a high salt intake (Urine) Urine Rat Medical College of Wisconsin Area
ST001875 AN003037 Metabolomics analysis of multiple samples on AB 5600-Part 2 Feces Mouse Dalian Institute Of Chemical Physics blank-substracted abundances
ST001875 AN003037 Metabolomics analysis of multiple samples on AB 5600-Part 2 Liver Mouse Dalian Institute Of Chemical Physics blank-substracted abundances
ST001876 AN003038 Metabolomics analysis of multiple samples on Agilent 6546-Part 2 Feces Mouse Dalian Institute Of Chemical Physics blank-substracted abundances
ST001876 AN003038 Metabolomics analysis of multiple samples on Agilent 6546-Part 2 Liver Mouse Dalian Institute Of Chemical Physics blank-substracted abundances
ST001873 AN003035 Metabolomics analysis of multiple samples on AB 5600-Part 1 Blood Human Dalian Institute Of Chemical Physics peak area
ST001873 AN003035 Metabolomics analysis of multiple samples on AB 5600-Part 1 Hep G2 cells Human Dalian Institute Of Chemical Physics peak area
ST001873 AN003035 Metabolomics analysis of multiple samples on AB 5600-Part 1 Urine Human Dalian Institute Of Chemical Physics peak area
ST001874 AN003036 Metabolomics analysis of multiple samples on Agilent 6546-Part 1 Blood Human Dalian Institute Of Chemical Physics peak area
ST001874 AN003036 Metabolomics analysis of multiple samples on Agilent 6546-Part 1 Hep G2 cells Human Dalian Institute Of Chemical Physics peak area
ST001874 AN003036 Metabolomics analysis of multiple samples on Agilent 6546-Part 1 Urine Human Dalian Institute Of Chemical Physics peak area
ST002977 AN004887 Offline Two-dimensional Liquid Chromatography-Mass Spectrometry for Deep Annotation of the Fecal Metabolome following Fecal Microbiota Transplant Feces Human University of Michigan Peak area
ST003302 AN005411 Untargeted Dialysate Metabolomics Identification and Detection of Novel Neurochemicals via Benzoyl Chloride Derivatization Brain Rat University of Michigan Peak area
ST003307 AN005418 Untargeted metabolomics of rhizosphere soil from 4-years Panax ginseng that was treated with endo-borneol under field condition Soil Other Yunnan University Peak area
ST002075 AN003382 Profiling of the human intestinal microbiome and bile acids under physiologic conditions using an ingestible sampling device (Part 2) Intestine Human UC Davis peak height
ST003521 AN005782 Metabolic Profiling Unveils Enhanced Antibacterial Synergy of Polymyxin B and Teixobactin against Multi-Drug Resistant Acinetobacter baumannii Bacterial cells Acinetobacter baumannii Bacterial infection Monash University peak height
ST001637 AN002675 A Metabolome Atlas of the Aging Mouse Brain Brain Mouse University of California, Davis Peak height
ST001205 AN002006 Peroxide antimalarial treatment of K13-mutant and -wildtype P. falciparum parasites Cultured cells Human Malaria Monash University Peak intensity
ST001205 AN002006 Peroxide antimalarial treatment of K13-mutant and -wildtype P. falciparum parasites Cultured cells Plasmodium falciparum Malaria Monash University Peak intensity
ST001175 AN001950 Multi-omics analysis demonstrates unique mode of action of a potent new antimalarial compound, JPC-3210, against Plasmodium falciparum Plasmodium cells Plasmodium falciparum Malaria Monash University Signal Intensity
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