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

List of Studies ( Metabolite:PA 18:0_20:4)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST004229 AN007040 Aromatic Microbial Metabolite Hippuric Acid Potentiates Pro-Inflammatory Responses in Macrophages through TLR-MyD88 Signaling and Lipid Remodeling - Lipidomics analysis on bone marrow derived macrophages pre-treated with hippuric acid and stimulated with M1-like (LPS+IFNγ) Macrophages Mouse Bacterial infection The Wistar Institute LC-MS
ST004163 AN006909 Targeted Lipid Profiling of HEK and iPSC derived iMG Cell Models with GBA1 Loss-of-Function Cultured cells Human Metabolic disease Denali Therapeutics LC-MS
ST004163 AN006909 Targeted Lipid Profiling of HEK and iPSC derived iMG Cell Models with GBA1 Loss-of-Function Cultured cells Human Parkinsons disease Denali Therapeutics LC-MS
ST004059 AN006715 Targeted Lipid and Metabolite Profiling in Brains of ATP13A2 Knockout Mice Brain Mouse Neurodegenerative disease Denali Therapeutics LC-MS
ST004059 AN006715 Targeted Lipid and Metabolite Profiling in Brains of ATP13A2 Knockout Mice Brain Mouse Parkinsons disease Denali Therapeutics LC-MS
ST004058 AN006710 Targeted Lipid and Metabolite Profiling in ATP13A2 knockout (KO) in HAP1 cells Cultured cells Human Neurodegenerative disease Denali Therapeutics LC-MS
ST004058 AN006710 Targeted Lipid and Metabolite Profiling in ATP13A2 knockout (KO) in HAP1 cells Cultured cells Human Parkinsons disease Denali Therapeutics LC-MS
ST004057 AN006706 Microglial and Non-Microglial Regulation of Lipid Metabolism in Alzheimer's Revealed by Genetic and Pharmacological Depletion Brain Human Alzheimers disease UT Health San Antonio MS(Dir. Inf.)
ST004057 AN006706 Microglial and Non-Microglial Regulation of Lipid Metabolism in Alzheimer's Revealed by Genetic and Pharmacological Depletion Brain Mouse Alzheimers disease UT Health San Antonio MS(Dir. Inf.)
ST003737 AN006135 PILRA regulates microglial neuroinflammation and lipid metabolism as a candidate therapeutic target for Alzheimer’s disease Microglia Human Alzheimers disease Denali Therapeutics LC-MS
ST003528 AN005796 Lipidomics profiling of livers from Alb-Cre +/- SART-/- (KO) versus age matched wild type WT mouse littermates to characterize progression to hepatic steatosis and hepatocellular carcinoma Liver Mouse Cancer University of Utah LC-MS
ST003326 AN005448 Lipidome profiling in non-alcoholic steatohepatitis identifies phosphatidylserine synthase 1 as a regulator of hepatic lipoprotein metabolism Liver Mouse Liver disease University of Melbourne 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
ST003077 AN005035 Data-dependent and -independent acquisition lipidomics analysis reveals the tissue-dependent effect of metformin on lipid metabolism (Adipose tissue measurements) Adipose tissue Mouse North Carolina State University LC-MS
ST003077 AN005035 Data-dependent and -independent acquisition lipidomics analysis reveals the tissue-dependent effect of metformin on lipid metabolism (Adipose tissue measurements) Blood Mouse North Carolina State University LC-MS
ST003077 AN005035 Data-dependent and -independent acquisition lipidomics analysis reveals the tissue-dependent effect of metformin on lipid metabolism (Adipose tissue measurements) Heart Mouse North Carolina State University LC-MS
ST003077 AN005035 Data-dependent and -independent acquisition lipidomics analysis reveals the tissue-dependent effect of metformin on lipid metabolism (Adipose tissue measurements) Intestine Mouse North Carolina State University LC-MS
ST003077 AN005035 Data-dependent and -independent acquisition lipidomics analysis reveals the tissue-dependent effect of metformin on lipid metabolism (Adipose tissue measurements) Kidney Mouse North Carolina State University LC-MS
ST003077 AN005035 Data-dependent and -independent acquisition lipidomics analysis reveals the tissue-dependent effect of metformin on lipid metabolism (Adipose tissue measurements) Liver Mouse North Carolina State University LC-MS
ST003077 AN005035 Data-dependent and -independent acquisition lipidomics analysis reveals the tissue-dependent effect of metformin on lipid metabolism (Adipose tissue measurements) Muscle Mouse North Carolina State University LC-MS
ST002637 AN004309 MoTrPAC: Endurance exercise training study in young adult rats, Rat Hippocampus Powder - Untargeted Lipidomics, Reversed-Phase Positive Hippocampus Rat Georgia Institute of Technology LC-MS
ST002522 AN004156 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
ST002438 AN003973 Ozone alters glycosphingolipid metabolism and exacerbates characteristics of asthma in mice Lung Mouse Asthma University of California, Davis LC-MS
ST002243 AN003662 Lipidomics analysis of Friedreich's ataxia (FRDA) (part II) Blood Human Friedreichs Ataxia University of Pennsylvania LC-MS
ST002162 AN003542 CFAP418 participates in membrane-associated cellular processes through binding lipids during ciliogenesis Eye tissue Mouse Eye disease University of Utah - Metabolomics Core LC-MS
ST002162 AN003543 CFAP418 participates in membrane-associated cellular processes through binding lipids during ciliogenesis Eye tissue Mouse Eye disease University of Utah - Metabolomics Core LC-MS
ST001637 AN002678 A Metabolome Atlas of the Aging Mouse Brain Brain Mouse University of California, Davis GC-MS/LC-MS
ST001477 AN002453 Lipidomics dataset of PTEN deletion-induced nerve regeneration mouse model Eye tissue Mouse Eye disease University of Miami 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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