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

List of Studies ( Metabolite:dUTP)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST003812 AN006267 Sulfur Amino Acid Restriction Enhances Exercise Capacity in Mice by Boosting Fat Oxidation in Muscle - metabolomics from CD36 x PdgfBcre vs WT mice on control or SAAR diet Blood Mouse Princeton University LC-MS
ST003812 AN006267 Sulfur Amino Acid Restriction Enhances Exercise Capacity in Mice by Boosting Fat Oxidation in Muscle - metabolomics from CD36 x PdgfBcre vs WT mice on control or SAAR diet Muscle Mouse Princeton University LC-MS
ST003686 AN006049 Characterization of the transpulmonary metabolome at the intersection of pulmonary vascular disease and exercise Blood Human Cardiovascular disease University of Colorado Anschutz Medical Campus LC-MS
ST003588 AN005892 Mitochondria complex III is essential for IL-10 secretion in macrophages independent of respiration Macrophages Mouse Influenza Northwestern University, Feinberg School of Medicine LC-MS
ST003588 AN005892 Mitochondria complex III is essential for IL-10 secretion in macrophages independent of respiration Macrophages Mouse Toxic shock Northwestern University, Feinberg School of Medicine LC-MS
ST003340 AN005474 Effect of feeding and the mTORC1 activity on metabolism in Caenorhabditis elegans Worms C. elegans Hiroshima University LC-MS
ST003177 AN005216 A Longitudinal Study in Rheumatoid Arthritis Unveils Metabolomic Biomarkers Preceding Clinical Onset, Assessing Disease Severity, and Anticipating Treatment Response to csDMARDs Blood Human Rheumatoid arthritis West China Hospital of Sichuan University LC-MS
ST003027 AN004963 NMR- and MS-based omics reveal characteristic metabolome atlas and optimize biofluid earlydiagnostic biomarkers for esophageal squamous cell carcinoma (part-Ⅳ) Tissue Human Cancer Shantou University Medical College GC/LC-MS
ST002869 AN004702 Identifying Biodegradation Pathways of Cetrimonium Bromide (CTAB) Using Metagenome, Metatranscriptome, and Metabolome Tri-omics Integration Water Bacteria Environmental exposure Arizona State University LC-MS
ST002542 AN004189 Methionine restriction constrains lipoylation and activates mitochondria for nitrogenic synthesis of amino acids (Part 2) Yeast cells Yeast ZheJiang University LC-MS
ST002541 AN004187 Methionine restriction constrains lipoylation and activates mitochondria for nitrogenic synthesis of amino acids (Part 1) Yeast cells Yeast Zhejiang University LC-MS
ST002508 AN004130 13C-isotopic labeling of mouse eye organoids under three conditions. Retina Mouse Northwestern University LC-MS
ST002123 AN003476 GCN2 regulates mitochondrial OXPHOS in HSPCs under proliferation conditions. Bone marrow Mouse Sun Yat-sen University LC-MS
ST002078 AN003387 Multiple modes of interfering with the activity of Plasmodium falciparum cytoplasmic isoleucyl-tRNA synthetase illustrate the enzyme is a promising antimalarial target. Cultured cells Plasmodium falciparum Malaria Pennsylvania State University LC-MS
ST002011 AN003279 The anticancer human mTOR inhibitor MLN0128/Sapanisertib with potent multistage in vitro antiplasmodium activity and in vivo antimalarial efficacy in a humanised mouse model is an inhibitor of multiple Plasmodium falciparum kinases. Blood Plasmodium falciparum Malaria Pennsylvania State University LC-MS
ST001680 AN002739 Metabolome of NAFLD in high fat diet mouse model Liver Mouse Fatty liver disease Weill Cornell Medicine LC-MS
ST001610 AN002644 Control (DMSO 0.1%; v/v) and 10 µM DRB18 treated A549 lung cancer cells in vitro for 48 hours Lung Human Cancer Ohio University LC-MS
ST001251 AN002077 The effects of a training program encompassing cold exposure, breathing exercises, and meditation on plasma metabomics during experimental human endotoxemia Blood Human Endotoxemia Radboud University Medical Centre LC-MS
ST001232 AN002050 Combining stage - specificity and metabolomic profiling to advance drug discovery for malaria Cultured cells Plasmodium falciparum Malaria Pennsylvania State University LC-MS
ST001149 AN001896 Plasmodium Niemann-Pick Type C1-Related Protein is a Druggable Target Required for Parasite Membrane Homeostasis Cultured cells Plasmodium falciparum Malaria Pennsylvania State University LC-MS
ST001074 AN001756 Open source discovery of starting points for next generation chemoprotective antimalarial drugs (Biofocus 1) Parasite Human Pennsylvania State University LC-MS
ST000441 AN000692 Metabolomic Profiling of the Malaria Box Reveals Antimalarial Target Pathways Plasmodium cells Plasmodium falciparum Malaria Pennsylvania State University LC-MS
ST000294 AN000470 Mechanisms of Metabolic Cycles in Diapausing Flesh Fly by Metabolomics Approach Whole insect Flesh Fly University of Florida LC-MS
  logo