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

List of Studies ( Metabolite:UDP-hexose)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST003779 AN006207 Overcoming resistance to immunotherapy by targeting CD38 in human tumor explants - Intracellular metabolomics of B7.H3 human CAR-T cells T-cells Human Cancer Massachusetts General Hospital LC-MS
ST003655 AN006005 Bacteria-derived 3-hydroxydodecanoic acid induces a potent anti-tumor immune response via GPR84 receptor Blood Human Cancer Universitätsspital Zürich MALDI-MS
ST003655 AN006005 Bacteria-derived 3-hydroxydodecanoic acid induces a potent anti-tumor immune response via GPR84 receptor Blood Mouse Cancer Universitätsspital Zürich MALDI-MS
ST003555 AN005844 Mitochondrial dysfunction is a driver of cardiac complications in PGM1-CDG with implications for therapy Stem cells Human Genetic disease Mayo Clinic LC-MS
ST003499 AN005743 Metabolic analysis of ADSL deficiency patients' EBV-LCLs. Blood Human Mitochondrial disease Catholic University of the Sacred Heart LC-MS
ST003499 AN005744 Metabolic analysis of ADSL deficiency patients' EBV-LCLs. Blood Human Mitochondrial disease Catholic University of the Sacred Heart LC-MS
ST003121 AN005115 Metabolomic profiling of ALG13-CDG brain organoids Brain organoids Human Genetic disease Mayo Clinic LC-MS
ST002913 AN004783 Polar metabolite levels in K562 cells following folate depletion Cultured cells Human Anemia Boston Children's Hospital, Harvard Medical School LC-MS
ST002912 AN004782 Polar metabolite levels in MEL cells following folate depletion Cultured cells Mouse Anemia Boston Children's Hospital, Harvard Medical School LC-MS
ST002841 AN004649 Collaborative role of YqgC and superoxide dismutase (MnSOD) in manganese intoxication: Replicate Experiment 2 Bacterial cells Bacillus subtilis Cornell University LC-MS
ST002840 AN004647 Collaborative role of YqgC and superoxide dismutase (MnSOD) in manganese intoxication: Replicate Experiment 1 Bacterial cells Bacillus subtilis Cornell University LC-MS
ST002831 AN004624 Folate depletion upregulates heme synthesis Cultured cells Human Anemia Boston Children's Hospital, Harvard Medical School LC-MS
ST002791 AN004541 Nucleotide metabolism in pancreatic cancer cells Cultured cells Mouse Cancer VIB-KU Leuven LC-MS
ST002736 AN004438 Assessing mitochondrial bioenergetics in coronary artery disease: A translational multiomic tissue study in humans (The AMBITION study). Heart Human Cardiovascular disease Imperial College London LC-MS
ST002708 AN004390 Levels of central carbon metabolites in choroid plexus as part of natural diurnal variation Brain Mouse Circadian Rhythm Disorder Boston Children's Hospital LC-MS
ST001975 AN003223 Anti-oxidative metabolism measurement in mammalian cells and tissues by quantitative LC/MS method (II) Cerebrospinal fluid Mouse Cancer Boston Children's Hospital, Harvard Medical School LC-MS
ST001974 AN003222 Anti-oxidative metabolism measurement in mammalian cells and tissues by quantitative LC/MS method (I) Cerebrospinal fluid Mouse Cancer Boston Children's Hospital, Harvard Medical School LC-MS
ST001953 AN003178 Identifying metabolite changes in human islets treated with Phospho-BAD mimicry and Inflammatory cytokines Cultured cells Human Diabetes Harvard University MS(Dir. Inf.)
ST001772 AN002879 Optimization of redox metabolite detection in mammalian cells (part II) Cultured cells Human Boston Children's Hospital, Harvard Medical School LC-MS
ST001771 AN002878 Application of the redox metabolite detection method for profiling redox state following pharmacologic perturbations of redox balance in cells (part III) Cultured cells Human Boston Children's Hospital, Harvard Medical School LC-MS
ST001770 AN002877 Application of the redox metabolite detection method for profiling redox state following pharmacologic perturbations of redox balance in cells (part II) Cultured cells Human Boston Children's Hospital, Harvard Medical School LC-MS
ST001769 AN002876 Application of the redox metabolite detection method for profiling redox state following pharmacologic perturbations of redox balance in cells (part I) Cultured cells Human Boston Children's Hospital, Harvard Medical School LC-MS
ST001768 AN002875 Application of the redox metabolite detection method for mammalian tissues (part III) Kidney Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001768 AN002875 Application of the redox metabolite detection method for mammalian tissues (part III) Liver Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001767 AN002874 Application of the redox metabolite detection method for mammalian tissues (part II) Kidney Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001767 AN002874 Application of the redox metabolite detection method for mammalian tissues (part II) Liver Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001766 AN002873 Application of the redox metabolite detection method for mammalian tissues (part I) Kidney Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001766 AN002873 Application of the redox metabolite detection method for mammalian tissues (part I) Liver Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001765 AN002872 Optimization of redox metabolite detection in mammalian cells (part I) Cultured cells Human Boston Children's Hospital, Harvard Medical School LC-MS
ST001764 AN002871 Application of the redox metabolite detection method for profiling redox state following pharmacologic perturbation with methotrexate Cultured cells Human Boston Children's Hospital, Harvard Medical School LC-MS
ST001763 AN002870 Application of the redox metabolite detection method for mouse liver (part II) Liver Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001762 AN002869 Application of the redox metabolite detection method for mouse kidney (part II) Kidney Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001760 AN002867 Application of the redox metabolite detection method for mouse kidney Kidney Mouse Boston Children's Hospital, Harvard Medical School LC-MS
ST001759 AN002866 Application of the redox metabolite detection method for mouse liver Liver Mouse Boston Children's Hospital, Harvard Medical School LC-MS
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