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

List of Studies ( Metabolite:Methylhistidine)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST004334 AN007238 Oxidative pentose phosphate pathway is required for T cell activation and anti-tumor immunity - PGD-knockout T-cells Mouse Cancer Princeton University LC-MS
ST004207 AN006997 Tumour sampling conditions perturb the metabolic landscape of clear cell renal cell carcinoma Kidney Human, Mouse Cancer University of Cambridge LC-MS
ST004182 AN006944 Metabolomics of ASCL1-high and ASCL1-low SCLC cells in mouse models Cultured cells Mouse Cancer CECAD Research Center LC-MS
ST004182 AN006945 Metabolomics of ASCL1-high and ASCL1-low SCLC cells in mouse models Cultured cells Mouse Cancer CECAD Research Center LC-MS
ST003973 AN006543 Trehalose catalytic shift inherently enhances phenotypic heterogeneity and multidrug resistance in Mycobacterium tuberculosis Bacterial cells Bacteria Tuberculosis University of Southern California LC-MS
ST003893 AN006395 Respiration defects limit serine synthesis required for lung cancer growth and survival - NSCLC rewires glycolytic metabolism to synthesize more serine from glucose (Tumors) Tumor tissue Mouse Cancer Rutgers University LC-MS
ST003893 AN006395 Respiration defects limit serine synthesis required for lung cancer growth and survival - NSCLC rewires glycolytic metabolism to synthesize more serine from glucose (Tumors) Tumor tissue Mouse Lung cancer Rutgers University LC-MS
ST003893 AN006396 Respiration defects limit serine synthesis required for lung cancer growth and survival - NSCLC rewires glycolytic metabolism to synthesize more serine from glucose (Tumors) Tumor tissue Mouse Cancer Rutgers University LC-MS
ST003893 AN006396 Respiration defects limit serine synthesis required for lung cancer growth and survival - NSCLC rewires glycolytic metabolism to synthesize more serine from glucose (Tumors) Tumor tissue Mouse Lung cancer Rutgers University LC-MS
ST003891 AN006393 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Plasma Blood Mouse Cancer Rutgers University LC-MS
ST003891 AN006393 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Plasma Blood Mouse Lung cancer Rutgers University LC-MS
ST003890 AN006390 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Liver Liver Mouse Cancer Rutgers University LC-MS
ST003890 AN006390 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Liver Liver Mouse Lung cancer Rutgers University LC-MS
ST003890 AN006391 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Liver Liver Mouse Cancer Rutgers University LC-MS
ST003890 AN006391 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Liver Liver Mouse Lung cancer Rutgers University LC-MS
ST003889 AN006388 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Lung Lung Mouse Cancer Rutgers University LC-MS
ST003889 AN006388 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Lung Lung Mouse Lung cancer Rutgers University LC-MS
ST003889 AN006389 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Lung Lung Mouse Cancer Rutgers University LC-MS
ST003889 AN006389 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Lung Lung Mouse Lung cancer Rutgers University LC-MS
ST003888 AN006386 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Muscle Muscle Mouse Cancer Rutgers University LC-MS
ST003888 AN006386 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Muscle Muscle Mouse Lung cancer Rutgers University LC-MS
ST003888 AN006387 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Muscle Muscle Mouse Cancer Rutgers University LC-MS
ST003888 AN006387 Respiration defects limit serine synthesis required for lung cancer growth and survival - Effect of Polg mutation in NSCLC Tissues_Muscle Muscle Mouse Lung cancer Rutgers University LC-MS
ST003813 AN006269 Sulfur Amino Acid Restriction Enhances Exercise Capacity in Mice by Boosting Fat Oxidation in Muscle - extensor digitorum longus (EDL) versus soleus (Sol) on Con and SAAR diet metabolomics Muscle Mouse Princeton University LC-MS
ST003813 AN006270 Sulfur Amino Acid Restriction Enhances Exercise Capacity in Mice by Boosting Fat Oxidation in Muscle - extensor digitorum longus (EDL) versus soleus (Sol) on Con and SAAR diet metabolomics Muscle 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 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
ST003812 AN006268 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 AN006268 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
ST003789 AN006229 Serum metabolomics of B16-OVA tumor-bearing mice fed chow or low and high fiber purified diets and treated with isotype control or anti-PD-1 antibody Blood Mouse Cancer Princeton University LC-MS
ST003635 AN005968 Intracellular and supernatant metabolomes of ferroptotic Pfa1 cells using HPLC-MS/MS Embryonic cells Mouse Cancer CECAD Research Center LC-MS
ST003065 AN005021 Investigative needle core biopsies for multi-omics in Glioblastoma Brain Human Cancer Brigham and Women's Hospital MALDI-MS
ST002841 AN004650 Collaborative role of YqgC and superoxide dismutase (MnSOD) in manganese intoxication: Replicate Experiment 2 Bacterial cells Bacillus subtilis Cornell University LC-MS
ST002840 AN004648 Collaborative role of YqgC and superoxide dismutase (MnSOD) in manganese intoxication: Replicate Experiment 1 Bacterial cells Bacillus subtilis Cornell University LC-MS
ST002813 AN004576 Effects of acute cold exposure on mouse metabolome BAT Mouse University of Pennsylvania LC-MS
ST002813 AN004576 Effects of acute cold exposure on mouse metabolome Blood Mouse University of Pennsylvania LC-MS
ST002813 AN004576 Effects of acute cold exposure on mouse metabolome Diaphragm Mouse University of Pennsylvania LC-MS
ST002813 AN004576 Effects of acute cold exposure on mouse metabolome gWAT Mouse University of Pennsylvania LC-MS
ST002813 AN004576 Effects of acute cold exposure on mouse metabolome Heart Mouse University of Pennsylvania LC-MS
ST002813 AN004576 Effects of acute cold exposure on mouse metabolome Liver Mouse University of Pennsylvania LC-MS
ST002813 AN004576 Effects of acute cold exposure on mouse metabolome Quadriceps Mouse University of Pennsylvania 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
ST002631 AN004303 MoTrPAC: Endurance exercise training study in young adult rats, Rat Plasma - Untargeted Lipidomics, Reversed-Phase Positive Blood Rat Georgia Institute of Technology LC-MS
ST002427 AN003950 Dansylated Human Plasma at Known Light-Heavy Mixing Ratios Blood Human University of North Carolina Greensboro LC-MS
ST002242 AN003660 Hypoxia promotes osteogenesis via regulating the acetyl-CoA-mediated mito-nuclear communication. Cultured cells Mouse CECAD Research Center LC-MS
ST002224 AN003633 Intracellular metabolic profile of renal cells cultured in Plasmax Cultured cells Human Cancer CECAD Research Center LC-MS
ST001692 AN002762 Perfluoroalkyl substances and lipid composition in human milk Breast milk Human Environmental exposure Icahn School of Medicine at Mount Sinai LC-MS
ST001320 AN002196 Examination of labeled glucose utilization in central carbon metabolism in HeLa cells post WNT stimulation Cultured cells Human Cancer University of California, Los Angeles LC-MS
ST001039 AN001712 Denver Asthma Panel Study-CHEAR Ancillary Study (part II) Urine Human Asthma Emory University LC-MS
ST001004 AN001714 Denver Asthma Panel Study-CHEAR Ancillary Study Blood Human Asthma Emory University LC-MS
ST000614 AN000939 Tobacco-specific carcinogens in Bladder Cancer Bladder Human Cancer Baylor College of Medicine LC-MS
  logo