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

List of Studies ( Metabolite:Midodrine)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteAnalysis Type
ST004389 AN007332 Longitudinal Multi-omics Profiling Reveals Different Adaptation to Heat Stress in Genomically Divergent Lactating Sows Feces Pig Environmental stress North Carolina State University LC-MS
ST004389 AN007332 Longitudinal Multi-omics Profiling Reveals Different Adaptation to Heat Stress in Genomically Divergent Lactating Sows Milk Pig Environmental stress North Carolina State University LC-MS
ST004350 AN007262 The metabolic effects of succinylation and desuccinylation of HADHB at lysine 292 Cultured cells Rat Nanchang University Second Affiliated Hospital LC-MS
ST004227 AN007036 Comparative untargeted metabolomics analysis the wheat grains in cultivars zhengmai 7698 and zhoumai 22 Seeds Wheat Henan Academy of Agricultural Sciences LC-MS
ST004153 AN006894 Multi-omics Study of Small Intestine Adaptation After Total Colectomy in a Rat model Feces Rat Shanghai Jiao Tong University LC-MS
ST003880 AN006373 Untargeted metabolome analysis of control and disease intervertebral disc tissue Tissue Human Bone disease Ganga Orthopaedic Research and Education Foundation LC-MS
ST003768 AN006185 The Chromosome-Scale Assembly and Multi-Omics Analysis Reveal Adaptive Evolution and Nitrogen Utilization Mechanisms in Edible Grass Leaf Grass Hunan Agricultural University LC-MS
ST003768 AN006185 The Chromosome-Scale Assembly and Multi-Omics Analysis Reveal Adaptive Evolution and Nitrogen Utilization Mechanisms in Edible Grass Roots Grass Hunan Agricultural University LC-MS
ST003768 AN006186 The Chromosome-Scale Assembly and Multi-Omics Analysis Reveal Adaptive Evolution and Nitrogen Utilization Mechanisms in Edible Grass Leaf Grass Hunan Agricultural University LC-MS
ST003768 AN006186 The Chromosome-Scale Assembly and Multi-Omics Analysis Reveal Adaptive Evolution and Nitrogen Utilization Mechanisms in Edible Grass Roots Grass Hunan Agricultural University LC-MS
ST003085 AN005044 Metabolome changes in embryonic CSF (Part 7) Cerebrospinal fluid Mouse Autism Boston Children's Hospital, Harvard Medical School LC-MS
ST003084 AN005042 Metabolic changes in embryonic CSF (Part 6) Cerebrospinal fluid Mouse Autism Boston Children's Hospital, Harvard Medical School LC-MS
ST003002 AN004930 The role of gut microbiota in muscle mitochondria function, colon health, and sarcopenia: from clinical to bench (2) Feces Human Sarcopenia Chinese University of Hong Kong GC-MS/LC-MS
ST002405 AN003919 Stool global metabolite levels in peanut allergy (Part 2) Feces Human Peanut allergy Icahn School of Medicine at Mount Sinai LC-MS
ST002307 AN003769 Metabolomics profiling of the secondary fractions 4 of bacterial culture supernatants. Bacterial cells Bacillus megaterium Myalgic encephalomyelitis/chronic fatigue syndrome University of Connecticut LC-MS
ST002307 AN003769 Metabolomics profiling of the secondary fractions 4 of bacterial culture supernatants. Bacterial cells Enterococcus faecium Myalgic encephalomyelitis/chronic fatigue syndrome University of Connecticut LC-MS
ST002094 AN003420 Commensal intestinal microbiota regulates host luminal proteolytic activity and intestinal barrier integrity through β-glucuronidase activity (Part 1) Feces Human Irritable bowel syndrome Mayo Clinic LC-MS
ST002094 AN003421 Commensal intestinal microbiota regulates host luminal proteolytic activity and intestinal barrier integrity through β-glucuronidase activity (Part 1) Feces Human Irritable bowel syndrome Mayo Clinic LC-MS
ST001781 AN002892 Identifying Candidate Differential Metabolites in lethal chlorpromazine poisoning Relative to non-drug related deaths (part III) Blood Mouse Hebei medical university LC-MS
ST001658 AN002707 Control of Topoisomerase II Activity and Chemotherapeutic Inhibition by TCA Cycle Metabolites Yeast cells Saccharomyces cerevisiae Cancer Johns Hopkins University LC-MS
ST001658 AN002708 Control of Topoisomerase II Activity and Chemotherapeutic Inhibition by TCA Cycle Metabolites Yeast cells Saccharomyces cerevisiae Cancer Johns Hopkins University LC-MS
ST000291 AN000464 LC-MS Based Approaches to Investigate Metabolomic Differences in the Urine of Young Women after Drinking Cranberry Juice or Apple Juice Urine Human University of Florida LC-MS
ST000291 AN000465 LC-MS Based Approaches to Investigate Metabolomic Differences in the Urine of Young Women after Drinking Cranberry Juice or Apple Juice Urine Human University of Florida LC-MS
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