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

List of Studies ( Metabolite:3-Methyl-1-butylamine)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteUnits(range)
ST002247 AN003670 Microbiota and Health Study (Dhaka, Bangladesh) Feces Human Broad Institute of MIT and Harvard Abundances
ST002761 AN004489 Metabolic responses of normal rat kidneys to a high salt intake (Urine) Urine Rat Medical College of Wisconsin Area
ST000570 AN000878 Metabolome analysis of the cecal contents of GF mice and GF mice colonized with dominant gut microbes present in the ceca of neonatal and adult mice Feces Mouse Keio University nmol/g
ST001301 AN002166 Luminal metabolome profiles of human microbiota-associated (HMA) mice treated with anti-IL-22 antibody or control antibody Feces Mouse Bacterial infection University of Michigan nmol/g
ST002170 AN003555 Cecal metabolome of specific-pathogen-free mice fed with five distinct rodent diets with varying fiber content and source. Cecum Mouse Luxembourg Institute of Health nmol/g
ST002476 AN004077 High body temperature increases gut microbiota-dependent host resistance to influenza A virus and SARS-CoV-2 infection (Mouse) Intestine Mouse COVID-19 Keio University nmol/g
ST002476 AN004077 High body temperature increases gut microbiota-dependent host resistance to influenza A virus and SARS-CoV-2 infection (Mouse) Intestine Mouse Influenza Keio University nmol/g
ST003172 AN005206 Untargeted Metabolomic Profile Of Chili Pepper (Capsicum Chinensed) Developmental Cycle Capsicum Chinense Plant University of Alberta peak area
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 Peak area
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 raw intensity
ST002212 AN003616 Human fecal metabolome profiles under 3 different dietary terms Feces Human Keio University µmol/g
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