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

List of Studies ( Metabolite:2-Methylthiazolidine)

Study_idAnalysis_idStudy_titleSourceSpeciesDiseaseInstituteUnits(range)
ST002701 AN004378 Mouse serum metabolomics Blood Mouse Chronic stress China Pharmaceutical University Abundance
ST002758 AN004475 Metabolic responses of normal rat kidneys to a high salt intake (Plasma) Blood Rat Medical College of Wisconsin Area
ST002758 AN004477 Metabolic responses of normal rat kidneys to a high salt intake (Plasma) Blood Rat Medical College of Wisconsin Area
ST002759 AN004479 Metabolic responses of normal rat kidneys to a high salt intake (Kidney cortex) Kidney cortex Rat Medical College of Wisconsin Area
ST002760 AN004483 Metabolic responses of normal rat kidneys to a high salt intake (Kidney outer medulla) Kidney outer medulla Rat Medical College of Wisconsin Area
ST002761 AN004487 Metabolic responses of normal rat kidneys to a high salt intake (Urine) Urine Rat Medical College of Wisconsin Area
ST002761 AN004489 Metabolic responses of normal rat kidneys to a high salt intake (Urine) Urine Rat Medical College of Wisconsin Area
ST002551 AN004200 Metabolomics dataset of CNTF induced axon regeneration in mice post optic nerve crush Eye tissue Mouse Eye disease University of Miami µg/ml
ST002111 AN003454 Metabolomics dataset of optogenetic axon regenerative mouse model post optic nerve crush Eye tissue Mouse Eye disease University of Miami µg/mL
ST002016 AN003284 Metabolomics of COVID patients Blood Human COVID-19 University of Virginia intensity
ST002444 AN003981 Zebrafish Optic Nerve Regeneration Metabolomics - 3 Days Post Crush Eye tissue Zebrafish Eye disease University of Miami normalized peak areas
ST000040 AN000060 Heatshock response of C. elegans using IROA (I) Worms C. elegans University of Florida Peak area
ST002776 AN004519 Zebrafish Optic Nerve Regeneration, Tectum Metabolomics - 3 Days Post Crush Eye tissue Zebrafish Eye disease University of Miami Peak Area
ST001304 AN002172 Multi-omics analysis delineates the distinct functions of sub-cellular acetyl-CoA pools in Toxoplasma gondii Fibroblast cells Toxoplasma gondii Parasitic infection Monash University Signal Intensity
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