<HashMap><database>MetabolomicsWorkbench</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Other>http://www.metabolomicsworkbench.org/rest/study/study_id/ST000222/mwtab</Other></files><type>primary</type></body><statusCode>OK</statusCode><statusCodeValue>200</statusCodeValue></file_versions><scores/><additional><omics_type>Metabolomics</omics_type><technology_type>Mass Spectrometry</technology_type><technology_type>ESI</technology_type><species>Mus Musculus</species><full_dataset_link>http://www.metabolomicsworkbench.org/data/DRCCMetadata.php?Mode=Study&amp;StudyID=ST000222</full_dataset_link><study_factor>Diet:control</study_factor><study_factor>Diet:malnourished</study_factor><tissue>Feces</tissue><submitter_affiliation>University of Victoria</submitter_affiliation><sample_protocol>ESI negative ion mode.</sample_protocol><repository>MetabolomicsWorkbench</repository><metabolite_name>7-Ketodeoxycholic acid</metabolite_name><metabolite_name>Isolithocholic acid</metabolite_name><metabolite_name>Ursocholic acid</metabolite_name><metabolite_name>Taurohyocholic acid (tauro-?-MCA)</metabolite_name><metabolite_name>Taurohyodeoxycholic acid</metabolite_name><metabolite_name>b-Muricholic acid</metabolite_name><metabolite_name>Cholic acid</metabolite_name><metabolite_name>Glycocholic acid</metabolite_name><metabolite_name>Lithocholic acid</metabolite_name><metabolite_name>Taurodeoxycholic acid</metabolite_name><metabolite_name>Ursodeoxycholic acid</metabolite_name><metabolite_name>3-Oxocholic acid</metabolite_name><metabolite_name>Tauro-b-muricholic acid</metabolite_name><metabolite_name>Dehydrolithocholic acid</metabolite_name><metabolite_name>w-Muricholic acid</metabolite_name><metabolite_name>12-Ketochenodeoxycholic acid</metabolite_name><metabolite_name>Murocholic acid</metabolite_name><metabolite_name>Taurocholic acid</metabolite_name><metabolite_name>Taurolithocholic acid</metabolite_name><metabolite_name>7-Ketolithocholic acid</metabolite_name><metabolite_name>a-Muricholic acid</metabolite_name><metabolite_name>Allocholic acid</metabolite_name><metabolite_name>Glycochenodeoxycholic acid</metabolite_name><metabolite_name>Tauro-w-muricholic acid</metabolite_name><metabolite_name>Taurochenodexycholic acid</metabolite_name><metabolite_name>Deoxycholic acid</metabolite_name><metabolite_name>Hyodeoxycholic acid</metabolite_name><metabolite_name>Tauroursodexycholic acid</metabolite_name><metabolite_name>Dioxolithocholic acid</metabolite_name><metabolite_name>lam-MCA hyocholic acid</metabolite_name><metabolite_name>7-12-Ketolithocholic acid</metabolite_name><metabolite_name>Chenodeoxycholic acid</metabolite_name><metabolite_name>Tauro-a-muricholic acid</metabolite_name><data_protocol></data_protocol><name_synonyms>Bile Acid, Salts, 3.4.22.-, Bile Acids, Controlling, preventive therapy, Laboratory, nutritional deficiency disease, Mus domesticus, CASP14, mouse, Bile Salts, Bile Salt, Metabonomic, bile acids, mini-ICE, Metabonomics, CASP-14, House Mouse, bile salts, prevention, Small, Bile salt, House, Mus, Mini-ICE, malnutrition, Mus musculus domesticus, Metabolomic, small intestine, prevention and control, Mice, 5beta-bile acid, Mus musculus., Bile, Acid, Mus musculus, mid intestine, reference sample, Caspase-14 subunit p10, Swiss, Gallensaeuren, prophylaxis, mice, Salt, Swiss Mouse, Small Intestines, House Mice, Swiss Mice, Bile acid, Caspase-14 subunit p19, MICE, Gallensaeure, small bowel, Laboratory Mice, domesticus, intestinum tenue, preventive measures, Intestines, anterior intestine, 5beta-bile acids, control, Acids, Mouse, malnourished, Laboratory Mouse, Controlled, Small Intestine</name_synonyms><sample_synonyms>WFDC14., WAP3, ESI</sample_synonyms></additional><is_claimable>false</is_claimable><name>Bile acid targeted metabolomics of the small intestine in malnourished and control mice</name><description/><dates><publication></publication></dates><accession>ST000222</accession><cross_references><TAXONOMY>10090</TAXONOMY></cross_references></HashMap>