<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/ST001390/mwtab</Other></files><type>primary</type></body><statusCodeValue>200</statusCodeValue><statusCode>OK</statusCode></file_versions><scores/><additional><technology_type>NMR</technology_type><disease>Sepsis</disease><full_dataset_link>http://www.metabolomicsworkbench.org/data/DRCCMetadata.php?Mode=Study&amp;StudyID=ST001390</full_dataset_link><study_factor>Timepoint:-</study_factor><study_factor>Timepoint:6</study_factor><study_factor>Timepoint:12</study_factor><tissue>Blood</tissue><sample_protocol>NMR data.</sample_protocol><repository>MetabolomicsWorkbench</repository><data_protocol></data_protocol><omics_type>Metabolomics</omics_type><species>Sus Scrofa</species><submitter_affiliation>University of Michigan</submitter_affiliation><metabolite_name>Taurine</metabolite_name><metabolite_name>Glutamic acid</metabolite_name><metabolite_name>Malonic acid</metabolite_name><metabolite_name>Trimethylamine N-oxide</metabolite_name><metabolite_name>Hippuric acid</metabolite_name><metabolite_name>Serine</metabolite_name><metabolite_name>Proline</metabolite_name><metabolite_name>Pyruvic acid</metabolite_name><metabolite_name>Leucine</metabolite_name><metabolite_name>Glucose</metabolite_name><metabolite_name>Creatine</metabolite_name><metabolite_name>Glycine</metabolite_name><metabolite_name>ADP</metabolite_name><metabolite_name>Histidine</metabolite_name><metabolite_name>Betaine</metabolite_name><metabolite_name>Dimethyl sulfone</metabolite_name><metabolite_name>2-Hydroxybutyric acid</metabolite_name><metabolite_name>Ketoleucine</metabolite_name><metabolite_name>Isoleucine</metabolite_name><metabolite_name>Glutathione</metabolite_name><metabolite_name>Creatinine</metabolite_name><metabolite_name>Tyrosine</metabolite_name><metabolite_name>Alanine</metabolite_name><metabolite_name>Phenylalanine</metabolite_name><metabolite_name>Threonine</metabolite_name><metabolite_name>AMP</metabolite_name><metabolite_name>Methionine</metabolite_name><metabolite_name>Aminoadipic acid</metabolite_name><metabolite_name>CAR(2:0)</metabolite_name><metabolite_name>IMP</metabolite_name><metabolite_name>Carnitine</metabolite_name><metabolite_name>Lysine</metabolite_name><metabolite_name>Valine</metabolite_name><metabolite_name>Choline</metabolite_name><metabolite_name>Hypoxanthine</metabolite_name><metabolite_name>Lactic acid</metabolite_name><metabolite_name>Ornithine</metabolite_name><metabolite_name>ATP</metabolite_name><metabolite_name>Glutamine</metabolite_name><name_synonyms>Pigs, Warthogs, Hog, Wart, Suidae, pigs &lt;Sus scrofa>, Phacochoerus, Sus scrofus., History, Natural, Uropathogenic E. coli, pig, swine, Hogs, pigs, Wart Hog, wild boar, Wart Hogs</name_synonyms></additional><is_claimable>false</is_claimable><name>Natural history of the systemic responses to a renal inoculation of uropathogenic E. coli in swine</name><description/><dates><publication></publication></dates><accession>ST001390</accession><cross_references><TAXONOMY>9823</TAXONOMY></cross_references></HashMap>