<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/ST002215/mwtab</Other></files><type>primary</type></body><statusCode>OK</statusCode><statusCodeValue>200</statusCodeValue></file_versions><scores/><additional><omics_type>Metabolomics</omics_type><technology_type>EI</technology_type><technology_type>Mass Spectrometry</technology_type><species>Aurantiochytrium Limacinum</species><full_dataset_link>http://www.metabolomicsworkbench.org/data/DRCCMetadata.php?Mode=Study&amp;StudyID=ST002215</full_dataset_link><study_factor>Treatment:Glycerol</study_factor><study_factor>Treatment:Glucose</study_factor><tissue>Cultured Cells</tissue><submitter_affiliation>International Centre for Genetic Engineering and Biotechnology</submitter_affiliation><sample_protocol>GC POSITIVE ION MODE.</sample_protocol><repository>MetabolomicsWorkbench</repository><metabolite_name>D-Fructose</metabolite_name><metabolite_name>L-Phenylalanine</metabolite_name><metabolite_name>Octadecanoic acid</metabolite_name><metabolite_name>L-Isoleucine</metabolite_name><metabolite_name>L-Threonine</metabolite_name><metabolite_name>L-Alanine</metabolite_name><metabolite_name>Malic acid</metabolite_name><metabolite_name>D-sorbitol</metabolite_name><metabolite_name>L-Leucine</metabolite_name><metabolite_name>Phosphoric acid</metabolite_name><metabolite_name>Squalene</metabolite_name><metabolite_name>Glycerol</metabolite_name><metabolite_name>L-Proline</metabolite_name><metabolite_name>Ribitol</metabolite_name><metabolite_name>L-Methionine</metabolite_name><metabolite_name>Octadecanedioic acid</metabolite_name><metabolite_name>Succinic acid</metabolite_name><metabolite_name>GABA</metabolite_name><metabolite_name>L-Aspartic acid</metabolite_name><metabolite_name>D-deoxyribose</metabolite_name><metabolite_name>DHA</metabolite_name><metabolite_name>Acetic acid</metabolite_name><metabolite_name>D-Arabinose</metabolite_name><metabolite_name>Glutamic acid</metabolite_name><metabolite_name>D-Glucose</metabolite_name><metabolite_name>Trehalose</metabolite_name><metabolite_name>Hexadecanoic acid</metabolite_name><metabolite_name>Butanoic acid</metabolite_name><metabolite_name>D-Tagatofuranose</metabolite_name><metabolite_name>Propanoic acid</metabolite_name><metabolite_name>D-Mannose</metabolite_name><metabolite_name>9-Octadecanoic acid</metabolite_name><metabolite_name>Docosanoic acid</metabolite_name><metabolite_name>D-Allose</metabolite_name><metabolite_name>Eicosanoic acid</metabolite_name><metabolite_name>Stigmasterol</metabolite_name><metabolite_name>L-Glycine</metabolite_name><metabolite_name>D-Erythrose</metabolite_name><metabolite_name>L-Tryptophan</metabolite_name><metabolite_name>Pentadecanoic acid</metabolite_name><metabolite_name>D-Galactose</metabolite_name><metabolite_name>5-Methyluridine</metabolite_name><metabolite_name>Myo-Inositol</metabolite_name><metabolite_name>XYLITOL</metabolite_name><metabolite_name>GLUTAMINIC ACID</metabolite_name><metabolite_name>Cholesterol</metabolite_name><metabolite_name>Citric acid</metabolite_name><metabolite_name>Propanedioic acid</metabolite_name><metabolite_name>O,O''-Trimethylsilyl-O'-stearoylglycerol</metabolite_name><metabolite_name>D-Ribose</metabolite_name><metabolite_name>5,6-Dimethyluracil</metabolite_name><metabolite_name>Fumaric acid</metabolite_name><metabolite_name>L-Tyrosine</metabolite_name><metabolite_name>Heptadecanoic acid</metabolite_name><metabolite_name>EPA</metabolite_name><metabolite_name>L-Serine</metabolite_name><metabolite_name>D-Lactic acid</metabolite_name><metabolite_name>L-Valine</metabolite_name><data_protocol></data_protocol><name_synonyms>gluco-hexose, Glyceritol, dental and eye anomalies, Mass Spectrometry Gas Chromatography, (beta-D)-Isomer, Effects, Gas Liquid Chromatography Mass Spectrometry, Glucose, Glyzerin, Glukose, number, Longterm Effect, Metabonomic, Gas-Liquid-Mass Spectrometry, Monohydrate, Metabonomics, (DL)-Isomer, Petty Laxova Wiedemann syndrome, patent ductus arteriosus, Spectrum Analysis, presence, Long Term, GCMS, count in organism, Glycerine, glycyl alcohol, Propanetriol, Spectrometry-Gas Chromatography, Long Term Effects, Dextrose, Trihydroxypropane, glycerol, Mass, hypertrichosis, 1, 2, Gas, Metabolomic, (alpha-D)-Isomer, Effect, Mass Spectrometry-Gas, Gas-Liquid Chromatography-Mass Spectrometry, D-Glucose, 3-Trihydroxypropane, Gro, Oelsuess, glycerine, Longterm, Gas Liquid Mass Spectrometry, Mass-Gas Chromatography, Glycerin, Spectrometry, Spectrometries, Long-Term, Gas Chromatography Mass Spectrometry, craniofacial dysostosis, Gas Chromatography-Mass, DL-glucose, Longterm Effects, Anhydrous Dextrose, glucose, Gas Mass Spectrometry, glycerolum, Gas-Liquid, Mass Gas Chromatography, D Glucose, hypoplasia of labia majora, Gas-Liquid Chromatography-Mass, Chromatography, Chromatography-Mass Spectrometry, Long-Term Effect, Gas-Mass Spectrometry, Glucose Monohydrate, Long-Term Effects, Anhydrous, 3-Propanetriol., Mass Spectrometry-Gas Chromatography, Glc</name_synonyms><sample_synonyms>iones., Ionen, ion, Ion, ions</sample_synonyms></additional><is_claimable>false</is_claimable><name>Time course GCMS based untargeted metabolomics in the presence of glucose and glycerol</name><description/><dates><publication></publication></dates><accession>ST002215</accession><cross_references><TAXONOMY>87102</TAXONOMY></cross_references></HashMap>