{
"METABOLOMICS WORKBENCH":{"STUDY_ID":"ST002189","ANALYSIS_ID":"AN003583","VERSION":"1","CREATED_ON":"June 6, 2022, 9:19 pm"},

"PROJECT":{"PROJECT_TITLE":"Metabolomic profiling reveals muscle metabolic changes following iliac arteriovenous fistula creation in mice","PROJECT_TYPE":"Study of the skeletal muscle metabolome in mice with iliac arteriovenous fistula via 1H NMR","PROJECT_SUMMARY":"In the present study, we hypothesize that the creation of an iliac AVF would result in significant alterations to the limb muscle metabolome. Recently, our group developed a new murine model to address the pathophysiology of access-related hand dysfunction (ARHD) in mice, where AVF creation is performed in the iliac artery/vein. Because of the anatomical location of the AVF creation, this model produces clinically relevant changes in the mouse hindlimb including hemodynamic alterations, muscle weakness, and mitochondrial function impairment.","INSTITUTE":"University of Florida","DEPARTMENT":"Applied Physiology and Kinesiology","LABORATORY":"Rm 42 and Rm 43","LAST_NAME":"Ryan","FIRST_NAME":"Terence","ADDRESS":"1864 Stadium Rd, FLG 114, Gainesville, FL, 32611, USA","EMAIL":"ryant@ufl.edu","PHONE":"352-294-1700","FUNDING_SOURCE":"National Institutes of Health (NIH) grant R01HL148597 (STS). Additional salary support was provided by NIH grants R01DK119274 (SAB) and R01HL149704 (TER), and a postdoctoral fellowship (POST903198) from the American Heart Association (KK).","PROJECT_COMMENTS":"Metabolomic study via NMR","PUBLICATIONS":"Frontiers","CONTRIBUTORS":"Ram B. Khattri, Kyoungrae Kim, Erik M. Anderson, Brian Fazzone, Kenneth C Harland, Qiongyao Hu, Victoria R. Palzkill, Tomas A. Cort, Kerri A. O’Malle, Scott A. Berceli, Terence E. Ryan, Salvatore T. Scali"},

"STUDY":{"STUDY_TITLE":"Metabolomic profiling reveals muscle metabolic changes following iliac arteriovenous fistula creation in mice (Aqueous)","STUDY_SUMMARY":"In the present study, we hypothesize that the creation of an iliac AVF would result in significant alterations to the limb muscle metabolome. Recently, our group developed a new murine model to address the pathophysiology of access-related hand dysfunction (ARHD) in mice, where AVF creation is performed in the iliac artery/vein. Because of the anatomical location of the AVF creation, this model produces clinically relevant changes in the mouse hindlimb including hemodynamic alterations, muscle weakness, and mitochondrial function impairment.","INSTITUTE":"University of Florida","DEPARTMENT":"Applied Physiology and Kinesiology","LABORATORY":"Rm 42 and Rm 43","LAST_NAME":"Ryan","FIRST_NAME":"Terence","ADDRESS":"1864 Stadium Rd, FLG 114, Gainesville, FL, 32611, USA","EMAIL":"ryant@ufl.edu","NUM_GROUPS":"4","TOTAL_SUBJECTS":"34","NUM_MALES":"All","STUDY_COMMENTS":"Metabolomic study via NMR","PUBLICATIONS":"Frontiers","STUDY_TYPE":"Study of the skeletal muscle metabolome in mice with iliac arteriovenous fistula via 1H NMR","PHONE":"352-294-1700"},

"SUBJECT":{"SUBJECT_TYPE":"Mammal","SUBJECT_SPECIES":"Mus musculus","GENOTYPE_STRAIN":"C57BL/6J","AGE_OR_AGE_RANGE":"13 weeks","WEIGHT_OR_WEIGHT_RANGE":"(28.4±1.1 g (control SHAM mice) vs 26.4±2.1 g (control AVF mice) vs 23.6±2.1 (CKD SHAM mice) vs 24.7±1.3 (CKD AVF mice), N=8-10/group).","GENDER":"Male","ANIMAL_ANIMAL_SUPPLIER":"Jackson Labs (Stock # 000664)","ANIMAL_HOUSING":"Housed in a temperature of 22 oC","ANIMAL_LIGHT_CYCLE":"12-hour light/12-hour dark","ANIMAL_FEED":"Ad libitum (Casein control diet vs. adenine-supplemented diet to induce CKD)","ANIMAL_WATER":"free access to food and water (3-5 animals per cage).","ANIMAL_INCLUSION_CRITERIA":"(3-5 animals per cage)."},
"SUBJECT_SAMPLE_FACTORS":[
{
"Subject ID":"-",
"Sample ID":"Sample name",
"Factors":{"Factor1***":"Group"},
"Additional sample data":{"RAW_FILE_NAME":"raw data file names"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS18_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS18_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS26_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS26_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS27_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS27_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS28_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS28_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS29_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS29_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS30_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS30_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS36_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS36_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS37_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS37_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS39_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS39_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS40_Quad_Aq",
"Factors":{"Factor1***":"CKD_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS40_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS6_Quad_Aq",
"Factors":{"Factor1***":"CKD_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS6_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS7_Quad_Aq",
"Factors":{"Factor1***":"CKD_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS7_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS8_Quad_Aq",
"Factors":{"Factor1***":"CKD_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS8_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS9_Quad_Aq",
"Factors":{"Factor1***":"CKD_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS9_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS10_Quad_Aq",
"Factors":{"Factor1***":"CKD_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS10_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS16_Quad_Aq",
"Factors":{"Factor1***":"CKD_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS16_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS17_Quad_Aq",
"Factors":{"Factor1***":"CKD_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS17_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS20_Quad_Aq",
"Factors":{"Factor1***":"CKD_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS20_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS14_Quad_Aq",
"Factors":{"Factor1***":"CON_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS14_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS22_Quad_Aq",
"Factors":{"Factor1***":"CON_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS22_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS23_Quad_Aq",
"Factors":{"Factor1***":"CON_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS23_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS24_Quad_Aq",
"Factors":{"Factor1***":"CON_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS24_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS25_Quad_Aq",
"Factors":{"Factor1***":"CON_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS25_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS32_Quad_Aq",
"Factors":{"Factor1***":"CON_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS32_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS33_Quad_Aq",
"Factors":{"Factor1***":"CON_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS33_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS35_Quad_Aq",
"Factors":{"Factor1***":"CON_AVF"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS35_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS1_Quad_Aq",
"Factors":{"Factor1***":"CON_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS1_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS2_Quad_Aq",
"Factors":{"Factor1***":"CON_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS2_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS3_Quad_Aq",
"Factors":{"Factor1***":"CON_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS3_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS4_Quad_Aq",
"Factors":{"Factor1***":"CON_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS4_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS5_Quad_Aq",
"Factors":{"Factor1***":"CON_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS5_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS11_Quad_Aq",
"Factors":{"Factor1***":"CON_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS11_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS12_Quad_Aq",
"Factors":{"Factor1***":"CON_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS12_Quad_Aq.raw"}
},
{
"Subject ID":"-",
"Sample ID":"Terence_MS15_Quad_Aq",
"Factors":{"Factor1***":"CON_SHAM"},
"Additional sample data":{"RAW_FILE_NAME":"Terence_MS15_Quad_Aq.raw"}
}
],
"COLLECTION":{"COLLECTION_SUMMARY":"Two weeks after surgery, mice were anesthetized using isoflurane and the left quadriceps muscle was rapidly dissected and immediately frozen in liquid nitrogen and stored at -80oC for metabolite extraction. Euthanasia was carried out by thoracotomy followed by cervical dislocation.","SAMPLE_TYPE":"Muscle","COLLECTION_METHOD":"While under isoflurane anesthesia, tissues were rapidly dissected and snap frozen in liquid nitrogen and stored at -80°C until metabolite extraction","COLLECTION_LOCATION":"University of Florida, Applied Physiology and Kinesiology, 1864 stadium RD, Gainesville, FL 32611","STORAGE_CONDITIONS":"-80℃","STORAGE_VIALS":"cryovials"},

"TREATMENT":{"TREATMENT_SUMMARY":"Briefly, mice were acclimated to a standard casein-based chow (Control Diet) for 7 days. Thereafter, the animals were randomly assign to either remain on Control Diet (non-CKD groups) or receive adenine-supplemented diet to induce CKD. Following three weeks of the casein/adenine diet, animals were randomly assigned to receive either an arteriovenous fistula surgery (AVF) or sham surgery (SHAM)","ANIMAL_VET_TREATMENTS":"none","ANIMAL_ANESTHESIA":"isoflurane","ANIMAL_FASTING":"non-fasted","ANIMAL_ENDP_EUTHANASIA":"Euthanasia was carried out by thoracotomy followed by cervical dislocation.","ANIMAL_ENDP_TISSUE_COLL_LIST":"Skeletal muscle (quadriceps)"},

"SAMPLEPREP":{"SAMPLEPREP_SUMMARY":"Weights of frozen quadriceps specimens were weighed using a microbalance (Mettler-Toledo, Columbus, OH, USA). Next, a slightly modified FOLCH extraction was performed to extract aqueous and lipid phase metabolites. The aqueous phase was lyophilized overnight (Labconco Corporation, Kansas, MO, USA) and the lipid phase was dried by passing inert nitrogen gas. The resulting aqueous and lipid phase dry powders were stored at -80oC until analysis using nuclear magnetic resonance (NMR). The dry powder of aqueous phase samples was dissolved in 50 µL of phosphate buffer system (50 mM, pH 7.2) consisting of 0.5 mM D6-DSS, 2 mM EDTA and 0.2% NaN2. Lipid phase dry powders were dissolved in 70 µL of CDCl3 supplemented with 10 mM of pyrazine (as internal NMR standard). All samples were loaded into 1.5 mm optical density (O.D.) NMR tubes.","SAMPLEPREP_PROTOCOL_FILENAME":"AVF_NMR_Aqueous_Phase_Procedures.docx","PROCESSING_METHOD":"Lyophilization and Homogenization","PROCESSING_STORAGE_CONDITIONS":"-80℃","EXTRACTION_METHOD":"Modified FOLCH extraction","EXTRACT_STORAGE":"-80℃","SAMPLE_RESUSPENSION":"In 50 microliter of 50 mM phosphate buffer (pH 7.2) with 2 mM EDTA, 0.5 mM DSS and 0.2% sodium azide for aqueous phase samples.","SAMPLE_SPIKING":"0.5 mM of DSS for aqueous phase samples"},

"ANALYSIS":{"DATA_FORMAT":"fid, 1r"},

"NM":{"INSTRUMENT_NAME":"Bruker Avance III Cryo800 MHz 54 mm","INSTRUMENT_TYPE":"FT-NMR","NMR_EXPERIMENT_TYPE":"1D-1H","FIELD_FREQUENCY_LOCK":"Deuterium","STANDARD_CONCENTRATION":"0.5 mM DSS","SPECTROMETER_FREQUENCY":"799.9","NMR_PROBE":"CP TXI CryoProbe","NMR_SOLVENT":"Phosphate buffer (pH 7.2) + 2 mM EDTA + 0.5 mM DSS + 0.2% of sodium azide in deuterated environment","NMR_TUBE_SIZE":"1.5 mm O.D.","SHIMMING_METHOD":"Topshim","PULSE_SEQUENCE":"noesypr1d","WATER_SUPPRESSION":"presat","PULSE_WIDTH":"90-degree","RECEIVER_GAIN":"645","OFFSET_FREQUENCY":"2827.31 Hz","CHEMICAL_SHIFT_REF_CPD":"DSS (4,4-dimethyl-4-silapentane-1-sulfonic acid)","TEMPERATURE":"25 o C","NUMBER_OF_SCANS":"128 scans","DUMMY_SCANS":"8","ACQUISITION_TIME":"4 s","RELAXATION_DELAY":"1 s","SPECTRAL_WIDTH":"9523.8","NUM_DATA_POINTS_ACQUIRED":"38094","REAL_DATA_POINTS":"65536","LINE_BROADENING":"0.22 Hz","ZERO_FILLING":"65,536 points","APODIZATION":"Exponential","BASELINE_CORRECTION_METHOD":"Spline","CHEMICAL_SHIFT_REF_STD":"0 ppm for DSS","BINNED_INCREMENT":"None","BINNED_DATA_EXCLUDED_RANGE":"None"},

"NMR_METABOLITE_DATA":{
"Units":"mM",

"Data":[{"Metabolite":"Pantothenate","Terence_MS18_Quad_Aq":"0.147614587","Terence_MS26_Quad_Aq":"0.062956381","Terence_MS27_Quad_Aq":"0.045346893","Terence_MS28_Quad_Aq":"0.15496874","Terence_MS29_Quad_Aq":"0.397136628","Terence_MS30_Quad_Aq":"0.05171417","Terence_MS36_Quad_Aq":"0.047917031","Terence_MS37_Quad_Aq":"0.132597992","Terence_MS39_Quad_Aq":"0.059493037","Terence_MS40_Quad_Aq":"0.144314116","Terence_MS6_Quad_Aq":"0.095655435","Terence_MS7_Quad_Aq":"0.089369786","Terence_MS8_Quad_Aq":"0.099786651","Terence_MS9_Quad_Aq":"0.07701208","Terence_MS10_Quad_Aq":"0.061492029","Terence_MS16_Quad_Aq":"0.085406942","Terence_MS17_Quad_Aq":"0.080973615","Terence_MS20_Quad_Aq":"0.103125671","Terence_MS14_Quad_Aq":"0.09067473","Terence_MS22_Quad_Aq":"0.080115363","Terence_MS23_Quad_Aq":"0.083487008","Terence_MS24_Quad_Aq":"0.145692862","Terence_MS25_Quad_Aq":"0.095122264","Terence_MS32_Quad_Aq":"0.060711366","Terence_MS33_Quad_Aq":"0.166091917","Terence_MS35_Quad_Aq":"0.166227512","Terence_MS1_Quad_Aq":"0.113435281","Terence_MS2_Quad_Aq":"0.067630562","Terence_MS3_Quad_Aq":"0.08816326","Terence_MS4_Quad_Aq":"0.069888029","Terence_MS5_Quad_Aq":"0.103938504","Terence_MS11_Quad_Aq":"0.072662072","Terence_MS12_Quad_Aq":"0.055797286","Terence_MS15_Quad_Aq":"0.090198272"},{"Metabolite":"2-Hydroxyvalerate","Terence_MS18_Quad_Aq":"0.382704485","Terence_MS26_Quad_Aq":"0.209371068","Terence_MS27_Quad_Aq":"0.152141547","Terence_MS28_Quad_Aq":"0.181964023","Terence_MS29_Quad_Aq":"0.318473027","Terence_MS30_Quad_Aq":"0.17309551","Terence_MS36_Quad_Aq":"0.144459228","Terence_MS37_Quad_Aq":"0.270049649","Terence_MS39_Quad_Aq":"0.182835056","Terence_MS40_Quad_Aq":"0.338565127","Terence_MS6_Quad_Aq":"0.286216065","Terence_MS7_Quad_Aq":"0.231208284","Terence_MS8_Quad_Aq":"0.271939241","Terence_MS9_Quad_Aq":"0.245547846","Terence_MS10_Quad_Aq":"0.216529649","Terence_MS16_Quad_Aq":"0.270612894","Terence_MS17_Quad_Aq":"0.256796118","Terence_MS20_Quad_Aq":"0.311756133","Terence_MS14_Quad_Aq":"0.317490353","Terence_MS22_Quad_Aq":"0.280566829","Terence_MS23_Quad_Aq":"0.16326614","Terence_MS24_Quad_Aq":"0.248811568","Terence_MS25_Quad_Aq":"0.260610011","Terence_MS32_Quad_Aq":"0.198973748","Terence_MS33_Quad_Aq":"0.397808479","Terence_MS35_Quad_Aq":"0.535880299","Terence_MS1_Quad_Aq":"0.372297405","Terence_MS2_Quad_Aq":"0.238737818","Terence_MS3_Quad_Aq":"0.287999981","Terence_MS4_Quad_Aq":"0.244030514","Terence_MS5_Quad_Aq":"0.329219167","Terence_MS11_Quad_Aq":"0.236125058","Terence_MS12_Quad_Aq":"0.180165496","Terence_MS15_Quad_Aq":"0.296596306"},{"Metabolite":"Anserine","Terence_MS18_Quad_Aq":"1.717553431","Terence_MS26_Quad_Aq":"3.265898535","Terence_MS27_Quad_Aq":"2.177195322","Terence_MS28_Quad_Aq":"2.003411471","Terence_MS29_Quad_Aq":"2.153447908","Terence_MS30_Quad_Aq":"4.056027367","Terence_MS36_Quad_Aq":"3.03399785","Terence_MS37_Quad_Aq":"1.856475159","Terence_MS39_Quad_Aq":"3.85271863","Terence_MS40_Quad_Aq":"1.462086778","Terence_MS6_Quad_Aq":"4.905060638","Terence_MS7_Quad_Aq":"3.387864429","Terence_MS8_Quad_Aq":"5.042112265","Terence_MS9_Quad_Aq":"4.265406033","Terence_MS10_Quad_Aq":"3.879003882","Terence_MS16_Quad_Aq":"3.704119045","Terence_MS17_Quad_Aq":"4.301334979","Terence_MS20_Quad_Aq":"5.291069827","Terence_MS14_Quad_Aq":"3.990589699","Terence_MS22_Quad_Aq":"2.958615799","Terence_MS23_Quad_Aq":"2.216352796","Terence_MS24_Quad_Aq":"2.819904636","Terence_MS25_Quad_Aq":"1.220579522","Terence_MS32_Quad_Aq":"3.140040611","Terence_MS33_Quad_Aq":"2.649873402","Terence_MS35_Quad_Aq":"5.096868734","Terence_MS1_Quad_Aq":"6.589441414","Terence_MS2_Quad_Aq":"4.313849888","Terence_MS3_Quad_Aq":"5.135509868","Terence_MS4_Quad_Aq":"4.16339161","Terence_MS5_Quad_Aq":"4.374481558","Terence_MS11_Quad_Aq":"3.999188123","Terence_MS12_Quad_Aq":"3.862277964","Terence_MS15_Quad_Aq":"4.248284812"},{"Metabolite":"Aspartate","Terence_MS18_Quad_Aq":"0.941939008","Terence_MS26_Quad_Aq":"0.254436619","Terence_MS27_Quad_Aq":"0.195699454","Terence_MS28_Quad_Aq":"0.581358676","Terence_MS29_Quad_Aq":"0.830932022","Terence_MS30_Quad_Aq":"0.22766945","Terence_MS36_Quad_Aq":"0.308687182","Terence_MS37_Quad_Aq":"0.957204664","Terence_MS39_Quad_Aq":"0.411407532","Terence_MS40_Quad_Aq":"0.97289233","Terence_MS6_Quad_Aq":"0.194686943","Terence_MS7_Quad_Aq":"0.30777801","Terence_MS8_Quad_Aq":"0.390281261","Terence_MS9_Quad_Aq":"0.44526201","Terence_MS10_Quad_Aq":"0.32778315","Terence_MS16_Quad_Aq":"0.293304038","Terence_MS17_Quad_Aq":"0.441316555","Terence_MS20_Quad_Aq":"0.488359989","Terence_MS14_Quad_Aq":"0.320581537","Terence_MS22_Quad_Aq":"0.405903347","Terence_MS23_Quad_Aq":"0.607015134","Terence_MS24_Quad_Aq":"0.68637258","Terence_MS25_Quad_Aq":"0.835482739","Terence_MS32_Quad_Aq":"0.340448957","Terence_MS33_Quad_Aq":"1.243855552","Terence_MS35_Quad_Aq":"0.971404129","Terence_MS1_Quad_Aq":"0.233667304","Terence_MS2_Quad_Aq":"0.308238052","Terence_MS3_Quad_Aq":"0.448478105","Terence_MS4_Quad_Aq":"0.268577963","Terence_MS5_Quad_Aq":"0.198208309","Teren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"Metabolites":[{"metabolite_name":"Pantothenate"},{"metabolite_name":"2-Hydroxyvalerate"},{"metabolite_name":"Anserine"},{"metabolite_name":"Aspartate"},{"metabolite_name":"Trimethylamine"},{"metabolite_name":"Taurine"},{"metabolite_name":"Glycerol"},{"metabolite_name":"Glycine"},{"metabolite_name":"Glucose"},{"metabolite_name":"Allanttoin"},{"metabolite_name":"ATP"},{"metabolite_name":"Histidine"},{"metabolite_name":"Leucine"},{"metabolite_name":"Valine"},{"metabolite_name":"Isoleucine"},{"metabolite_name":"Isobutyrate"},{"metabolite_name":"Lactate"},{"metabolite_name":"Alanine"},{"metabolite_name":"Lysine"},{"metabolite_name":"Acetate"},{"metabolite_name":"Glutamate1"},{"metabolite_name":"Pyruvate"},{"metabolite_name":"Succinate"},{"metabolite_name":"Glutamine"},{"metabolite_name":"Creatine"},{"metabolite_name":"Creatinine+PCr"},{"metabolite_name":"Mannose"},{"metabolite_name":"NAD+"},{"metabolite_name":"Fumarate"},{"metabolite_name":"Tyrosine"},{"metabolite_name":"Phenylalanine"},{"metabolite_name":"Benzoate"},{"metabolite_name":"Nicotinurate"},{"metabolite_name":"Tryptophan"},{"metabolite_name":"Formate"},{"metabolite_name":"IMP"},{"metabolite_name":"AMP"}]
}

}