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MB Sample ID: SA309405
Local Sample ID: | A_1 |
Subject ID: | SU002974 |
Subject Type: | Human |
Subject Species: | Homo sapiens |
Taxonomy ID: | 9606 |
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Combined analysis:
Analysis ID | AN004693 | AN004694 |
---|---|---|
Analysis type | MS | MS |
Chromatography type | Reversed phase | Reversed phase |
Chromatography system | Agilent 1290 Infinity | Agilent 1290 Infinity |
Column | Waters ACQUITY UPLC HSS T3 (100 x 2.1mm,1.8um) | Waters ACQUITY UPLC HSS T3 (100 x 2.1mm,1.8um) |
MS Type | ESI | ESI |
MS instrument type | Triple quadrupole | Triple quadrupole |
MS instrument name | Agilent 6495 QQQ | Agilent 6495 QQQ |
Ion Mode | POSITIVE | NEGATIVE |
Units | counts | counts |
Chromatography:
Chromatography ID: | CH003534 |
Chromatography Summary: | In this study, a newly developed precision-targeted metabolomics method with a UPLC-TQ/MS system (Agilent 1290 Infnity, Agilent Technologies, USA; Agilent 6495 QQQ, Agilent Technologies, USA) in a DMRM scan-mode was applied to analyze the metabolome of interest from trial samples (serum, liver tissues and stool). Briefly, the method was performed with an ACQUITY UPLC HSS T3 column (2.1 mm i.d. × 100 mm, 1.8 μm; Waters); mobile phase A and B were water and acetonitrile with 0.1% formic acid (v/v) respectively. The flow rate was at 0.3 mL/min and the column temperature was maintained at 40 ℃. The samples were placed in an auto-sampler maintained at 4 °C with a 5 μL injection volume. The optimized gradient-elution program, as follows: 0-2 min, 98% A; 2-10 min, 98-65% A; 10-12 min, 65-20% A; 12-14 min, 20-2% A; 14-30 min, 2% A. |
Methods Filename: | Chromatography.pdf |
Instrument Name: | Agilent 1290 Infinity |
Column Name: | Waters ACQUITY UPLC HSS T3 (100 x 2.1mm,1.8um) |
Column Temperature: | 40 ℃ |
Flow Gradient: | 0-2 minutes, 98% A 2-10 minutes, 98%-65% A 10-12 minutes, 65%-20% A 12-14 minutes, 20%-2% A 14-30 minutes, 2% A. |
Flow Rate: | 0.3 ml/min |
Solvent A: | 100% water + 0.1% formic acid |
Solvent B: | 100% acetonitrile + 0.1% formic acid |
Chromatography Type: | Reversed phase |