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MB Sample ID: SA333242

Local Sample ID:P27
Subject ID:SU003207
Subject Type:Human
Subject Species:Homo sapiens
Taxonomy ID:9606
Gender:Male and female

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Combined analysis:

Analysis ID AN005060 AN005061
Analysis type MS MS
Chromatography type CE CE
Chromatography system Agilent CE-TOFMS system Agilent CE-TOFMS system
Column Capillary: Fused silica capillary i.d. 50 μm × 80 cm Capillary: Fused silica capillary i.d. 50 μm × 80 cm
MS Type ESI ESI
MS instrument type Other Other
MS instrument name Agilent CE-TOFMS system Agilent CE-TOFMS system
Ion Mode UNSPECIFIED UNSPECIFIED
Units Relative peak area Relative peak area

MS:

MS ID:MS004798
Analysis ID:AN005060
Instrument Name:Agilent CE-TOFMS system
Instrument Type:Other
MS Type:ESI
MS Comments:For the acute myeloid leukemia (AML) samples, 354 peaks, covering 243 peaks from Cation mode and 111 peaks from Anion mode, were detected, and among them, 185 peaks were annotated on the basis of HMT’s standard library and ‘Known-Unknown’ peak library:Peaks detected in CE-TOFMS analysis were extracted using automatic integration software (MasterHands ver. 2.17.1.11 developed at Keio University) in order to obtain peak information including m/z, migration time (MT), and peak area. The peak area was then converted to relative peak area by the following equation. The peak detection limit was determined based on signal-noise ratio; S/N = 3. Relative Peak Area = Metabolite Peak Area / (Internal Standard Peak Area × Sample Amount)
Ion Mode:UNSPECIFIED
  
MS ID:MS004799
Analysis ID:AN005061
Instrument Name:Agilent CE-TOFMS system
Instrument Type:Other
MS Type:ESI
MS Comments:For the renal cell carcinoma (RCC) samples, 363 peaks, covering 243 peaks from Cation mode and 120 peaks from Anion mode, were detected; the 363 peaks were annotated using the same libraries as the AML samples. Peaks detected in the CE-TOFMS analysis were extracted using automatic integration software (MasterHands ver. 2.19.0.2 developed at Keio University) in order to obtain peak information, which includes m/z, migration time (MT), and peak area. The peak area was then converted to relative peak area by the following equation. The peak detection limit was determined based on signal-noise ratio; S/N = 3. Relative Peak Area = Metabolite Peak Area / (Internal Standard Peak Area × Sample Amount)
Ion Mode:UNSPECIFIED
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