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MB Sample ID: SA035204
Local Sample ID: | BALF_MET144_2x_lipid_pos_A |
Subject ID: | SU000650 |
Subject Type: | Human | Animal |
Subject Species: | Homo sapiens;Mus musculus |
Taxonomy ID: | 9606;10090 |
Genotype Strain: | Animal: C57BL/6 |
Species Group: | Mammal |
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Combined analysis:
Analysis ID | AN000959 |
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Analysis type | MS |
Chromatography type | Reversed phase |
Chromatography system | Agilent 1290 |
Column | Agilent Zorbax RRHD SB-C18 (100 x 2.1mm,1.8um) |
MS Type | ESI |
MS instrument type | QTOF |
MS instrument name | Agilent 6510 QTOF |
Ion Mode | POSITIVE |
Units |
Chromatography:
Chromatography ID: | CH000684 |
Chromatography Summary: | The BALF samples were separated using C18 reverse phase chromatography. The separations used an Agilent Zorbax Rapid Resolution HD (RRHD) SB-C18, 1.8 micron (2.1 x 100 mm) analytical column with an Agilent Zorbax SB-C18, 1.8 micron (2.1 x 5 mm) guard column and used an Agilent 1290 series high performance liquid chromatography (HPLC) pump. Injection volumes were 4µL for mouse BALF and 15µL for human BALF. Flow rate was 0.7 mL/min using the following mobile phases: mobile phase A was water with 0.1% formic acid, and mobile phase B was 60:36:4 isopropyl alcohol:acetonitrile:water with 0.1% formic acid. Gradients were 0-0.5 minutes 30-70% B, 0.5-7.42 minutes 70-100% B, 7.42-9.9 minutes 100% B, 9.9-10.0 minutes 100-30% B, 10-14.6 minutes 30% B for the positive mode injections. For negative mode the following eluant profile was used: 0-1 minutes 30-70% B, 1-7.92 minutes 70-100% B, 7.92-10.4 minutes 100% B, 10.4-10.5 minutes 100-30% B, 10.5-15.1 minutes 30% B. |
Instrument Name: | Agilent 1290 |
Column Name: | Agilent Zorbax RRHD SB-C18 (100 x 2.1mm,1.8um) |
Flow Gradient: | 0-0.5 minutes 30-70% B, 0.5-7.42 minutes 70-100% B, 7.42-9.9 minutes 100% B, 9.9-10.0 minutes 100-30% B, 10-14.6 minutes 30% B |
Flow Rate: | 0.7 mL/min |
Solvent A: | 100% water; 0.1% formic acid |
Solvent B: | 60% isopropanol/36% acetonitrile/4% water; 0.1% formic acid |
Chromatography Type: | Reversed phase |