Integrated proteomics sample pretreatment platform and its application based on scx/sax mixed filler
A sample pretreatment and proteomics technology, which is applied in scientific instruments, material separation, and analytical materials, etc., can solve problems such as the large influence of pH on the effect of enrichment, limitations of proteomics methods, and limited effect of protein enrichment. Achieve the effect of increasing sample capacity, improving reproducibility and reducing loss
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Embodiment 1
[0047]Example 1 Proteomics sample preprocessing platform integrated with protein preprocessing
[0048]Such asfigure 1 As shown, a proteomics sample pre-processing platform integrated with protein pre-processing includes pipette tip 1, SAX and SCX mixed filler 2 and C18 membrane 3. Among them, the pipette tip 1 is a standard 200μL pipette tip, the C18 film 3 is filled at the lower end of the pipette tip 1 with a length of about 3mm, and the 2mg SAX and SCX mixed filler 2 is filled at the lower end of the pipette tip 1 and C18膜3上。 Above the film 3.
[0049]Place the support block on the upper end of the 1.5mL collection tube 4, place the proteomics sample pre-processing platform on the collection tube 4 through the support block, and put the collection tube 4 into the centrifuge. The protein solution or reagent can be made by centrifugation. Flow through the proteomics sample pre-processing platform to complete the pre-enrichment and enzymatic hydrolysis of proteins. The specific steps are...
Embodiment 2
[0053]Example 2 The influence of pH value on the protein enrichment of SCX / SAX mixed filler
[0054]In this example, the pH value of the protein enrichment of the SCX / SAX mixed filler was optimized, and the BCA test method was adopted.
[0055]Based on the protein reactor device of SCX, SAX and SCX / SAX mixed packing, the pipette tip is placed on a 1.5mL centrifuge tube through an adaptor. Place a piece of SCX membrane (3M Empore, USA) on the bottom of the pipette tip to act as a fixed filler. Fill the SCX membrane with 50 μL SCX (20 mg / mL), 50 μL SAX (20 mg / mL) and 50 μL SCX / SAX (20 mg / mL). mL) Mixed filler. In the experiment of measuring the loading capacity of SCX filler, first add 20μL of 100mM potassium citrate (pH 3) and 20μL of 10mM potassium citrate (pH 3) to pre-equilibrate the SCX filler; then replace with a new 1.5mL centrifuge tube. Mix BSA (2μg / μL) and LYZ (2μg / μL) stock solution 1:1, and dilute the BSA and LYZ mixture 1:1 with 1% FA (pH3) to contain BSA (0.5μg / μL) and LYZ ( 0...
Embodiment 3
[0058]Example 3 The influence of pH value on the protein enrichment of SCX / SAX mixed filler
[0059]In this example, the pH value of the protein enrichment of the SCX / SAX mixed filler was optimized, and the SDS-PAGE method was adopted.
[0060]In the experiment of measuring the loading capacity of the SCX filler, first add 20 μL of 100 mM potassium citrate (pH 3) and 20 μL of 10 mM potassium citrate (pH 3) to pre-equilibrate the SCX filler. Then replace the new 1.5mL centrifuge tube, mix BSA (2μg / μL) and LYZ (2μg / μL) stock solution 1:1, and dilute the BSA and LYZ mixture 1:1 with 1% FA (pH 3) to contain A mixed solution of BSA (0.5μg / μL) and LYZ (0.5μg / μL). Take 30μL of diluted BSA and LYZ mixed solution for loading, centrifuge for 5min (300rcf), collect the effluent in the 1.5mL centrifuge tube; then take 30μL of diluted BSA and LYZ mixed solution for loading, centrifuge for 5min (300rcf) ), collect the effluent in the 1.5mL centrifuge tube; load the sample 7 times to obtain 7 effluents ...
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