Mass spectrometry probe for thrombin activity detection, method for preparing mass spectrometry probe and application thereof
An activity detection and thrombin technology, which is applied in the field of mass spectrometry probe for thrombin activity detection and its preparation, can solve the problems of cumbersome process, limited application, easy to be interfered, etc., and achieves high accuracy, selectivity and exclusive use of mass spectrometry detection. The effect of high performance and high mass spectral response
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Embodiment 1
[0036] Synthesis of thrombin mass spectrometry probe
[0037] The structure of the thrombin mass spectrometry probe is D-phenylalanine-proline-arginine-β-alanine-1-(2-pyrimidinyl)piperazine (D-Phe-Pro-Arg-β- Ala-PP), synthesize peptides by solid-phase synthesis, and connect 1-(2-pyrimidinyl) piperazine (PP) groups with liquid-phase reactions, mainly including the following steps:
[0038] 1. Resin swelling
[0039] Weigh 2-Chlorotrityl Chloride Resin resin with a substitution degree of 0.4mmol / g, put the resin into a reaction tube, add dichloromethane, and shake for 30min.
[0040] 2. Take the first amino acid
[0041] Filter off the solvent with suction, add 3-fold molar excess of Fmoc-β-Ala-OH, then add 5-fold molar excess of diisopropylethylamine, finally add a small amount of dimethylformamide to dissolve, and shake for 1 h. Alternately wash 6 times with dimethylformamide and dichloromethane.
[0042] 3. Deprotection
[0043] Add 20% piperidine dimethylformamide solut...
Embodiment 2
[0053] Chemical characterization of thrombin mass spectrometry probe
[0054] The thrombin mass spectrometry probe was synthesized by the method described in Example 1, and the purity of the probe was analyzed by HPLC. Analysis conditions are: Jielun 1200HPLC chromatographic system, equipped with variable wavelength detector (VWD), detection wavelength 214nm; Chromatographic column, Kromasil C18 (4.6mm * 150mm, 5 μm); Mobile phase is 0.1% trifluoroacetic acid-water (A ) and 0.1% trifluoroacetic acid-acetonitrile (B); flow rate 1.0 mL / min; isocratic elution, 0-25 min, 5-70% B; injection volume, 10 μL.
[0055] After dissolving the thrombin mass spectrometry probe in pure water, centrifuge at 10,000 rpm for 5 minutes, and inject the sample. HPLC chromatogram as figure 1 shown. It can be seen from the figure that the synthesized thrombin mass spectrometry probe is of high purity, with a relative peak area ratio of >95%, which can be used for subsequent experiments and research...
Embodiment 3
[0059] Application of Thrombin Mass Spectrometry Probe in Detection of Thrombin Activity
[0060] A pH=8.3, 10 mM Tris-HCl was used as a buffer. Take 20 μL each of the thrombin mass spectrometry probe and different concentrations of thrombin solutions, and 160 μL of buffer solution, and place them in a 1.5 mL centrifuge tube, so that the final concentration of the thrombin mass spectrometry probe is 0.02 mM, and the final concentration of thrombin is 0.01- 0.2U / mL, incubate at 37°C for 2h. After the reaction was completed, 400 μL of methanol was added to terminate the reaction. The solution was vortexed and centrifuged, analyzed by the HPLC-IT / MS method described in Example 2, and the peak area difference of the thrombin mass spectrometry probe before and after the reaction reflected the thrombin activity, and the results were as follows image 3 shown. It can be seen from the figure that within this concentration range, there is a good linear relationship between the conce...
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