Preparation method and application of immunosensor based on ferritin three-dimensional structure
An immune sensor and three-dimensional structure technology, applied in the field of biosensing and new nanomaterials, can solve the problems of poor reproducibility and low sensitivity, and achieve low cost, high sensitivity and good reproducibility
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Embodiment 1
[0024] Embodiment 1. A preparation method and application of an immunosensor based on the three-dimensional structure of ferritin, comprising the following steps:
[0025] (1) Polish the glassy carbon electrode with a diameter of 4 mm with 1.0 μm, 0.3 μm, and 0.05 μm alumina polishing powder in sequence, and rinse it with ultrapure water;
[0026] (2) Drop-coat 6 μL of antibody-labeled isoluminol-ferritin-nanogold solution at a concentration of 2 mg / mL on the surface of the glassy carbon electrode as the sensor substrate material, and place it to dry at 37 °C;
[0027] (3) Add 3 μL bovine serum albumin solution with a mass fraction of 1% dropwise to block the non-specific active sites on the electrode surface, rinse the electrode surface with pH 7.4 phosphate buffer solution PBS, and place it at 4 °C C to dry;
[0028] (4) Add 6 μL standard solution of procalcitonin or procalcitonin solution of unknown concentration, incubate at 37 °C for 0.5 h, rinse the electrode surface wi...
Embodiment 2
[0029] Embodiment 2. A preparation method and application of an immunosensor based on the three-dimensional structure of ferritin, comprising the following steps:
[0030] (1) Polish the glassy carbon electrode with a diameter of 4 mm with 1.0 μm, 0.3 μm, and 0.05 μm alumina polishing powder in sequence, and rinse it with ultrapure water;
[0031] (2) Drop-coat 6 μL of antibody-labeled isoluminol-ferritin-nanogold solution at a concentration of 3 mg / mL on the surface of the glassy carbon electrode as the sensor substrate material, and place it to dry at 37 °C;
[0032] (3) Add 3 μL bovine serum albumin solution with a mass fraction of 2% dropwise to block the non-specific active sites on the electrode surface, rinse the electrode surface with pH 7.4 phosphate buffer solution PBS, and place it at 4 °C C to dry;
[0033] (4) Add 6 μL standard solution of procalcitonin or procalcitonin solution of unknown concentration, incubate at 37 °C for 1 h, wash the electrode surface with ...
Embodiment 3
[0034] Embodiment 3. A preparation method and application of an immunosensor based on the three-dimensional structure of ferritin, comprising the following steps:
[0035] (1) Polish the glassy carbon electrode with a diameter of 4 mm with 1.0 μm, 0.3 μm, and 0.05 μm alumina polishing powder in sequence, and rinse it with ultrapure water;
[0036] (2) Drop-coat 6 μL of antibody-labeled isoluminol-ferritin-nanogold solution at a concentration of 4 mg / mL on the surface of the glassy carbon electrode as the sensor substrate material, and place it to dry at 37 °C;
[0037] (3) Add 3 μL bovine serum albumin solution with a mass fraction of 3% dropwise to block the non-specific active sites on the electrode surface, rinse the electrode surface with pH 7.4 phosphate buffer solution PBS, and place it at 4 °C C to dry;
[0038] (4) Add 6 μL standard solution of procalcitonin or procalcitonin solution of unknown concentration, incubate at 37 °C for 2 h, wash the electrode surface with ...
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