Method for screening single chain antibodies of Microcystin-LR and verification thereof
A microcystin and single-chain antibody technology, which is applied in botany equipment and methods, biochemical equipment and methods, and the use of vectors to introduce foreign genetic material, etc., can solve the problem of low detection signal of identification methods, interference of culture medium matrix, and screening Single method and other problems, to achieve the effect of strong anti-matrix interference, short screening cycle, fast and easy separation
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Embodiment 1
[0017] Example 1. The first round of screening of microcystin LR single chain antibody
[0018] During the two rounds of affinity screening in the present invention, the single-chain antibody gene of the phage contained in the human synthetic antibody library is inserted into the coding sequence of the PIX protein gene of the phage, and the single-chain antibody is fused with the PIX protein when expressed On the phage capsid protein, it is displayed and used for affinity screening of antibody libraries.
[0019] (1) Wash magnetic beads: Take 100 μl immunomagnetic beads (provided by Invitrogen, the same below) and 900 μl TBST (TBS buffer containing 1% Tween20), add them to a 1.5ml centrifuge tube and mix well, place the centrifuge tube on a magnetic Let stand on the rack for 1-2 minutes until the mixture becomes clear and the magnetic beads are all adsorbed on the inner wall of the centrifuge tube close to the magnetic rack, then remove the supernatant with a pipette. Then ad...
Embodiment 2
[0022] Example 2. The second round of screening of microcystin LR single chain antibody
[0023] The phage stock solution prepared after the first round of screening was used for the second round of screening, and the amount of phage input in this round of screening was 2 × 10 11 phage (same as Example 1). First, adopt the same method as the first round of screening to complete the steps of magnetic bead washing, coating magnetic beads and negative screening, and then mix the first round of phage stock solution after negative screening with 5 pmol of biotinylated microcystin LR, after incubating with rotation at room temperature for 10 min, add 50 μl of washed avidin-labeled magnetic beads, and continue to incubate with rotation at room temperature for 5 min. The magnetic beads were separated by the magnetic stand, and the magnetic beads were washed twice with TBST containing 0.5% Tween20, and 50 μl of 60 μg / ml trypsin was added to each tube, and the shaker was shaken at a lo...
Embodiment 3
[0027] Example 3. Non-competitive time-resolved fluorescent immunoassay method, phage immunoassay was performed on the initial antibody library and the phage stock solution after two rounds of screening.
[0028] The specific steps of the non-competitive time-resolved fluorescent immunoassay are as follows:
[0029] (1) Wash the avidin-coated ELISA plate once with washing buffer.
[0030] (2) Add 100 μl of biotinylated microcystin to each well of the microplate. Incubate on a shaker at 700rpm for 0.5h at room temperature. Wash the plate 4 times with wash buffer.
[0031] (3) Dilute the original antibody library and the phage stock solution after two rounds of screening, and the diluted phage titer is 10 10 tfu / 100 μl. 100 μl / well was added to the microtiter plate, and each sample was set in 3 replicates, and 3 wells without phage samples were left as blank control wells. Incubate on a shaker at 700 rpm for 1 h at room temperature. Wash the plate 4 times with wash buffer....
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