Novel quick separation method of bacilluscereus
A technology of Bacillus cereus and a new method, applied in the field of isolation of food-borne pathogenic bacteria, can solve the problems of separation failure, high concentration of miscellaneous bacteria, poor monodispersity of micron magnetic beads, etc., and increase the chance of contact and the reaction solution Effect of stabilization and shortening of separation time
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Embodiment 1
[0029] 1. The multi-arm well star polymer-antibody complex is prepared according to the following steps:
[0030] (1) Dissolve 2.8 mg Dobby Star Polymer Dobby Star polyamide-amine in 2 mL PBS (0.02 M, pH 6.5), add 0.6 mg NHSS, 0.4 mg EDC, and place on a mixer at room temperature Stir and activate for 15 min;
[0031] (2) Add 6 mg of Bacillus cereus-specific antibody to the above reaction solution, and stir on a mixer at room temperature for 30 min;
[0032] (3) The above solution was spin-dried under reduced pressure, dissolved in deionized water, and dialyzed in PBS and deionized water for 1 day; after the dialysis, the obtained solution was freeze-dried.
[0033] 2. The long-chain biotin-multi-armed well star polymer-antibody complex is prepared according to the following steps:
[0034] (1) Dissolve 15 mg long-chain biotin, 3.6 mg NHSS, and 2.4 mg EDC in 2 mL PBS (0.02 M , pH 6.5) buffer;
[0035] (2) Add 0.55 mg of the multi-armed Jingxing polymer-antibody complex to the ...
Embodiment 2
[0039] Example 2 Enrichment effect experiment
[0040] (1) Take 1 mL of concentration as 10 4 cfu / mL Bacillus cereus in a 1.5 mL sterile centrifuge tube, centrifuge at 12,000 rpm for 5 min, discard the supernatant, and resuspend with an equal volume of sterile PBS solution.
[0041] (2) Enrichment and capture: Set up the technical solution group of the present invention (the multi-arm well star polymer group co-modified with Bacillus cereus antibody and long-chain biotin), and the nanomagnetic bead group modified with Bacillus cereus-specific antibody , Bacillus cereus-specific antibody-modified micron magnetic bead group to enrich target bacteria.
[0042] (3) After magnetic separation, pour the supernatant into a sterile centrifuge tube, and wash the isolated immunomagnetic beads with Bacillus cereus twice with PBST, mix well, and reconstitute with 1 mL of sterile PBS solution. Suspend the immunomagnetic bead complex.
[0043] (4) Capture rate calculation: After gradient...
Embodiment 3
[0056] Example 3 Enrichment capture experiment
[0057] Conventional magnetic stand separation time is 30min, and all the other are with embodiment 2.
[0058] The catch rate of each group is as follows:
[0059] Capture efficiency of Bacillus cereus-specific antibody modified micron magnetic bead set Capture efficiency of Bacillus cereus-specific antibody-modified magnetic nanobeads Capture efficiency of a multi-armed well star polymer set co-modified with Bacillus cereus antibody and long-chain biotin 60.1% 45.1% 93.2%
[0060] The experimental results show that compared with the separation of 3 minutes in Example 2, when the separation time reaches 30 minutes, the capture efficiency of the three groups has been improved, especially the capture efficiency of the nano magnetic beads group modified by the specific antibody of Bacillus cereus is the most obvious. , which shows that the capture efficiency of the nano-magnetic bead set can be greatly impr...
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