A nanomaterial for enriching and purifying pathogenic microorganisms and its preparation method
A technology of pathogenic microorganisms and nanomaterials, applied in the field of nanomaterials for the rapid enrichment and purification of pathogenic microorganisms and its preparation, can solve the problems of large background interference, high processing requirements, and reliance on labeling technology, and achieve large specific surface area and good biophase Capacitance, the effect of good biocompatibility
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Embodiment 1
[0027] Embodiment 1: preparation embodiment
[0028] (1) use Monodisperse silica nanospheres were prepared by this method (reference: W. , A.Fink.Controlled growth of monodisperse silica spheres in the micron sizerange[J].J.Colloid Interface Sci., 1968,26(1):62-69);
[0029] (2) Prepare ferric oxide-coated silica nanospheres by thermal deposition method, the specific preparation process is as follows: 0.25g Add the silica nanospheres prepared by the method into a mixed solution containing 50ml of ethylene glycol and 150ml of water. After the ultrasonic dispersion is uniform, the reaction solution is transferred to a three-necked flask, and mechanically stirred in a water bath at 45°C. After 15 minutes, 0.25 g of ferrous chloride was added to the reaction system, and mechanically stirred in a water bath at 45° C. for 5 hours. After the reaction was completed, the obtained black solution was centrifuged, and washed three times with deionized water and ethanol to obtain cor...
Embodiment 2
[0034] Embodiment 2 application embodiment
[0035] figure 2It is a schematic diagram of the rapid enrichment and purification of pathogenic microorganisms using nanomaterials prepared in the present invention. The figure shows that the nano-magnetic beads can specifically bind to the target antigen after being modified by a specific antibody, and the antigen-antibody immune complex obtained after enrichment and separation can be used for the next step of detection.
[0036] Take a 100ml small beaker, pour the pre-prepared simulated sample of known pathogenic microorganism concentration and the complex medium dilution into the beaker for use, and put the core-shell type multifunctional magnetic nanomaterial (hereinafter referred to as magnetic bead) prepared above Modify the antibody that can specifically recognize the target pathogenic microorganism, and then put the modified magnetic beads into the beaker and incubate with the sample to be tested at room temperature for 0....
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