Antibody type biological magnetic microsphere as well as preparation method and application thereof
A technology of magnetic microspheres and body shape, applied in the field of biochemistry, can solve the problems of reduced binding performance of purification media, large labor and time, and reduced purification effect, so as to increase the capture rate and binding amount, high efficiency and high yield, Efficient elution effect
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[0308] 2. The present invention also discloses a method for preparing biomagnetic microspheres described in the first aspect, comprising the following steps: (i) providing magnetic microspheres combined with biotin or biotin analogs (also known as biotin magnetic microspheres) (biotin ball or biotin magnetic bead); (ii) linking the raw material providing the antibody-type label with the biotin analog at the end of the polymer branch of the biomagnetic microsphere to obtain the biomagnetic microsphere combined with the antibody-type label K (antibody magnetic beads).
[0309] In some preferred modes, the raw material for providing the antibody-type tag is the antibody-type tag.
[0310] In some preferred modes, the raw material for providing the antibody-type tag is a covalently linked complex of avidin or an avidin analogue and the antibody-type tag. In step (ii), the covalently linked complex of avidin or avidin analog and the antibody-type tag is bound to the end of the pol...
Embodiment approach
[0357] Add biotin-modified biomagnetic microspheres D to a fusion protein solution of an avidin-antibody-type label-linked complex (for example, antiEGFP-mScarlet-Tamvavidin2, an antibody-type fusion protein, and a fusion protein of a nanobody) , mix and incubate. Through the specific binding of avidin (such as Streptavidin or Tamvavidin2) to biotin, the antibody-type label is fixed to the end group of the polymer branched chain on the outer surface of the biomagnetic microsphere D, and an avidin-antibody is obtained. Type-labeled biomagnetic microspheres K. Wherein, the fusion protein of avidin-antibody tag can be obtained by in vitro cell-free protein synthesis through IVTT reaction. At this time, the supernatant obtained after the reaction between the biomagnetic microsphere D and IVTT is mixed, and the antibody-type label is realized through the specific binding between the biotin on the outer surface of the biomagnetic microsphere D and the avidin fusion protein in the s...
Embodiment 1
[0384] The preparation of embodiment 1 biomagnetic microsphere D (in conjunction with biotin)
[0385] Preparation of silica-coated magnetic microspheres (also known as magnetic microsphere bodies, magnetic beads, glass beads)
[0386] 20g Fe 3 o 4 The microspheres were placed in a mixed solvent of 310mL ethanol and 125mL water, 45mL 28% (wt) ammonia water was added, 22.5mL tetraethyl orthosilicate was added dropwise, and the reaction was stirred at room temperature for 24h, and washed with ethanol and water after the reaction. Ferric oxide microspheres with different particle sizes (about 1 μm, 10 μm, 100 μm) are used as raw materials to control the particle size of the obtained glass beads. The ferric oxide microspheres with different particle sizes can be prepared by conventional technical means.
[0387] The prepared magnetic microspheres are used as the basic raw material for modifying the purification medium or linking elements-purification medium, so they are also ca...
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