Conjugate vaccine and preparation method thereof
A vaccine and conjugation technology, applied in the field of vaccines, can solve problems such as easy to produce immune tolerance, difficult to enhance immunity, and unable to effectively activate the complement system
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Embodiment 1
[0107] 1. Preparation of magnetic nanospheres
[0108] 1. Take 2.24g FeSO 4 -7H 2 O and 3.24 g FeCl 3 -6H 2 O dissolved in 10 mL and 15 mL of dddH 2 In O, mix well after dissolving, add 100mL of dddH filtered to remove oxygen 2 O;
[0109] 2. In N 2 Stir for 5 minutes under the protection of the solution, add 50mL1mol / L NaOH solution at one time, adjust the pH of the solution to 9-10, increase the stirring speed to 200-250r / min, and continue stirring for 30min;
[0110] 3. Transfer the reaction vessel to a 65-70°C water bath and continue to 2 Stirring and aging under the protection of 30min;
[0111] 4. After the reaction, set the volume to 100mL, and observe the synthesis of magnetic particles under a microscope;
[0112] 5. Dissolve 400mgPLGA in 10mLEA solvent as the oil phase (O), add 3mL of the above magnetic particle solution as the inner water phase (W 1 ), using an ultrasonic cell breaker (120W, 60s) to carry out colostrum in an ice-water bath to prepare colos...
Embodiment 2
[0157] The difference between this example and Example 1 is that the carrier protein of the conjugated vaccine is tetanus toxoid carrier protein and PspA.
[0158] The composition analysis results of the prepared conjugated vaccine are consistent with the results obtained in Example 1 within the range of theoretical error.
Embodiment 3
[0160] The difference between this example and Example 1 is that the carrier protein of the conjugated vaccine is rotavirus carrier protein and tetanus toxoid carrier protein.
[0161] The composition analysis results of the prepared conjugated vaccine are consistent with the results obtained in Example 1 within the range of theoretical error.
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