Method for improving thermal stability of virus-like particles based on metal organic framework biomimetic mineralization
A metal organic framework and thermal stability technology, applied in the field of medicine, can solve the problems of refrigerated transportation, poor thermal stability, etc., and achieve the effects of enhanced sedimentation coefficient, increased encapsulation capacity, and enhanced cellular immune response level.
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Embodiment 1
[0044] The synthesis of embodiment 1FMDV-VLPs-ZIF-8
[0045] (1) To 1 part by volume, the content of virus-like particles is 400-600 μg / mL foot-and-mouth disease virus-like particles (FMDV-VLPs) solution to be encapsulated (the virus-like particles are 201610929279.0 according to the application number, and the invention name is "one 4.5 parts by volume of 80mM dimethylimidazole solution were added to the O-type foot-and-mouth disease virus-like particle and its preparation method and application "patent application" and fully mixed;
[0046] (2) Add 0.5 parts by volume of 20mM zinc nitrate solution to the mixed solution of step (1), mix well, and react for 10min;
[0047] (3) After the reaction in step (2) is complete, add 4.5 parts by volume of 80mM dimethylimidazole solution and 0.5 parts by volume of 20mM zinc nitrate solution to mix and react for 20min;
[0048] (4) After the reaction in step (3) is complete, after ultrasonic dispersion, add 0.1-0.2 parts by volume of 2M...
Embodiment 2
[0052] Identification of embodiment 2FMDV-VLPs-ZIF-8 complex
[0053] 1. Identification of complexes by Fourier infrared spectroscopy
[0054] After freeze-drying the synthesized ZIF-8, FMDV-VLPs-ZIF-8 and protein, add an appropriate amount of fully dried, use Fourier infrared spectrometer to measure the absorption peak, and determine the encapsulation situation through the absorption peak. The result is as figure 2 As shown in A, the results show that the FMDV-VLPs-ZIF-8 complex has specific absorption peaks of ZIF-8 and protein, indicating that FMDV-VLPs are successfully encapsulated.
[0055] 2. Identification of complexes by SDS-PAGE
[0056] The FMDV-VLPs before encapsulation and the mineralized encapsulation FMDV-VLPs-ZIF-8 samples were subjected to denaturing electrophoresis, and the protein gel was stained with Coomassie brilliant blue staining solution, and decolorized to observe the encapsulation of FMDV-VLPs by metal organic framework mineralization Happening. ...
Embodiment 3
[0061] Example 3 Heat resistance analysis of FMDV-VLPs-ZIF-8
[0062] To study the thermal stability of FMDV-VLPs and FMDV-VLPs-ZIF-8 composites, 1 mL samples were treated at 45°C (1h, 3h, and 6h) and 60°C (0.5h, 1h, and 3h), and untreated FMDV-VLPs and FMDV-VLPs-ZIF-8 composites served as controls. Samples were collected at predetermined times and placed on ice. After the samples were hydrolyzed with EDTA solution overnight, the protein released into the supernatant was collected by centrifugation (8000 rpm, 10 min), and the protein content in the supernatant was measured using the Micro BCA assay. . The protein activity of FMDV-VLPs was determined by ELISA. The result is as image 3 As shown, the results show that metal-organic framework encapsulation of FMDV-VLPs can improve the heat resistance of FMDV-VLPs.
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