Calcium phosphate nanoparticles and ion-complementary peptide composite hydrogel and preparation method thereof
A nanoparticle, calcium phosphate technology, applied in the field of biomedicine, can solve the problems of difficult to control the distribution range, large average particle size, wide particle size distribution, etc., to overcome poor toughness, narrow particle size distribution, good cross-linking effect and effect of support
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[0044] The embodiment of the present invention also provides a method for preparing the composite hydrogel of calcium phosphate nanoparticles and ion-complementary peptides described in any one of the above embodiments, comprising the following steps:
[0045] S1: Prepare an aqueous solution of the ion-complementary peptide, and place it in a 4°C environment to allow the ion-complementary peptide to self-assemble into an assembly to obtain an ion-complementary peptide assembly solution;
[0046] S2: Add calcium chloride solution to the obtained ion-complementary peptide assembly solution, and mix uniformly; continue to add disodium hydrogen phosphate solution, mix uniformly, and let it stand for reaction to obtain the calcium phosphate nanoparticles and ion-complementary peptide composite water gel.
[0047] It should be noted that, in the above preparation method, the ion-complementary peptide can be synthesized by solid-phase synthesis, and the synthesis method of the ion-co...
Embodiment 1
[0055] (1) Preparation of ionic complementary peptide EVK11 (its amino acid sequence is Ac-E(VEVK) 2 VE-COOH) aqueous solution, the concentration is 20.0mmol / L, when preparing, use 1.0mol / L sodium hydroxide solution to adjust the pH value of the solution to 10, ultrasonic treatment to fully dissolve the ion-complementary peptide, and then adjust the pH value of the solution to 8. Put the prepared aqueous solution of the ion-complementary peptide EVK11 in an environment of 4°C and let it stand for three days to obtain a solution of the ion-complementary peptide assembly. The transmission electron microscope photos of it are as follows: figure 1 as shown in a. Depend on figure 1 a It can be seen that the ion-complementary peptide EVK11 self-assembled to form a nanofiber structure.
[0056] (2) Add 0.5mol / L calcium chloride solution to the ion-complementary peptide assembly solution obtained in step (1), use a vortex oscillator to mix the solution evenly, and the final concentr...
Embodiment 2
[0060] (1) Preparation of ionic complementary peptide EIK11 (its amino acid sequence is Ac-E(IEIK) 2 IE-COOH) aqueous solution, the concentration is 10.0mmol / L, when preparing, use 1.0mol / L sodium hydroxide solution to adjust the pH value of the solution to 10, ultrasonic treatment to fully dissolve the ion-complementary peptide, and then adjust the pH value of the solution to 6. Put the prepared aqueous solution of the ion-complementary peptide EIK11 in an environment of 4°C and let it stand for three days to obtain the solution of the ion-complementary peptide assembly. The atomic force microscope photo is as follows: Figure 4 as shown in a. Depend on Figure 4 a It can be seen that the ion-complementary peptide EIK11 self-assembles to form nanofiber structures.
[0061] (2) Add 0.5mol / L calcium chloride solution to the ion-complementary peptide assembly solution obtained in step (1), use a vortex oscillator to mix the solution evenly, and the final concentration of calci...
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