A silicon-based elastic nanofiber bone repair material and its preparation method and application
A nanofiber and bone repair technology, applied in the direction of fiber chemical characteristics, rayon manufacturing, prosthesis, etc., can solve problems such as low mechanical strength, and achieve the effect of simple preparation method, easy preparation, and promotion of bone defect repair
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[0040] like figure 1 Shown, preparation method of the present invention specifically comprises the following steps:
[0041] 1) Synthesis of polycitrate-polyethyleneimine copolymer-miRNA carrier. Add POCG-PEI (i.e. PCEE) and miRNA with a nitrogen-to-phosphorus ratio of (2-16):1 to 10 μL, 50 mM, pH 7.4 HEPES buffer, and incubate in a water bath at 37°C for 30 minutes to form stable PCEE@miRNA nanocomposites.
[0042] Preferably, the PCEE in step 1) is POCG-PEI 1.8K; preferably, the nitrogen-phosphorus ratio of PCEE and miRNA is (4-10):1; miRNA is miR-5106, miR-29b and miR-26a / b .
[0043] 2) Synthesis of silicon-containing polyester and biomedical polyester polymer (SPE-BPE). Dissolve silicon-containing polyester (SPE) and biomedical polyester (BPE) with a mass ratio of 1: (1-5) in a volume ratio of 1: (0.08-0.15) dichloromethane (DMF) and dimethylmethylene The prepolymer was obtained in a mixed solvent of sulfone (DMSO), and 1,6-hexamethylene diisocyanate (HDI) with a mol...
Embodiment 1
[0051] 1) Synthesis of polycitrate-polyethyleneimine copolymer-miRNA carrier. PCEE and miR-5106 with a nitrogen to phosphorus ratio of 4:1 were added to 10 μL, 50 mM, pH 7.4 HEPES buffer, and incubated in a 37°C water bath for 30 minutes to form a stable nanocomplex.
[0052] 2) Synthesis of silicon-containing polyesters and biomedical polyester polymers. Dissolve SPE and BPE with a mass ratio of 1:2.3 in a mixed solvent of DMF and DMSO with a volume ratio of 1:0.08 to obtain a prepolymer, add HDI with a molar ratio of 1:2 to SPE, and add a mass ratio of 0.1% The stannous octoate catalyst obtains the SPE-BPE polymer (PP (0.3)) that SPE accounts for (SPE+BPE) mass ratio and is 0.3.
[0053] 3) Synthesis of three-dimensional silicon-based elastic nanofiber bone repair materials. SPE-BPE and PCEE@miRNA were mixed at a mass ratio of 1:0.005, and the electrospinning process of the mixed solution was performed using a 5mL syringe equipped with a 20-gauge needle, using a voltage of...
Embodiment 2
[0055] 1) Synthesis of polycitrate-polyethyleneimine copolymer-miRNA carrier. PCEE and miR-5106 with a nitrogen to phosphorus ratio of 4:1 were added to 10 μL, 50 mM, pH 7.4 HEPES buffer, and incubated in a 37°C water bath for 30 minutes to form a stable nanocomplex.
[0056] 2) Synthesis of silicon-containing polyesters and biomedical polyester polymers. Dissolve SPE and BPE with a mass ratio of 1:1.5 in a mixed solvent of DMF and DMSO with a volume ratio of 1:0.08 to obtain a prepolymer, add HDI with a molar ratio of 1:2 to SPE, and add a mass ratio of 0.1% The stannous octoate catalyst obtains the SPE-BPE polymer (PP (0.4)) that SPE accounts for (SPE+BPE) mass ratio and is 0.4.
[0057] 3) Synthesis of three-dimensional silicon-based elastic nanofiber bone repair materials. SPE-BPE and PCEE@miRNA were mixed at a mass ratio of 1:0.005, and the electrospinning process of the mixed solution was performed using a 5mL syringe equipped with a 20-gauge needle, using a voltage of...
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