Absorbable orthopedic internal fixation material based on silk fibroin and preparation method thereof
A technology for fixing materials and silk fibroin, which is applied in the field of materials, can solve the problems of affecting local wound healing, sinus formation, lack of product mechanical strength, poor mechanical strength, etc., achieve superior mechanical strength, facilitate implantation, and reduce stress The effect of occlusion
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Embodiment 1
[0024] A kind of preparation method of the absorbable orthopedic internal fixation material based on silk fibroin of the present invention comprises the following steps:
[0025] 1. Measure 5000mL deionized water, add Na after boiling 2 CO 3 3g and stir evenly, add 100g of raw silk according to the bath ratio of 1:50 (w:v), boil for 30min for degumming.
[0026] 2. After degumming, clean it with deionized water, repeat 3 times, and place the degummed silk in an oven at 60°C to dry for later use.
[0027] 3. Weigh the degummed silk obtained in step 2 and add the ternary solution CaCl with a bath ratio of 1:10 2 ·CH 3 CH 2 OH·H 2 O (molar ratio 1:2:8), under the action of a water bath at 80-90°C until the silk is completely dissolved to obtain a silk fibroin solution.
[0028] The specific operation is: add 200g CaCl to 260ml ultrapure water 2 After completely dissolving, add 208ml of ethanol and 50g of degummed silk, and heat in a water-soluble pot at 80-90°C. In this o...
Embodiment 2
[0043] Except that in step 1, raw silk is added according to bath: 1: 100 (w: v), other operations are the same as in Example 1. The mechanical properties of the materials obtained in this embodiment are shown in Table 4-6.
[0044] Table 4 Performance parameters of three-point bending products
[0045]
[0046] Table 5 Performance parameters of compression mechanics test
[0047]
[0048] The performance parameter of table 6 tensile mechanics test
[0049]
[0050] Co-cultivation of the material prepared in this example with MC3T3 cells showed that the cells grew well and had normal morphology, indicating that the material had better biocompatibility.
Embodiment 3
[0052] In addition to step 3, the silk fiber was added to the ternary solution CaCl at a bath ratio of 1:50 2 ·CH 3 CH 2 OH·H 2 0, all the other operations are the same as in Example 1. The mechanical properties of the materials obtained in this embodiment are shown in Table 7-9.
[0053] Table 7 Performance parameters of three-point bending products
[0054]
[0055] Table 8 Performance parameters of compression mechanics test
[0056]
[0057] Co-cultivation of the material prepared in this example with MC3T3 cells showed that the cells grew well and had normal morphology, indicating that the material had better biocompatibility.
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