High-strength collagen-based artificial bone repair material
A collagen-based human and repair material technology, applied in the field of artificial bone materials and high-strength collagen-based artificial bone repair materials, can solve the problems of limiting chemical composition, reducing the osteogenic activity of materials, and failing to provide bioactive materials, and achieves excellent mechanical properties. performance, broad application prospects, good biological activity effect
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Embodiment 1
[0060] Embodiment 1, preparation of high-strength collagen / nano calcium phosphate composite artificial bone
[0061] figure 1 Shown is the process flow chart of the preparation method of the high-strength collagen-based artificial bone repair material of the present invention. according to figure 1 In the steps shown, the preparation method of high-strength collagen / nano-calcium-phosphate composite artificial bone is:
[0062] Step S1-1, dissolving 1 g of collagen in 2 L of 0.5 mol / L acetic acid solution to prepare a collagen acid solution;
[0063] Step S1-2, keep stirring the solution obtained in Step S1-1, slowly add 100 mL of CaCl with a concentration of 1 mol / L dropwise 2 solution;
[0064] Step S1-3, continue to stir the solution obtained in step S1-2, and slowly add 100 mL of Na with a concentration of 0.6 mol / L dropwise 2 HPO 4 solution;
[0065] Step S1-4, continuously stirring the solution obtained in step S1-3, slowly adding 1 mol / L NaOH solution dropwise unt...
Embodiment 2
[0072] Embodiment 2, preparation of high-strength collagen / nano calcium phosphate / polylactic acid composite artificial bone
[0073] First, the collagen / nano-calcium phosphate composite material was prepared as described in Steps S1-1 to S1-5 of Example 1.
[0074] Then, the preparation of the collagen / nano-calcium phosphate / polylactic acid composite material includes:
[0075] Step S2-1, taking 1 g of polylactic acid with a molecular weight of 100,000 and dissolving it in 10 mL of 1,4-dioxane at 50°C to prepare a polylactic acid solution;
[0076] Step S2-2, adding 1 g of the dry powder prepared in step S1-5 to the polylactic acid solution obtained in step S2-1, and mixing uniformly to prepare a collagen / nano calcium phosphate / polylactic acid mixed suspension system;
[0077] Step S2-3, freeze the mixed suspension system obtained in step S2-2 at -10°C for 2 hours, then freeze-dry for 48 hours, and then transfer to a vacuum drying oven with a vacuum degree of -0.1MPa and dry ...
Embodiment 3
[0081] Embodiment 3, preparation of high-strength collagen / nano calcium phosphate / polylactic acid-glycolic acid copolymer composite artificial bone
[0082] Materials were prepared according to the steps described in Example 2. Wherein, the polylactic acid described in step S2-1 is replaced with a polylactic acid-glycolic acid copolymer (lactic acid / glycolic acid=50 / 50) with a molecular weight of 120,000, the applied pressure in step S3-2 is 155kN, and the remaining operating and process parameters are not changed. Change, so as to obtain collagen / nano calcium phosphate / polylactic acid-glycolic acid copolymer composite artificial bone.
[0083] After testing, the composite artificial bone density is 1.85g / cm 3 , the compressive strength is 145MPa, and the bending strength is 84MPa, which is suitable for the repair of human bone defects in load-bearing parts.
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