Bioactive scaffold with imitation hot dog structure and its preparation method and application
A bioactive, green body technology, applied in the direction of manufacturing tools, additive manufacturing, tissue regeneration, etc., can solve the problems of inability to form a continuous pore structure, low drug loading efficiency, and low porosity
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Embodiment 1
[0067] Take 5g of pure feldspar powder (purchased from Kunshan Huaqiao Technology New Material Co., Ltd.), 0.32g of sodium alginate powder and 2.5g of F127 aqueous solution with a mass fraction of 20%, after fully mixing, use 3D printing technology to prepare a hollow tube 3D printing bracket .
[0068] The printed scaffold was calcined at 1350°C for 3 hours to obtain a pure hollow tube 3D printed scaffold HT-AKT.
[0069] Preparation of ice template slurry: the mass fraction of feldspar in aqueous solution is 20%, 30%, 40%, and 50%, respectively, the mass fraction of sodium polyacrylate is 1.5%, and the mass fraction of PVA is 1.5%. Ball mill at 500r / min for 1.5h.
[0070] Place the hollow tube support (HT-AKT) in the mold containing the above-mentioned feldspar ice template slurry, use the ice template method, and use a one-way cold source at -70 to -80°C to freeze, so that the slurry grows into the hollow in the pipeline. Freeze-dry the obtained green body for 36 hours, ta...
Embodiment 2
[0093] Take 5g of pure β-TCP powder (purchased from Kunshan Huaqiao Technology Co., Ltd.), 0.22g of sodium alginate powder and 1.5g of F127 aqueous solution with a mass fraction of 30% are fully mixed, and then use 3D printing technology to prepare single-channel empty tube 3D printing stand.
[0094] The printed scaffold was calcined at 11000°C for 3 hours to obtain a pure single-channel 3D printed scaffold.
[0095] Prepare ice template slurry: the mass fraction of β-TCP in aqueous solution is 10%-50%, the mass fraction of sodium polyacrylate is 1%-3%, and the mass fraction of PVA is 4%-5%. Ball mill at 500r / min for 1.5-5h.
[0096] The single-channel β-TCP scaffold is placed in a mold containing 10%-50% β-TCP ice-template slurry, and the ice-template method is used to make the slurry grow into the hollow channel. The obtained green body is freeze-dried for 24-48 hours, and the scaffold embedded in the green body block is taken out and sintered at 1100° C. for 3-5 hours to...
Embodiment 3
[0098] Take 6g of pure feldspar powder, 0.3g of sodium alginate powder and 1.5g of F127 aqueous solution with a mass fraction of 20% and mix thoroughly, and then use 3D printing technology to prepare a hollow tube 3D printed scaffold.
[0099] The printed scaffold was calcined at 1350°C for 3 hours to obtain a pure hollow tube 3D printed scaffold HT-AKT.
[0100] Prepare ice template slurry: the mass fraction of graphene oxide (GO) (purchased from Haoye Co., Ltd.) in aqueous solution is 5-20%, the mass fraction of sodium polyacrylate is 1.5%-2.5%, and the mass fraction of PVA is 3 %-6%, the slurry is ball-milled for 1.5-2h in a high-energy ball mill at 500r / min.
[0101] The hollow tube support (HT-AKT) was placed in a mold containing 5%-20% GO ice templating slurry, and the ice templating method was used to make the slurry grow into the hollow tube. The obtained body was freeze-dried for 24-48 hours to obtain a GO bioceramic scaffold with imitation hot dog structure.
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