Silicon-doped hydroxyapatite based vascularization-promoting porous scaffold material, and preparation method and application of porous scaffold material
A silicon hydroxyapatite and porous scaffold technology, applied in medical science, prostheses, etc., can solve problems affecting skin function reconstruction, low degree of vascularization, difficult skin self-healing, etc., to achieve controllable biodegradability and Mechanical properties, enhanced cell adhesion, and reduced agglomeration effects
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2019-12-27
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Abstract
Description
technical field
[0001] The invention belongs to the technical field of biomaterials, and in particular relates to a silicon-doped hydroxyapatite-based porous scaffold material for promoting vascularization and its preparation method and application. Background technique
[0002] The skin is the largest organ of the human body and acts as a barrier between the internal and external environment. The skin has a certain self-healing ability, but it is difficult for the skin to heal itself due to major trauma, severe burns, or extremely damaged skin caused by metabolic diseases such as diabetes. At present, the research on skin tissue engineering scaffold and its role in skin repair has made great progress. Its structure is similar to human skin, and it has the function of isolation and protection of skin. General skin repair materials have good biocompatibility. However, the degree of vascularization of the current skin repair products is not high during the transplantation pro...
Examples
Embodiment 1
[0050] A kind of silicon-doped hydroxyapatite-based porous scaffold material (PVA / HA-Si) of the present embodiment, the molecular formula of the scaffold material is Ca 10 (PO 4 ) 6-x (SiO 4 ) x (OH) 2-x , wherein: x=0.5, the mass ratio of PVA to HA-Si in the scaffold material is 1:40.
[0051] In this embodiment, the above-mentioned silicon-doped hydroxyapatite-based porous scaffold material for promoting vascularization is prepared by the following method, which specifically includes the following steps:
[0052] 1) Preparation of PVA solution: Weigh 0.4972g of polyvinyl alcohol, add 11mL of deionized water, stir magnetically at room temperature for 30min, put it in a water bath after swelling, and slowly raise the temperature to 85°C; continue stirring to dissolve completely; obtain the PVA solution; : the PVA molecular weight is 110000-130000Da; the mass fraction of PVA in the PVA solution is 4.3%.
[0053] 2) Preparation of PVA-CaCl 2 Solution: Weigh 0.0189g calciu...
Embodiment 2
[0058] A porous scaffold material based on silicon-doped hydroxyapatite to promote vascularization in this embodiment, the molecular formula of the scaffold material is Ca 10 (PO 4 ) 6-x (SiO 4 ) x (OH) 2-x , wherein: x=0.5, the mass ratio of PVA to HA-Si in the scaffold material is 1:40.
[0059] In this embodiment, the above-mentioned silicon-doped hydroxyapatite-based porous scaffold material for promoting vascularization is prepared by the following method, which specifically includes the following steps:
[0060] 1) Preparation of PVA solution: Weigh 0.4972g of polyvinyl alcohol, add 20mL of deionized water, stir magnetically at room temperature for 30min, put it in a water bath after swelling, and slowly raise the temperature to 85°C; continue stirring to dissolve completely; obtain a PVA solution; : the PVA molecular weight is 110000~130000Da; the mass fraction of PVA in the PVA solution is 2.4%.
[0061] 2) Preparation of PVA-CaCl 2 Solution: Weigh 0.0189g calci...
Embodiment 3
[0066] A porous scaffold material based on silicon-doped hydroxyapatite to promote vascularization in this embodiment, the molecular formula of the scaffold material is Ca 10 (PO 4 ) 6-x (SiO 4 ) x (OH) 2-x , where: x=0.25.
[0067] In this embodiment, the above-mentioned silicon-doped hydroxyapatite-based porous scaffold material for promoting vascularization is prepared by the following method, which specifically includes the following steps:
[0068] 1) Preparation of PVA solution: Weigh 0.4972g of polyvinyl alcohol, add 20mL of deionized water, stir magnetically at room temperature for 30min, put it in a water bath after swelling, and slowly raise the temperature to 85°C; continue stirring to dissolve completely; obtain a PVA solution; : the PVA molecular weight is 110000~130000Da; the mass fraction of PVA in the PVA solution is 2.4%.
[0069] 2) Preparation of PVA-CaCl 2 Solution: Weigh 0.0189g calcium chloride dihydrate and add it to 2.5mL deionized water, adjust ...