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Biomimetic Fabrication and Characterization of BG/COL/HCA Scaffolds for Bone Tissue Engineering

机译:BG / COL / HCA支架对骨组织工程的仿生制造与表征

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The bone tissue engineering scaffold was developed by compounded the type I collagen with the porous scaffold of the sol-gel derived bioactive glass (BG) in the system CaO-P{sub}2O{sub}5-SiO{sub}2. The resultant porous scaffold was treated in supersaturated calcification solution (SCS) to form the surface layer of hydroxyl-carbonate-apatite (HCA) since the type I collagen possessed good biocompatibility and bio-absorbability, and also, the ability of inducting calcium phosphates to precipitated inside and outside the collagen fibers where the collagen fibers acted as bio-macromolecules template for formation of bone-like inorganic minerals in nature bone such as: octo-calcium phosphate (OCP), tri-calcium phosphate (TCP) and hydroxyl-carbonate-apatite (HCA). On the other hand, the sol-gel derived bioactive glass also played an important role in formation of the above bio-minerals owing to its serial chemical reactions with the body fluid. The in vitro study in supersaturated calcification solution SCS indicated that the surface of the porous scaffold was able to induce formation of bone-like HCA crystals on the pore walls of the scaffold which possessed satisfactory cells biocompatibility.
机译:通过将I型胶原蛋白混合在系统CaO-P {Sub} 5-SiO} 2中,通过将I型胶原蛋白混合,通过将I型胶原蛋白混合而开发了骨组织工程支架。在过饱和钙化溶液(SCS)中处理所得多孔支架以形成羟基 - 碳酸盐 - 磷灰石(HCA)的表面层,因为I型胶原蛋白具有良好的生物相容性和生物吸收性,以及磷酸钙赋予磷酸钙的能力胶原纤维内外沉淀,其中胶原纤维作用为生物 - 大分子模板,用于在自然界中形成骨状无机矿物,例如:辛磷酸钙(OCP),三钙磷酸钙(TCP)和羟基 - 碳酸盐 - 雀雀(HCA)。另一方面,由于其与体液的连续化学反应,溶胶 - 凝胶衍生的生物活性玻璃也在形成上述生物矿物质中发挥了重要作用。在超饱和钙化溶液SC中的体外研究表明,多孔支架的表面能够在支架的孔壁上诱导形成令人满意的细胞生物相容性的骨状HCA晶体。

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