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Template-assisted, Sol-gel Fabrication of Biocompatible, Hierarchically Porous Hydroxyapatite Scaffolds

机译:模板辅助,溶胶 - 凝胶制造生物相容性,分层多孔羟基磷灰石支架

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摘要

Hierarchically porous hydroxyapatite (HHA) scaffolds were synthesized by template-assisted sol-gel chemistry. Polyurethane foam and a block copolymer were used as templates for inducing hierarchically porous structures. The HHA scaffolds exhibited open porous structures with large pores of 400–600 µm and nanoscale pores of ~75 nm. In comparison with conventional hydroxyapatite (CHA), HHA scaffolds exhibited significantly higher surface areas and increased protein adsorption for bovine serum albumin and vitronectin. Both the HHA and CHA scaffolds exhibited well in vitro biocompatibility. After 1 day, Saos-2 osteoblast-like cells bound equally well to both HHA and CHA scaffolds, but after 7 days in culture, cell proliferation was significantly greater on the HHA scaffolds (p < 0.01). High surface area and hierarchical porous structure contributed to the selective enhancement of osteoblast proliferation on the HHA scaffolds.
机译:通过模板辅助溶胶 - 凝胶化学合成分层多孔羟基磷灰石(HHA)支架。聚氨酯泡沫和嵌段共聚物用作诱导分层多孔结构的模板。 HHA支架表现出开放的多孔结构,具有400-600μm的大孔和纳米级〜75nm的孔隙。与常规羟基磷灰石(CHA)相比,HHA支架表现出显着较高的表面积和牛血清白蛋白和VITRONECTIN的蛋白质吸附增加。 HHA和CHA支架均在体外生物相容性良好。 1天后,SAOS-2骨赘样细胞同样适用于HHA和CHA支架,但在培养7天后,HHA支架在HHA支架上显着更大(P <0.01)。高表面积和分层多孔结构有助于选择性增强HHA支架上的成骨细胞增殖。

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