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Three dimensional printing of calcium sulfate and mesoporous bioactive glass scaffolds for improving bone regeneration in vitro and in vivo

机译:硫酸钙和中孔生物活性玻璃支架的三维印刷,用于改善体外骨再生和体内骨再生

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In the clinic, bone defects resulting from infections, trauma, surgical resection and genetic malformations remain a significant challenge. In the field of bone tissue engineering, three-dimensional (3D) scaffolds are promising for the treatment of bone defects. In this study, calcium sulfate hydrate (CSH)/mesoporous bioactive glass (MBG) scaffolds were successfully fabricated using a 3D printing technique, which had a regular and uniform square macroporous structure, high porosity and excellent apatite mineralization ability. Human bone marrow-derived mesenchymal stem cells (hBMSCs) were cultured on scaffolds to evaluate hBMSC attachment, proliferation and osteogenesis-related gene expression. Critical-sized rat calvarial defects were applied to investigate the effect of CSH/MBG scaffolds on bone regeneration in vivo. The in vitro results showed that CSH/MBG scaffolds stimulated the adhesion, proliferation, alkaline phosphatase (ALP) activity and osteogenesis-related gene expression of hBMSCs. In vivo results showed that CSH/MBG scaffolds could significantly enhance new bone formation in calvarial defects compared to CSH scaffolds. Thus 3D printed CSH/MBG scaffolds would be promising candidates for promoting bone regeneration.
机译:在临床中,感染引起的骨缺陷,创伤,手术切除和遗传畸形仍然是一个重大挑战。在骨组织工程领域,三维(3D)支架是对骨缺陷的治疗有望的。在该研究中,使用3D印刷技术成功制造硫酸钙水合物(CSH)/介孔的生物活性玻璃(MBG)支架,其具有规则均匀的方形大孔结构,高孔隙度和优异的磷酸盐矿化能力。人骨髓衍生的间充质干细胞(HBMSCs)在支架上培养,以评估HBMSC附着,增殖和骨质发生相关的基因表达。临界大小的大鼠颅骨缺陷被应用于研究CSH / MBG支架对体内骨再生的影响。体外结果表明,CSH / MBG支架刺激了HBMSCs的粘附,增殖,碱性磷酸酶(ALP)活性和骨质发生相关基因表达。在体内结果表明,与CSH支架相比,CSH / MBG支架可以显着增强颅骨缺陷中的新骨形成。因此,3D印刷CSH / MBG支架将是用于促进骨再生的候选者。

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