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Biomimetic and osteogenic 3D silk fibroin composite scaffolds with nano MgO and mineralized hydroxyapatite for bone regeneration

机译:具有纳米MgO和矿化羟基磷灰石的仿生和成骨3D丝纤维素复合支架用于骨再生

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摘要

Artificial bioactive materials have received increasing attention worldwide in clinical orthopedics to repair bone defects that are caused by trauma, infections or tumors, especially dedicated to the multifunctional composite effect of materials. In this study, a weakly alkaline, biomimetic and osteogenic, three-dimensional composite scaffold (3DS) with hydroxyapatite (HAp) and nano magnesium oxide (MgO) embedded in fiber (F) of silkworm cocoon and silk fibroin (SF) is evaluated comprehensively for its bone repair potential in vivo and in vitro experiments, particularly focusing on the combined effect between HAp and MgO. Magnesium ions (Mg2+) has long been proven to promote bone tissue regeneration, and HAp is provided with osteoconductive properties. Interestingly, the weak alkaline microenvironment from MgO may also be crucial to promote Sprague-Dawley (SD) rat bone mesenchymal stem cells (BMSCs) proliferation, osteogenic differentiation and alkaline phosphatase (ALP) activities. This SF/F/HApano MgO (SFFHM) 3DS with superior biocompatibility and biodegradability has better mechanical properties, BMSCs proliferation ability, osteogenic activity and differentiation potential compared with the scaffolds adding HAp or MgO alone or neither. Similarly, corresponding meaningful results are also demonstrated in a model of distal lateral femoral defect in SD rat. Therefore, we provide a promising 3D composite scaffold for promoting bone regeneration applications in bone tissue engineering.
机译:人工生物活性物质而受到关注世界范围内不断增加骨科临床修复骨缺损由外伤,感染或肿瘤,尤其是专注于材料的多功能复合效应引起的。在这项研究中,弱碱性,仿生和成骨蚕茧和丝纤蛋白(SF)的嵌入光纤(F)中,三维复合支架(3DS)与羟基磷灰石(HAP)和纳米氧化镁(MgO)的综合评价用于体内和体外实验其骨修复的潜力,尤其集中在羟基磷灰石和MgO之间的组合的效果。镁离子(Mg2 +的)长期以来被证明促进骨组织再生,和HAP设置有骨传导性能。有趣的是,由MgO弱碱性微环境也可以是促进的Sprague-Dawley(SD)大鼠骨髓间充质干细胞(BMSC)的增殖,成骨细胞分化和碱性磷酸酶(ALP)活性是至关重要的。此SF / F / HAP /纳米的MgO(SFFHM)3DS具有优越的生物相容性和生物降解性具有较好的机械性能,骨髓干细胞的增殖能力,成骨活性和分化潜能与支架单独或既不添加羟基磷灰石或MgO比较。类似地,对应的有意义的结果也证明了在远端侧股骨缺损的SD大鼠的模型。因此,我们为促进骨组织工程骨再生应用的有前途的三维复合支架。

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