首页> 外文期刊>Journal of the Royal Society Interface >Novel nanocomposite biomaterials with controlled copper/calcium release capability for bone tissue engineering multifunctional scaffolds
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Novel nanocomposite biomaterials with controlled copper/calcium release capability for bone tissue engineering multifunctional scaffolds

机译:具有控制的铜/钙释放能力的新型纳米复合生物材料,用于骨组织工程多功能支架

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摘要

This work aimed to develop novel composite biomaterials for bone tissue engineering (BTE) made of bioactive glass nanopartides (Nbg) and alginate cross-linked with Cu2+ or Ca2+ (AlgNbgCu, AlgNbgCa, respectively). Two-dimensional scaffolds were prepared and the nanocomposite biomaterials were characterized in terms of morphology, mechanical strength, bioactivity, biodegradabffity, swelling capacity, release profile of the cross-linking cations and angiogenic properties. It was found that both Cu2+ and Ca2+ are released in a controlled and sustained manner with no burst release observed. Finally, in vitro results indicated that the bioactive ions released from both nanocomposite biomaterials were able to stimulate the differentiation of rat bone marrow-derived mesenchymal stem cells towards the osteogenic lineage. In addition, the typical endothelial cell property of forming tubes in Matrigel was observed for human umbilical vein endothelial cells when in contact with the novel biomaterials, particularly AlgNbgCu, which indicates their angiogenic properties. Hence, novel nanocomposite biomaterials made of Nbg and alginate cross-linked with Cu2+ or Ca2+ were developed with potential applications for preparation of multifunctional scaffolds for BTE.
机译:这项工作旨在开发由生物活性玻璃纳米粒子(Nbg)和与Cu2 +或Ca2 +交联的藻酸盐(分别为AlgNbgCu,AlgNbgCa)制成的用于骨组织工程(BTE)的新型复合生物材料。制备二维支架,并根据形态,机械强度,生物活性,生物降解性,溶胀能力,交联阳离子的释放曲线和血管生成特性对纳米复合生物材料进行表征。发现Cu 2+和Ca 2+均以受控和持续的方式释放,没有观察到爆发释放。最后,体外结果表明,两种纳米复合生物材料释放的生物活性离子均能够刺激大鼠骨髓间充质干细胞向成骨细胞系分化。另外,当与新型生物材料,尤其是AlgNbgCu接触时,观察到人脐静脉内皮细胞在基质胶中形成管的典型内皮细胞特性,这表明了它们的血管生成特性。因此,开发了由Nbg和藻酸盐与Cu2 +或Ca2 +交联而成的新型纳米复合生物材料,具有潜在的用途,可用于制备BTE的多功能支架。

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