首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Hybrid nanostructured hydroxyapatite-chitosan composite scaffold: bioinspired fabrication, mechanical properties and biological properties
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Hybrid nanostructured hydroxyapatite-chitosan composite scaffold: bioinspired fabrication, mechanical properties and biological properties

机译:杂化纳米结构羟基磷灰石-壳聚糖复合支架:生物启发的制造,力学性能和生物学特性。

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摘要

The fabrication of bone scaffolds with interconnected porous structure, adequate mechanical properties, excellent biocompatibility and osteoinductivity presents a great challenge. Herein, a hybrid nanostructured hydroxyapatite-chitosan (HA-CS) composite scaffold has been fabricated according to the following steps: (i) the deposition of brushite-CS on a CS fibre porous scaffold by a dip-coating method; and (ii) the formation of a hybrid nanostructured HA-CS composite scaffold by the in situ conversion of brushite to HA using a bioinspired mineralization process. The hybrid HA-CS composite scaffold possesses three-dimensional (3D) interconnected pores with pore sizes of 30-80 mu m. The HA rods with a length of similar to 200 nm and width of similar to 50 nm are perpendicularly oriented to the CS fibres. Interestingly, the above-mentioned HA rods are composed of many smaller nanorods with a length of similar to 40 nm and width of similar to 10 nm oriented along the c-axis. The hybrid nanostructured HA-CS composite scaffold exhibits good mechanical properties with a compression strength of 9.41 +/- 1.63 MPa and an elastic modulus of 0.17 +/- 0.02 GPa, which are well-matched to those of trabecular bone. The influences of the hybrid HA-CS composite scaffold on cells have been investigated using human bone marrow stem cells (hBMSCs) as cell model and the CS fibre porous scaffold as the control sample. The hybrid HA-CS composite scaffold not only supports the adhesion and proliferation of hBMSCs, but also improves the osteoinductivity. The alkaline phosphatase activity and mineralization deposition on the hybrid HA-CS composite scaffold are higher than those on the CS fibre porous scaffold. Moreover, the hybrid HA-CS composite scaffold can promote the formation of new bone in rat calvarial defects as compared with the CS fibre porous scaffold. The excellent biocompatibility, osteoinductivity and mechanical properties suggest that the hybrid nanostructured HA-CS composite scaffold has great potential for bone tissue engineering.
机译:具有互连的多孔结构,足够的机械性能,优异的生物相容性和骨诱导性的骨支架的制造提出了巨大的挑战。在此,按照以下步骤制备了杂化纳米结构羟基磷灰石-壳聚糖(HA-CS)复合支架:(i)通过浸涂法将透钙磷石-CS沉积在CS纤维多孔支架上; (ii)通过利用生物启发的矿化方法将透钙磷石原位转化为HA而形成杂化的纳米结构HA-CS复合支架。混杂的HA-CS复合支架具有三维(3D)互连的孔,其孔径为30-80μm。具有大约200 nm的长度和大约50 nm的宽度的HA棒垂直于CS纤维定向。有趣的是,上述HA棒由许多较小的纳米棒组成,这些纳米棒的长度约40 nm,宽度约10 nm沿c轴取向。杂化的纳米结构HA-CS复合支架具有良好的机械性能,其抗压强度为9.41 +/- 1.63 MPa,弹性模量为0.17 +/- 0.02 GPa,与小梁骨非常匹配。以人骨髓干细胞(hBMSCs)为细胞模型,以CS纤维多孔支架为对照样品,研究了混合型HA-CS复合支架对细胞的影响。混合HA-CS复合支架不仅支持hBMSCs的粘附和增殖,而且还改善了骨诱导能力。混合HA-CS复合支架上的碱性磷酸酶活性和矿化沉积高于CS纤维多孔支架上的碱性磷酸酶活性和矿化沉积。此外,与CS纤维多孔支架相比,杂合HA-CS复合支架可促进大鼠颅骨缺损中新骨的形成。优异的生物相容性,骨诱导性和机械性能表明,杂化纳米结构HA-CS复合支架在骨组织工程中具有巨大潜力。

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