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Strontium hydroxyapatite/chitosan nanohybrid scaffolds with enhanced osteoinductivity for bone tissue engineering

机译:羟基磷灰石/壳聚糖纳米布里型支架,具有增强的骨组织工程骨诱导性

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摘要

For the clinical application of bone tissue engineering with the combination of biomaterials and mesenchymal stem cells (MSCs), bone scaffolds should possess excellent biocompatibility and osteoinductivity to accelerate the repair of bone defects. Herein, strontium hydroxyapatite [SrHAP, Ca10-xSrx(PO4)(6)(OH)(2)]/chitosan (CS) nanohybrid scaffolds were fabricated by a freeze-drying method. The SrHAP nanocrystals with the different x values of 0, 1, 5 and 10 are abbreviated to HAP, Sr1HAP, Sr5HAP and Sr10HAP, respectively. With increasing x values from 0 to 10, the crystal cell volumes and axial lengths of SrHAP become gradually large because of the greater ion radius of Sr2+ than Ca2+, while the crystal sizes of SrHAP decrease from 70.4 nm to 46.7 nm. The SrHAP/CS nanohybrid scaffolds exhibits three-dimensional (3D) interconnected macropores with pore sizes of 100-400 mu m, and the SrHAP nanocrystals are uniformly dispersed within the scaffolds. In vitro cell experiments reveal that all the HAP/CS, Sr1HAP/CS, Sr5HAP/CS and Sr10HAP/CS nanohybrid scaffolds possess excellent cytocompatibility with the favorable adhesion, spreading and proliferation of human bone marrow mesenchymal stem cells (hBMSCs). The Sr5HAP nanocrystals in the scaffolds do not affect the adhesion, spreading of hBMSCs, but they contribute remarkably to cell proliferation and osteogenic differentiation. As compared with the HAP/CS nanohybrid scaffold, the released Sr2+ ions from the SrHAP/CS nanohybrid scaffolds enhance alkaline phosphatase (ALP) activity, extracellular matrix (ECM) mineralization and osteogenic-related COL-1 and ALP expression levels. Especially, the Sr5HAP/CS nanohybrid scaffolds exhibit the best osteoinductivity among four groups because of the synergetic effect between Ca2+ and Sr2+ ions. Hence, the Sr5HAP/CS nanohybrid scaffolds with excellent cytocompatibility and osteogenic property have promising application for bone tissue engineering. (C) 2016 Published by Elsevier B.V.
机译:对于骨组织工程与生物材料和间充质干细胞(MSCs)组合的临床应用,骨支架应具有优异的生物相容性和骨诱导性,以加速骨缺损的修复。这里,通过冷冻干燥方法制备羟基磷灰石[SRHAP,CA10-XSRX(PO4)(6)(2)(2)(2)(2)(2)(2)(2)(2)(2)(2))] /壳聚糖(CS)纳米嗜烷烃。具有0,1,5和10的不同X值的SRHAP纳米晶体分别缩写为HAP,SR1HAP,SR5HAP和SR10HAP。随着0至10的增加,由于SR2 +的离子半径比CA2 +更大,SRHAP的晶体电池体积和SRHAP的轴向长度变大,而SRHAP的晶体尺寸从70.4nm降低到46.7nm。 SRHAP / CS纳米混合物支架具有孔径为100-400μm的三维(3D)互连的大孔,并且SRHAP纳米晶体均匀地分散在支架内。体外细胞实验表明,所有HAP / CS,SR1HAP / CS,SR5HAP / CS和SR10HAP / CS纳米嗜型支架具有优异的细胞粘性,具有人骨髓间充质干细胞(HBMSCs)的良好粘附,扩散和增殖。支架中的SR5HAP纳米晶体不影响HBMSC的粘附性,伴有伴随的粘附性,但它们具有显着的细胞增殖和成骨分化贡献。与HAP / CS纳米冬次合作支架相比,来自SRHAP / CS纳米冬冬壳支架的释放的SR2 +离子增强了碱性磷酸酶(ALP)活性,细胞外基质(ECM)矿化和骨质发生相关的COL-1和ALP表达水平。特别是,由于CA2 +和SR2 +离子之间的协同作用,SR5HAP / CS纳米含量支架在四组中表现出最佳的骨诱导性。因此,具有优异的细胞组织性和骨质发生性的SR5HAP / CS纳米嗜含量支架具有对骨组织工程的有望应用。 (c)2016年由Elsevier B.V发布。

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