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Composite scaffolds of mesoporous bioactive glass and polyamide for bone repair

机译:介孔生物活性玻璃和聚酰胺的复合支架用于骨修复

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摘要

A bone-implanted porous scaffold of mesoporous bioglass/polyamide composite (m-BPC) was fabricated, and its biological properties were investigated. The results indicate that the m-BPC scaffold contained open and interconnected macropores ranging 400–500 μm, and exhibited a porosity of 76%. The attachment ratio of MG-63 cells on m-BPC was higher than polyamide scaffolds at 4 hours, and the cells with normal phenotype extended well when cultured with m-BPC and polyamide scaffolds. When the m-BPC scaffolds were implanted into bone defects of rabbit thighbone, histological evaluation confirmed that the m-BPC scaffolds exhibited excellent biocompatibility and osteoconductivity, and more effective osteogenesis than the polyamide scaffolds in vivo. The results indicate that the m-BPC scaffolds improved the efficiency of new bone regeneration and, thus, have clinical potential for bone repair.
机译:制备了介孔生物玻璃/聚酰胺复合材料(m-BPC)的骨植入多孔支架,并对其生物学特性进行了研究。结果表明,m-BPC支架包含开放且相互连接的大孔,范围为400-500μm,并且孔隙率为76%。 MG-63细胞在m-BPC上的附着率在4小时时高于聚酰胺支架,当与m-BPC和聚酰胺支架一起培养时,具有正常表型的细胞扩展良好。当将m-BPC支架植入兔大腿骨的骨缺损中时,组织学评估证实,m-BPC支架在体内具有优异的生物相容性和骨传导性,并且比聚酰胺支架具有更有效的成骨作用。结果表明,m-BPC支架提高了新骨再生的效率,因此具有修复骨的临床潜力。

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