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首页> 外文期刊>Bioactive Materials >Implantable PEKK/tantalum microparticles composite with improved surface performances for regulating cell behaviors, promoting bone formation and osseointegration
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Implantable PEKK/tantalum microparticles composite with improved surface performances for regulating cell behaviors, promoting bone formation and osseointegration

机译:具有改进的表面性能的可植入的PEKK /钽微粒复合,用于调节细胞行为,促进骨形成和骨整合

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摘要

Polyetherketoneketone (PEKK) exhibits admirable biocompatibility and mechanical performances but bioinert while tantalum (Ta) possesses excellent osteogenesis and osseointegration but high elastic modulus and density, and processing is too difficult and expensive. In the present study, combining of the advantages of both PEKK and Ta, implantable composites of PEKK/Ta were fabricated by blending PEKK with Ta microparticles of 20 v% (PT20) and 40 v% (PT40) content. In comparison with PT20 and PEKK, the surface hydrophilicity, surface energy, roughness and proteins adsorption as well as mechanical performances of PT40 significantly increased because of the higher Ta particles content in PEKK. Furthermore, PT40 exhibited the mechanical performances (e.g., compressive strength and modulus of elasticity) close to the cortical bone of human. Compared with PT20 and PEKK, PT40 with higher Ta content remarkably enhanced the responses (including adhesion, proliferation and osteogenic differentiation) of MC3T3-E1 cells in vitro . Moreover, PT40 markedly improved bone formation as well as osseointegration in vivo . In short, incorporation of Ta microparticles into PEKK created implantable composites with improved surface performances, which played key roles in stimulating cell responses/bone formation as well as promoting osseointegration. PT40 might have great potential for bear-loading bone substitute.
机译:聚醚酮酮(PEKK)表现出令人钦佩的生物相容性和机械性能,但钽(TA)具有优异的成骨和骨整合而且具有高弹性模量和密度,并且加工太困难且昂贵。在本研究中,通过将PEKK与20V%(PT20)和40V%(PT40)含量的TA微粒混合来制造PEKK和TA,PEKK / TA的可植入复合材料的组合。与PT20和PEKK相比,由于PEKK中的TA颗粒含量较高,PT40的表面亲水性,表面能,粗糙度和蛋白质吸附以及PT40的机械性能显着增加。此外,PT40靠近人的皮质骨表现出靠近皮质骨的机械性能(例如,抗压强度和弹性模量)。与PT20和PEKK相比,具有较高TA含量的PT40显着增强了体外MC3T3-E1细胞的反应(包括粘附性,增殖和骨质发生)。此外,PT40显着改善了骨形成以及体内骨骼的骨形成。简而言之,将TA微粒掺入PEKK产生的植入复合材料,其表面性能改善,这在刺激细胞应答/骨形成中起着关键作用以及促进骨整合。 PT40可能对熊装载骨替代品具有很大的潜力。

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