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首页> 外文期刊>Bioactive Materials >Gaseous sulfur trioxide induced controllable sulfonation promoting biomineralization and osseointegration of polyetheretherketone implants
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Gaseous sulfur trioxide induced controllable sulfonation promoting biomineralization and osseointegration of polyetheretherketone implants

机译:三氧化硫诱导可控磺化促进聚醚醚酮植入物的生物矿化和骨整合

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Fabricating a desired porous structure on the surface of biomedical polyetheretherketone (PEEK) implants for enhancing biological functions is crucial and difficult due to its inherent chemical inertness. In this study, a porous surface of PEEK implants was fabricated by controllable sulfonation using gaseous sulfur trioxide (SOsub3/sub) for different time (5, 15, 30, 60 and 90?min). Micro-topological structure was generated on the surface of sulfonated PEEK implants preserving original mechanical properties. The protein absorption capacity and apatite forming ability was thus improved by the morphological and elemental change with higher degree of sulfonation. In combination of the appropriate micromorphology and bioactive sulfonate components, the cell adhesion, migration, proliferation and extracellular matrix secretion were obviously enhanced by the SPEEK-15 samples which were sulfonated for 15?min. Finding from this study revealed that controllable sulfonation by gaseous SOsub3/sub would be an extraordinarily strategy for improving osseointegration of PEEK implants by adjusting the microstructure and chemical composition while maintaining excellent mechanical properties.
机译:在生物医学聚醚醚酮(PEEK)植入物表面上制造所需的多孔结构,用于增强生物学功能是至关重要的,由于其固有的化学惰性,难以实现。在这项研究中,通过使用气态硫(SO 3 )的可控磺化进行不同时间(5,15,30,60和90≤min),通过可控磺化来制造PEEK植入物的多孔表面。在保留原始机械性能的磺化PEEK植入物表面上产生微拓扑结构。因此,通过具有较高程度的磺化的形态和元素变化,改善了蛋白质吸收能力和磷灰石形成能力。结合适当的微晶和生物活性磺酸盐组分,Speek-15样品明显增强了细胞粘附,迁移,增殖和细胞外基质分泌,其磺化为15?min。从本研究发现,通过气态SO 3 通过调节微观结构和化学组成来改善PEEK植入物的骨整合,通过调节优异的机械性能来改善PEEK植入物的骨整合的极佳策略。

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