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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Influences of tantalum pentoxide and surface coarsening on surface roughness, hydrophilicity, surface energy, protein adsorption and cell responses to PEEK based biocomposite
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Influences of tantalum pentoxide and surface coarsening on surface roughness, hydrophilicity, surface energy, protein adsorption and cell responses to PEEK based biocomposite

机译:钽五氧化钽和表面粗糙度对表面粗糙度,亲水性,表面能,蛋白质吸附和细胞反应对PEEK基生物复合的影响

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摘要

Polyetheretherketone (PEEK) biomaterial has become increasingly popular in orthopedic applications due to its favorable biocompatibility, biostability, mechanical strength and elastic modulus similar to natural bones. In this research, in order to improve the biological performances of PEEK, tantalum pentoxide (Ta2O5) was incorporated into PEEK to fabricate PEEK/Ta2O5 composites (PTC) using a method of cold press-sintering, and surface coarsening of PTC was prepared by sand blasting. The results showed that the Ta2O5 particles were uniformly disperse into PEEK, and thermal and mechanical properties of PTC were enhanced with the increase of Ta2O5 content. In addition, incorporating Ta2O5 into PEEK and surface coarsening could improve surface roughness, hydrophilicity, surface energy and protein absorption of PTC. Furthermore, the adhesion and proliferation as well as osteogenic differentiation of BMSCs on PTC were significantly promoted and regulated by Ta2O5 content and surface coarsening. The results indicated that surface coarsening of PTC (PTCS) with high surface roughness, hydrophilicity and surface energy could induce positive cellular responses, showing good cytocompatibility. PTCS might have a great potential as implants for bone repair.
机译:由于其良好的生物相容性,可消解,机械强度和弹性模量,聚醚醚酮(PEEK)生物材料在整形外科应用中越来越受欢迎。在本研究中,为了改善PEEK的生物学性能,钽五氧化钽(TA2O5)掺入PEEK以使用冷压烧结方法制造PEEK / TA2O5复合材料(PTC),并通过沙子制备PTC的表面粗化。爆破。结果表明,TA2O5颗粒均匀地分散到PEEK中,随着TA2O5含量的增加,PTC的热和机械性能增强。此外,将Ta2O5纳入PEEK和表面粗化可以改善PTC的表面粗糙度,亲水性,表面能和蛋白质吸收。此外,通过Ta 2 O 5含量和表面粗化显着促进和调节PTC上BMSCs对PTC的粘附和增殖。结果表明,具有高表面粗糙度,亲水性和表面能的PTC(PTCS)的表面粗化可诱导阳性细胞反应,显示出良好的细胞粘合性。 PTCS可能具有植入物的巨大潜力,用于骨骼修复。

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