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首页> 外文期刊>International Journal of Nanomedicine >Macro-Microporous Surface with Sulfonic Acid Groups and Micro-Nano Structures of PEEK/Nano Magnesium Silicate Composite Exhibiting Antibacterial Activity and Inducing Cell Responses
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Macro-Microporous Surface with Sulfonic Acid Groups and Micro-Nano Structures of PEEK/Nano Magnesium Silicate Composite Exhibiting Antibacterial Activity and Inducing Cell Responses

机译:宏观微孔表面与磺酸基团和PEEK /纳米硅酸镁复合材料的微纳米结构表现出抗菌活性和诱导细胞应答

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Purpose: To improve the surface bio-properties of polyetheretherketone (PEEK)/nano magnesium silicate (n-MS) composite (PC). Materials and Methods: The surface of PC was firstly treated by particle impact (PCP) and subsequently modified by concentrated sulfuric acid (PCPS). Results: PCPS surface exhibited not only macropores with sizes of about 150 μm (fabricated by particle impact) but also micropores with sizes of about 2 μm (created by sulfonation of PEEK) on the macroporous walls, and sulfonic acid (-SOsub3/subH) groups were introduced on PCPS surface. In addition, many n-MS nanoparticles were exposed on the microporous walls, which formed micro-nano structures. Moreover, the surface roughness and hydrophilicity of PCPS were obviously enhanced as compared with PC and PCP. Moreover, the apatite mineralization of PCPS in simulated body fluid (SBF) was obviously improved as compared with PC. Furthermore, compared with PC and PCP, PCPS exhibited antibacterial performances due to the presence of -SOsub3/subH groups. In addition, the responses (eg, adhesion and proliferation as well as differentiation) of bone marrow mesenchymal stem cell of rat to PCPS were significantly promoted as compared with PC and PCP. Conclusion: PCPS with macro-microporous surface containing -SOsub3/subH groups and micro-nano structures exhibited antibacterial activity and induced cell responses, which might possess large potential for bone substitute and repair.
机译:目的:改善聚醚醚酮(PEEK)/纳米硅酸镁(N-MS)复合物(PC)的表面生物特性。材料和方法:首先通过颗粒冲击(PCP)处理PC的表面,随后通过浓硫酸(PCP)进行改性。结果:PCPS表面不仅表现出约150μm的大小(通过颗粒撞击制造),还表现出大约2μm(通过磺化Zeek)上的尺寸的微孔,以及磺酸(-SO 在PCP表面引入3个 h)组。另外,在形成微纳米结构的微孔壁上暴露了许多N-MS纳米颗粒。此外,与PC和PCP相比,PCP的表面粗糙度和PCP的亲水性明显增强。此外,与PC相比,模拟体液(SBF)中PCP的磷灰石矿化明显提高。此外,与PC和PCP相比,PCP由于-SO 3 H组而表现出抗菌性能。此外,与PC和PCP相比,大鼠对PCP的骨髓间充质干细胞的骨髓间充质干细胞的反应(例如,粘附和增殖以及分化。结论:含有-SO 3 H组的宏观微孔表面的PCP和微纳米结构表现出抗菌活性和诱导的细胞反应,这可能具有骨替代和修复的巨大潜力。

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