首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Antibacterial and Osteogenic Functionalization of Titanium With Silicon/Copper-Doped High-Energy Shot Peening-Assisted Micro-Arc Oxidation Technique
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Antibacterial and Osteogenic Functionalization of Titanium With Silicon/Copper-Doped High-Energy Shot Peening-Assisted Micro-Arc Oxidation Technique

机译:硅/铜掺杂高能射击喷丸辅助微弧氧化技术的抗菌和成骨官能化

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Antibacterial and osteogenic functionalization of titanium (Ti) implants will greatly expand their clinical indications in immediate implant therapy, accelerate osteointegration and enhance long-term prognosis. We had recently shown that the high-energy shot peening (HESP)-assisted micro-arc oxidation (MAO) significantly improved the bioactivity and coating stability of Ti-based substrates. In this study, we further functionalized Ti with antibacterial and osteogenic properties by doping silicon (Si) and/or copper (Cu) ions into HESP/MAO-treated coatings. Physicochemical characterization displayed that the doping of Si and Cu in HESP/MAO-treated coatings (Si/Cu-MAO) did not significantly change their surface topography, roughness, crystal structure, coating thickness, bonding strength, and wettability. The results of X-ray photoelectron spectroscopy (XPS) showed that Si and Cu in the Si/Cu-MAO coating was in the form of silicate radical (SiO32-) and bivalent copper (Cu2 ), respectively. The total amounts of Si and Cu were about 13.5 and 5.8 μg/cm2, which released about 33.2% and 31.3% within 14 d, respectively. Compared with the control group (MAO), Si doping samples (MAO-Si) significantly increased the cell viability, alkaline phosphatase (ALP) activity, mineralization and osteogenic genes (ALP, collagen I and osteocalcin) expression of MC3T3-E1 cells. Furthermore, the addition of Cu presented good bactericidal property against both Staphylococcus aureus and Streptococcus mutans (even under the co-culture condition of bacteria and MC3T3-E1 cells): the bacteriostatic rate of both bacteria was over 95%. In conclusion, the novel bioactive Si/Cu-MAO coating with antibacterial and osteogenic properties is a promising functionalization method for orthopedic and dental implants, especially in the immediate implant treatment with an infected socket.
机译:钛(Ti)植入物的抗菌和成骨官能化将极大地扩展其立即植入治疗,加速骨整折和增强长期预后的临床适应症。我们最近表明,高能量射击喷丸(HESP)的微电弧氧化(MAO)显着提高了Ti基底物的生物活性和涂层稳定性。在该研究中,我们通过将硅(Si)和/或铜(Cu)离子掺杂到Hesp / Mao处理的涂层中,通过抗菌和成骨特性进一步官能化Ti。物理化学表征显示Si和Cu在Hesp / Mao处理的涂层中的掺杂(Si / Cu-MaO)没有显着改变它们的表面形貌,粗糙度,晶体结构,涂层厚度,粘合强度和润湿性。 X射线光电子能谱(XPS)的结果表明,Si / Cu-MAO涂层中的Si和Cu分别以硅酸盐基团(SiO 32-)和二价铜(Cu2)的形式。 Si和Cu的总量为约13.5和5.8μg/ cm 2,分别在14d中释放约33.2%和31.3%。与对照组(MAO)相比,SI掺杂样品(MAO-SI)显着增加了MC3T3-E1细胞的细胞活力,碱性磷酸酶(ALP)活性,矿化和成骨基因(ALP,胶原I和骨液)的表达。此外,添加Cu对金黄色葡萄球菌和链球菌(Sreptococcus)(即使在细菌和MC3T3-E1细胞的共培养条件下)呈现良好的杀菌性质:两种细菌的​​抑菌率超过95%。总之,具有抗菌和成骨特性的新型生物活性Si / Cu-MaO涂层是用于骨科和牙科植入物的有希望的官能化方法,特别是在用感染的插座立即植入物处理中。

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