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Mesoporous zirconia surfaces with anti-biofilm properties for dental implants

机译:中孔氧化锆表面具有抗生物膜的表面,用于牙科植入物

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Cytocompatible bioactive surface treatments conferring antibacterial properties to osseointegrated dental implants are highly requested to prevent bacteria-related peri-implantitis. Here we focus on a newly designed family of mesoporous coatings based on zirconia (ZrO2) microstructure doped with gallium (Ga), exploiting its antibacterial and pro-osseo-integrative properties. The ZrO2 films were obtained via sol-gel synthesis route using Pluronic F127 as templating agent, while Ga doping was gained by introducing gallium nitrate hydrate. Chemical characterization by means of x-ray photoelectron spectroscopy and glow discharge optical emission spectroscopy confirmed the effective incorporation of Ga. Then, coatings morphological and structural analysis were carried out by transmission electron microscopy and selected area electron diffraction unveiling an effective stabilization of both the mesoporous structure and the tetragonal ZrO2 phase. Specimens' cytocompatibility was confirmed towards gingival fibroblast and osteoblasts progenitors cultivated directly onto the coatings showing comparable metabolic activity and morphology in respect to controls cultivated on polystyrene. The presence of Ga significantly reduced the metabolic activity of the adhered oral pathogens Porphyromonas gingivalis and Aggregatibacter actinomycetemcomitans in comparison to untreated bulk zirconia (p < 0.05); on the opposite, Ga ions did not significantly reduce the metabolism of the oral commensal Streptococcus salivarius (p > 0.05) thus suggesting for a selective anti-pathogens activity. Finally, the coatings' ability to preserve cells from bacterial infection was proved in a co-culture method where cells and bacteria were cultivated in the same environment: the presence of Ga determined a significant reduction of the bacteria viability while allowing at the same time for cells proliferation. In conclusion, the here developed coatings not only demonstrated to satisfy the requested antibacterial and cytocompatibility properties, but also being promising candidates for the improvement of implantable devices in the field of implant dentistry.
机译:高度要求赋予渗透性牙科植入物的抗菌性能的细胞势能性生物活性表面处理,以防止与细菌相关的腹膜炎。在这里,我们专注于基于氧化锆(ZrO2)微观结构的新设计的介孔涂层系列,掺杂有镓(Ga),利用其抗菌和亲蛋白酶整合性质。通过使用Pluronic F127作为模板剂通过溶胶 - 凝胶合成途径获得ZrO2薄膜,而通过引入硝酸镓水合物来获得Ga掺杂。通过X射线光电子能谱和发光放电光学发射光谱的化学表征证实了Ga的有效掺入。然后,通过透射电子显微镜和选择的区域电子衍射揭示介绍的有效稳定的涂层形态和结构分析。结构和四方ZrO2相。标本的细胞锁定性被证实朝向直接培养到涂层上的牙型成纤维细胞和成骨细胞祖细胞,显示出在聚苯乙烯上培养的对照的可比代谢活性和形态学。 Ga的存在显着降低了粘附口服病原体卟啉肽的代谢活性,与未处理的散核氧化锆相比(P <0.05)相比,粘附口服病原体卟啉肽和聚合杆菌诱导术;在相反的情况下,GA离子没有显着降低口腔非聚合物链球菌的代谢(P> 0.05),从而表明选择性抗病原体活性。最后,证明了在相同环境中培养细胞和细菌的共培养方法中,证明了从细菌感染中保护细胞的能力:Ga的存在在允许同时允许的同时确定细菌活力的显着降低细胞增殖。总之,这里开发的涂层不仅证明了满足所要求的抗菌和细胞组分特性,而且还具有提高植入物牙科领域中可植入装置的候选者。

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