Department of Ceramics and Refractories, Faculty of Materials Science and Ceramics, AGH University of Science and Technology, Krakow 30-059, Poland.
Faculty of Electrical Engineering, Automatics, Computer Science and Biomedical Engineering, AGH University of Science and Technology, Krakow 30-059, Poland.
Mater Sci Eng C Mater Biol Appl. 2020 Jul;112:110968. doi: 10.1016/j.msec.2020.110968. Epub 2020 Apr 14.
The aim of the work was to develop innovative antibacterial hybrid coatings applied on implants that are used for anastomoses of animals' long bones and to assess their physicochemical and biological properties. Plates made of the titanium alloy were covered with composite hybrid layers so as to protect the implant surface against corrosion and to enhance it with antibacterial properties.The hybrid coatings were obtained electrochemical oxidation and sol-gel. First, a layer of titanium nanotubes was applied to the implants surface through anodization. Next, the sol-gel method was used to create the second layer with silver nanoparticles. The microstructure examination of the materials was performed with the SEM. The phase composition analysis was carried out via the X-ray diffraction. The surface parameters (roughness, contact angle and free surface energy) were assessed. Biological studies of implants were conducted, including the analysis of degradation processes, cell response and bactericidal activity. The results confirmed that the hybrid antibacterial layers effectively protected the implant surface against scratches and corrosion and eliminated bacteria, which in turn would promote bone healing. The advantageous physicochemical and biological properties of metallic implants with hybrid composite layers raise hopes for their applicability in the veterinary treatment of bone fractures.
本工作旨在开发应用于动物长骨吻合术的植入物的创新抗菌混合涂层,并评估其理化和生物学性能。钛合金板覆盖有复合混合层,以保护植入物表面免受腐蚀,并赋予其抗菌性能。混合涂层通过电化学氧化和溶胶-凝胶法获得。首先,通过阳极氧化在植入物表面施加一层钛纳米管。然后,使用溶胶-凝胶法用银纳米颗粒制造第二层。使用 SEM 对材料进行微观结构检查。通过 X 射线衍射进行相组成分析。评估表面参数(粗糙度、接触角和自由表面能)。对植入物进行了生物学研究,包括降解过程、细胞反应和杀菌活性分析。结果证实,抗菌混合层可有效保护植入物表面免受划伤和腐蚀,并消除细菌,从而促进骨愈合。具有混合复合材料层的金属植入物的有利理化和生物学特性为其在兽医治疗骨折方面的应用带来了希望。