Radtke Aleksandra, Topolski Adrian, Jędrzejewski Tomasz, Kozak Wiesław, Sadowska Beata, Więckowska-Szakiel Marzena, Piszczek Piotr
Faculty of Chemistry, Nicolaus Copernicus University in Toruń, Gagarina 7, 87-100 Toruń, Poland.
Nano-Implant Ltd. Gagarina 5, 87-100 Toruń, Poland.
Nanomaterials (Basel). 2017 Apr 22;7(4):90. doi: 10.3390/nano7040090.
Morphologically different titania coatings (nanofibers (TNFs), nanoneedles (TNNs), and nanowires (TNWs)) were studied as potential biomedical materials. The abovementioned systems were produced in situ on Ti6Al4V substrates via direct oxidation processes using H₂O₂ and H₂O₂/CaCl₂ agents, and via thermal oxidation in the presence of Ar and Ar/H₂O₂. X-ray diffraction and Raman spectroscopy have been used to structurally characterize the produced materials. The morphology changes on the titanium alloy surface were investigated using scanning electron microscopy. The bioactivity of the samples has been estimated by the analysis of the produced titania coatings' biocompatibility, and by the determination of their ability to reduce bacterial biofilm formation. The photoactivity of the produced nanocoatings was also analyzed, in order to determine the possibility of using titania coated implant surfaces in the sterilization process of implants. Photocatalytic activity was estimated using the methylene blue photodegradation kinetics, in the presence of UV light.
研究了形态各异的二氧化钛涂层(纳米纤维(TNFs)、纳米针(TNNs)和纳米线(TNWs))作为潜在生物医学材料的性能。上述体系是通过使用H₂O₂和H₂O₂/CaCl₂试剂的直接氧化过程,以及在Ar和Ar/H₂O₂存在下的热氧化过程,原位制备在Ti6Al4V基体上的。利用X射线衍射和拉曼光谱对所制备的材料进行结构表征。采用扫描电子显微镜研究了钛合金表面的形貌变化。通过分析所制备的二氧化钛涂层的生物相容性以及测定其减少细菌生物膜形成的能力,对样品的生物活性进行了评估。还对所制备的纳米涂层的光活性进行了分析,以确定在植入物灭菌过程中使用涂覆有二氧化钛的植入物表面的可能性。在紫外光存在下,利用亚甲基蓝光降解动力学评估光催化活性。