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Analysis of Titania Nanosheet Adsorption Behavior Using a Quartz Crystal Microbalance Sensor

机译:石英晶体微天平传感器分析二氧化钛纳米片的吸附行为

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We investigated the adsorption of albumin and fibronectin on a titania nanosheet- (TNS-) modified quartz crystal microbalance (QCM) sensor. A Ti QCM sensor was fabricated by reactive magnetron sputtering. A thin layer of Ti was deposited on the QCM sensor. This sensor was then alkali-modified by treatment with NaOH at room temperature to fabricate the titania nanosheets. Scanning probe microscopy, X-ray photoelectron spectroscopy, and scanning electron microscopy were performed to investigate the surface topology and chemical components of each sensor. The TNS had a titanium oxide film exhibiting a nodular structure and a thickness of 13 nm on the QCM sensor. Furthermore, QCM measurements showed significantly greater amounts of albumin and fibronectin adsorbed on the TNS than on titanium. The NaOH treatment of titanium modified the sensor surface and improved the adsorption behaviors of proteins related to the initial adhesion of bone marrow cells. Therefore, we concluded that TNS improves the initial adhesion between the implant materials and the surrounding tissues.
机译:我们研究了二氧化钛纳米片(TNS)改性的石英晶体微天平(QCM)传感器上白蛋白和纤连蛋白的吸附。通过反应磁控溅射制备了Ti QCM传感器。 Ti薄层沉积在QCM传感器上。然后通过在室温下用NaOH处理对该传感器进行碱改性以制造二氧化钛纳米片。进行了扫描探针显微镜,X射线光电子能谱和扫描电子显微镜来研究每个传感器的表面拓扑和化学成分。 TNS的QCM传感器上有一层呈节状结构的氧化钛膜,厚度为13 nm。此外,QCM测量结果显示,与钛相比,TNS吸附的白蛋白和纤连蛋白的含量明显更高。钛的NaOH处理修饰了传感器表面,并改善了与骨髓细胞初始粘附有关的蛋白质的吸附行为。因此,我们得出结论,TNS改善了植入物材料与周围组织之间的初始粘附力。

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