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首页> 外文期刊>Materials >Femtosecond Laser Nano/Micro Textured Ti6Al4V Surfaces—Effect on Wetting and MG-63 Cell Adhesion
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Femtosecond Laser Nano/Micro Textured Ti6Al4V Surfaces—Effect on Wetting and MG-63 Cell Adhesion

机译:飞秒激光纳米/微织构的Ti6Al4V表面—对润湿和MG-63细胞粘附的影响

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Nano- and microstructured titanium surfaces have recently attracted attention in the field of regenerative medicine because of the influence which surface characteristics such as roughness and wettability can have on cellular processes. This study focuses on the correlation of surface properties (wettability and nano/micro texture) of laser-structured Ti6Al4V samples with pronounced cell adhesion. Samples were structured with multiple laser parameters in order to create a range of surface properties. Surface characterization was performed by contact angle measurements 1 and 7 days after laser processing. The arithmetic mean roughness of the material surface in an area (Sa) was determined by means of confocal laser scanning microscopy (CLSM). Immediately after wettability tests of the laser-structured surfaces, in vitro experiments with human MG-63 osteoblasts were carried out. For this purpose, the cell morphology and actin cytoskeleton organization were analyzed using CLSM and scanning electron microscopy. On rough microstructures with deep cavities, the cell growth and spreading were inhibited. An improved cellular adhesion and growth on nanostructured and sinusoidal microstructured surfaces could be demonstrated, regardless of hydrophilicity of the surfaces.
机译:由于诸如粗糙度和润湿性的表面特性对细胞过程的影响,纳米和微结构的钛表面最近在再生医学领域引起了关注。这项研究的重点是激光结构的Ti6Al4V样品的表面性质(润湿性和纳米/微织构)与明显的细胞粘附性之间的相关性。样品具有多个激光参数,以创建一定范围的表面性能。在激光加工后1天和7天通过接触角测量进行表面表征。借助于共聚焦激光扫描显微镜(CLSM)确定区域(Sa)中材料表面的算术平均粗糙度。在对激光结构化表面进行润湿性测试后,立即进行了人MG-63成骨细胞的体外实验。为此,使用CLSM和扫描电子显微镜分析细胞形态和肌动蛋白细胞骨架组织。在具有深腔的粗糙微结构上,细胞的生长和扩散受到抑制。可以证明在纳米结构和正弦微结构表面上细胞粘附性和生长均得到改善,而与表面的亲水性无关。

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