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Surface micro- and nano-texturing of stainless steel by femtosecond laser for the control of cell migration

机译:飞秒激光在不锈钢表面进行微观和纳米织构化处理以控制细胞迁移

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摘要

The precise control over the interaction between cells and the surface of materials plays a crucial role in optimizing the integration of implanted biomaterials. In this regard, material surface with controlled topographic features at the micro- and nano-scales has been proved to affect the overall cell behavior and therefore the final osseointegration of implants. Within this context, femtosecond (fs) laser microano machining technology was used in this work to modify the surface structure of stainless steel aiming at controlling cell adhesion and migration. The experimental results show that cells tend to attach and preferentially align to the laser-induced nanopatterns oriented in a specific direction. Accordingly, the laser-based fabrication method here described constitutes a simple, clean, and scalable technique which allows a precise control of the surface nano-patterning process and, subsequently, enables the control of cell adhesion, migration, and polarization. Moreover, since our surface-patterning approach does not involve any chemical treatments and is performed in a single step process, it could in principle be applied to most metallic materials.
机译:对细胞与材料表面之间相互作用的精确控制在优化植入生物材料的整合中起着至关重要的作用。在这方面,已证明在微米和纳米尺度上具有受控形貌特征的材料表面会影响总体细胞行为,从而影响植入物的最终骨整合。在此背景下,飞秒(fs)激光微纳加工技术被用于修改不锈钢的表面结构,旨在控制细胞的粘附和迁移。实验结果表明,细胞倾向于附着并优先排列在特定方向上的激光诱导纳米图案。因此,这里描述的基于激光的制造方法构成了一种简单,清洁和可扩展的技术,该技术允许精确控制表面纳米图案形成过程,并且随后可以控制细胞粘附,迁移和极化。此外,由于我们的表面图案化方法不涉及任何化学处理,并且是在单一步骤中执行的,因此原则上可以应用于大多数金属材料。

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