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Laser Surface Texturing of Polymers for Biomedical Applications

机译:生物医学应用聚合物的激光表面纹理处理

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Polymers are materials widely used in biomedical science because of their biocompatibility, and good mechanical properties (which, in some cases, are similar to those of human tissues); however, these materials are, in general, chemically and biologically inert. Surface characteristics, such as topography (at the macro-, micro, and nanoscale), surface chemistry, surface energy, charge or wettability are interrelated properties, and they cooperatively influence the biological performance of materials when used for biomedical applications. They regulate the biological response at the implant/tissue interface (e.g., influencing the cell adhesion, cell orientation, cell motility, etc.). Several surface processing techniques have been explored to modulate these properties for biomedical applications. Despite their potentials, these methods have limitations that prevent their applicability. In this regard, laser-based methods, in particular laser surface texturing (LST), can be an interesting alternative. Different works have showed the potentiality of this technique to control the surface properties of biomedical polymers and enhance their biological performance; however, more research is needed to obtain the desired biological response. This work provides a general overview of the basics and applications of LST for the surface modification of polymers currently used in the clinical practice (e.g. PEEK, UHMWPE, PP, etc.). The modification of roughness, wettability, and their impact on the biological response is addressed to offer new insights on the surface modification of biomedical polymers.
机译:聚合物由于其生物相容性和良好的机械性能(在某些情况下与人体组织相似)而被广泛用于生物医学领域。然而,这些材料通常是化学和生物学惰性的。表面特性,如形貌(宏观,微观和纳米尺度),表面化学,表面能,电荷或润湿性是相互关联的属性,当用于生物医学应用时,它们会共同影响材料的生物性能。它们调节植入物/组织界面处的生物反应(例如,影响细胞粘附,细胞取向,细胞运动性等)。已经探索了几种表面处理技术来调节这些特性以用于生物医学应用。尽管有这些方法的潜力,但这些方法仍然存在局限性,无法应用。在这方面,基于激光的方法,特别是激光表面纹理化(LST),可能是一种有趣的选择。不同的工作表明了该技术控制生物医学聚合物的表面性质并增强其生物学性能的潜力。然而,需要更多的研究来获得所需的生物学反应。这项工作概述了LST的基本原理和应用,这些LST用于目前在临床实践中使用的聚合物(例如PEEK,UHMWPE,PP等)的表面改性。解决了粗糙度,润湿性及其对生物反应的影响的修饰,从而为生物医学聚合物的表面修饰提供了新的见识。

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