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Modulating the wettability characteristics and bioactivity of polymeric materials using laser surface treatment

机译:使用激光表面处理调节聚合物材料的润湿性和生物活性

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摘要

It has been thoroughly demonstrated previously that lasers hold the ability to modulate surface properties of materials with the result being utilization of such lasers in both research and industry. What is more, these laser surface treatments have been shown to affect the adhesion characteristics and bio-functionality of those materials. This paper details the use of a Synrad CO2 laser marking system to surface treat nylon 6,6 and polytetrafluoroethylene (PTFE). The laser-modified surfaces were analyzed using 3D surface profilometry to ascertain an increase in surface roughness when compared to the as-received samples. The wettability characteristics were determined using the sessile drop method and showed variations in contact angle for both the nylon 6,6 and PTFE. For the PTFE it was shown that the laser surface treatment gave rise to a more hydrophobic surface with contact angles of up to 150° being achieved. For the nylon 6,6, it was observed that the contact angle was modulated approximately ±10° for different samples which could be attributed to a likely mixed state wetting regime. The effects of the laser surface treatment on osteoblast cell and stem cell growth is discussed showing an overall enhancement of biomimetic properties, especially for the nylon 6,6. This work investigates the potential governing parameters which drives the wettability/adhesion characteristics and bioactivity of the laser surface treated polymeric materials.
机译:以前已经充分证明了激光器具有调节材料表面特性的能力,其结果是在研究和工业中都利用了这种激光器。而且,已经证明这些激光表面处理会影响那些材料的粘附特性和生物功能。本文详细介绍了使用Synrad CO2激光打标系统对尼龙6,6和聚四氟乙烯(PTFE)进行表面处理的过程。与接收的样品相比,使用3D表面轮廓仪分析了激光改性的表面,以确定表面粗糙度的增加。使用无滴法测定润湿性特征,并且显示出尼龙6,6和PTFE的接触角均发生变化。对于PTFE,显示出激光表面处理产生了更疏水的表面,实现了高达150°的接触角。对于尼龙6,6,观察到对于不同样品,接触角被调节为大约±10°,这可能归因于可能的混合态润湿方式。讨论了激光表面处理对成骨细胞和干细胞生长的影响,显示了仿生特性的整体增强,尤其是对于尼龙6,6。这项工作研究了潜在的控制参数,这些参数驱动着经过激光表面处理的聚合物材料的润湿性/粘附特性和生物活性。

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