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Investigation into the efficacy of CO2 lasers for modifying the factors influencing biocompatibility of a polymeric biomaterial in comparison with an F2 excimer laser

机译:与F2准分子激光器相比,研究CO2激光器改变影响聚合物生物材料生物相容性的因素的功效

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摘要

Enhancement of the biocompatibility of a material by means of laser radiation has been amply demonstrated previously. Due to efficient absorption of the energy, short wavelengths and energies per pulse, polymers are usually processed using UV lasers, but the processing of polymers with IR lasers has also been demonstrated previously. In this work a comparative study for the surface modification of nylon 6,6 has been conducted in order to vary the parameters driving biocompatibility (surface topography, hydrophobic reactions, hydrophilic reactions and surface chemistry) using CO2 and excimer lasers. Topographical changes were analysed using white light interferometry which indicated that both laser systems could be implemented for modifying the topography of nylon 6,6. Variations in the surface chemistry were evaluated using EDX and XPS analysis and showed that the O2 increased and decreased for the CO2 and F2 laser irradiated samples, respectively. Modification of the hydrophobic and hydrophilic reactions was quantified by measuring the contact angle, which was found to increase in all instances for both laser systems. It is proposed that the increase in contact angle, especially for the CO2 laser irradiated samples, is due to a change in wetting regime as a result of the surface pattern produced.
机译:先前已经充分证明了借助激光辐射增强材料的生物相容性。由于能量的有效吸收,每个脉冲的短波长和能量,通常使用紫外激光来加工聚合物,但是先前也已经证明了使用红外激光来加工聚合物。在这项工作中,已经进行了尼龙6,6表面改性的比较研究,以便使用CO2和受激准分子激光器改变驱动生物相容性的参数(表面形貌,疏水反应,亲水反应和表面化学)。使用白光干涉法分析了形貌变化,这表明两个激光系统均可用于改变尼龙6,6的形貌。使用EDX和XPS分析评估了表面化学的变化,结果表明,CO2和F2激光辐照样品的O2分别增加和减少。通过测量接触角来量化疏水和亲水反应的改性,发现对于两种激光系统在所有情况下接触角均增加。提出接触角的增加,特别是对于CO 2激光辐照的样品,是由于产生的表面图案导致润湿方式的变化。

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