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Laser- And Uv-assisted Modification Of Polystyrene Surfaces For Control Of Protein Adsorption And Cell Adhesion

机译:激光和紫外线辅助修饰的聚苯乙烯表面,用于控制蛋白质的吸附和细胞粘附

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摘要

An appropriate choice of laser and process parameters enables new approaches for the fabrication of polymeric lab-on-chip devices with integrated functionalities. We will present our current research results in laser-assisted modification of polystyrene (PS) with respect to the fabrication of polymer devices for cell culture applications. For this purpose laser micro-patterning of PS and subsequent surface functionalization was investigated as function of laser and process parameters. A high power ArF-excimer laser radiation source with a pulse length of 19 ns as well as a high repetition ArF-excimer laser source with a pulse length of 5 ns were used in order to study the influence of laser pulse length on laser-induced surface oxidation. The change in surface chemistry was characterized by X-ray photoelectron spectroscopy and contact angle measurements. The difference between laser-assisted modification versus UV-lamp assisted modification was investigated. A photolytic activation of specific areas of the polymer surface and subsequent oxidization in oxygen or ambient air leads to a chemically modified polymer surface bearing carboxylic acid groups well-suited for controlled competitive protein adsorption or protein immobilization. Finally, distinct areas for cell growth and adhesion are obtained.
机译:适当选择激光和工艺参数将为制造具有集成功能的聚合物片上实验室设备提供新方法。我们将介绍在激光辅助改性聚苯乙烯(PS)方面的当前研究成果,该研究涉及用于细胞培养应用的聚合物器件的制造。为了这个目的,研究了PS的激光微图案化和随后的表面功能化,作为激光和工艺参数的函数。为了研究激光脉冲长度对激光诱导的影响,使用了脉冲长度为19 ns的高功率ArF准分子激光辐射源和脉冲长度为5 ns的高重复ArF准分子激光源。表面氧化。表面化学的变化通过X射线光电子能谱和接触角测量来表征。研究了激光辅助修饰与紫外灯辅助修饰之间的差异。聚合物表面特定区域的光解活化以及随后在氧气或环境空气中的氧化会导致一种化学修饰的带有羧酸基团的聚合物表面,非常适合于受控的竞争性蛋白质吸附或蛋白质固定化。最后,获得了细胞生长和粘附的不同区域。

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