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Parameters Optimization For Biological Molecules Patterning Using 248-nm Ultrafast Lasers

机译:使用248 nm超快激光对生物分子进行构图的参数优化

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Laser-induced forward transfer has been used for the deposition of photoactive biotin in micron-scale patterns. The process uses a 500 fs pulsed KrF laser beam to transfer small amounts of a liquid solution target as micron-size droplets to a substrate placed parallel and in close proximity to it. The biomolecules remain active after the transfer; this is demonstrated through fluorescence assays. In addition to the laser parameters, those regarding the target composition and the receiving surface for the miniaturization of the transferred patterns have been studied and optimized. Droplets as small as 5 μm have been obtained by reducing the target thickness and transfer energy; by increasing the percentage of glycerol added in the biomolecules solution and by using hydrophobic surfaces as receiving substrates. The influence of the glycerol addition and the hydrophobicity of the receiving surfaces on the activity of the transferred biomolecules have also been studied.
机译:激光诱导的正向转移已用于微米级图案的光敏生物素的沉积。该工艺使用500 fs脉冲KrF激光束将少量液态溶液目标物(微米大小的液滴)转移到与之平行且紧邻的基板上。转移后,生物分子保持活性。这通过荧光分析证实。除了激光参数外,还研究和优化了有关目标成分和用于最小化转印图案的接收表面的参数。通过减小目标厚度和转移能量,已经获得了小至5μm的液滴;通过增加在生物分子溶液中添加的甘油的百分比,以及通过使用疏水性表面作为接收底物。还研究了甘油的添加和接收表面的疏水性对转移的生物分子活性的影响。

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