首页> 外文会议>Society of Photo-Optical Instrumentation Engineers;Conference on Multiphoton Microscopy in the Biomedical Sciences >High-speed imaging of gas-bubble formation during femtosecond-laser cell optoporation
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High-speed imaging of gas-bubble formation during femtosecond-laser cell optoporation

机译:飞秒激光细胞对抗过程中气泡形成的高速成像

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Femtosecond-laser pulses can create transient holes in the membrane of a cell, making it briefly permeable to geneticmacromolecules. This is a highly effective method for cell transfection and reprogramming. For sufficiently highirradiance values, the laser radiation leads to plasma formation through multiphoton ionization and a subsequentformation of gas-filled bubbles which are shortly visible after the irradiation. While this bubble formation is well known,the underlying microscopic processes, the optimal bubble size and duration which indicate the transient hole formationare less clear. The correspondence between bubble formation and successful optoporation is further complicated by thefact that the formation greatly depends on the irradiated cell position and laser irradiation parameters (power, exposuretime). We have investigated the formation of bubbles resulting from short pulse irradiation with two commercialTi:sapphire lasers using a high-speed camera. Higher laser powers and longer exposure times yielded bigger bubbleswhich took longer to collapse. Additionally, a correlation between the bubble characteristics and the cell’s metabolismand post-optoporation viability was found. These results can help to optimize the laser parameters for efficientoptoporation and high post-treatment cell viability as well as to shine light on the microscopic excitation processesbehind the bubble formation.
机译:飞秒激光脉冲可在细胞膜上产生瞬态孔,使其短暂渗透遗传 大分子。这是用于细胞转染和重编程的高效方法。对于足够高 辐照度值,激光辐射通过多光子电离和随后的电离形成等离子体 形成气泡,在照射后不久就可见。虽然这种气泡的形成是众所周知的, 潜在的微观过程,最佳的气泡大小和持续时间,这些气泡指示了瞬态孔的形成 不太清楚。气泡形成与成功对立之间的对应关系由于以下原因而变得更加复杂: 形成的事实很大程度上取决于被照射的细胞位置和激光照射参数(功率,暴露 时间)。我们已经研究了两种商用短脉冲辐射引起的气泡形成 使用高速摄像头的钛:蓝宝石激光器。更高的激光功率和更长的曝光时间产生更大的气泡 它需要更长的时间才能崩溃。此外,气泡特征与细胞新陈代谢之间的相关性 并且发现了opoporation后的生存能力。这些结果可以帮助优化激光参数,从而实现高效 对位和高处理后细胞活力以及在微观激发过程中发光 泡沫形成的背后。

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