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Mechanisms of Pulsed Laser Microbeam Release of SU-8 Polymer 'Micropallets' for the Collection and Separation of Adherent Cells

机译:SU-8聚合物“微托盘”的脉冲激光微束释放机制用于收集和分离贴壁细胞

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The release of individual polymer micropallets from glass substrates using highly focused laser pulses has been demonstrated for the efficient separation, collection, and expansion of single, adherent cells from a heterogeneous cell population. Here, we use fast-frame photography to examine the mechanism and dynamics of micropallet release produced by pulsed laser microbeam irradiation at lambda velence 532 nm using pulse durations ranging between 240 ps and 6 ns. The time-resolved images show the laser microbeam irradiation to result in plasma formation at the interface between the glass coverslip and the polymer micropallet. The plasma formation results in the emission of a shock wave and the ablation of material within the focal volume. Ablation products are generated at high pressure due to the confinement offered by the polymer adhesion to the glass substrate. The ablation products expand underneath the micropallet on a time scale of several hundred nanoseconds. This expansion disrupts the polymer-glass interface and accomplishes the release of the pallet from its glass substrate on the microsecond time scale (approx1.5 (mu)s). Our experimental investigation demonstrates that the threshold energy for pallet release is constant (approx2 (mu)J) over a 25-fold range of pulse duration spanning the picosecond to nanosecond domain. Taken together, these results implicate that pallet release accomplished via pulsed laser microbeam irradiation is an energy-driven plasma-mediated ablation process.
机译:已证明使用高度聚焦的激光脉冲从玻璃基板释放单个聚合物微托盘,可有效分离,收集和扩增来自异种细胞群的单个贴壁细胞。在这里,我们使用快速帧摄影来检查在240 ps至6 ns的脉冲持续时间下,在波长532 nm的脉冲激光微束辐照下产生的微托盘释放的机理和动力学。时间分辨图像显示激光微束辐照导致在玻璃盖玻片和聚合物微托盘之间的界面处形成等离子体。等离子体的形成导致冲击波的发射和焦点体积内材料的烧蚀。由于聚合物粘附在玻璃基板上而产生的限制作用,在高压下产生烧蚀产物。消融产物以几百纳秒的时间尺度在微托盘下方膨胀。这种膨胀破坏了聚合物-玻璃的界面,并在微秒级的时间范围内(约1.5μs)完成了托盘从其玻璃基板上的释放。我们的实验研究表明,在皮秒至纳秒范围内的脉冲持续时间的25倍范围内,用于托盘释放的阈值能量是恒定的(大约2μJ)。两者合计,这些结果暗示通过脉冲激光微束辐射完成的托盘释放是能量驱动的等离子体介导的消融过程。

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