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Exploring the ultrashort pulse laser parameter space for membrane permeabilisation in mammalian cells

机译:探索用于哺乳动物细胞膜透化的超短脉冲激光参数空间

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摘要

The use of ultrashort femtosecond pulsed lasers to effect membrane permeabilisation and initiate both optoinjection and transfection of cells has recently seen immense interest. We investigate femtosecond laser-induced membrane permeabilisation in mammalian cells as a function of pulse duration, pulse energy and number of pulses, by quantifying the efficiency of optoinjection for these parameters. Depending on pulse duration and pulse energy we identify two distinct membrane permeabilisation regimes. In the first regime a nonlinear dependence of order 3.4-9.6 is exhibited below a threshold peak power of at least 6 kW. Above this threshold peak power, the nonlinear dependence is saturated resulting in linear behaviour. This indicates that the membrane permeabilisation mechanism requires efficient multiphoton absorption to produce free electrons but once this process saturates, linear absorption dominates. Our experimental findings support a previously proposed theoretical model and provide a step towards the optimisation of laser-mediated gene delivery into mammalian cells.
机译:近来,使用超短飞秒脉冲激光来实现膜通透性,并引发细胞的光注射和转染。我们通过量化这些参数的光注入效率来研究飞秒激光诱导的哺乳动物细胞膜通透性与脉冲持续时间,脉冲能量和脉冲数的关系。根据脉冲持续时间和脉冲能量,我们确定了两种不同的膜通透性方案。在第一种情况下,在至少6 kW的阈值峰值功率以下表现出3.4-9.6阶的非线性依赖性。高于此阈值峰值功率,非线性相关性就会饱和,从而导致线性行为。这表明膜透化机理需要有效的多光子吸收来产生自由电子,但是一旦该过程饱和,线性吸收就占主导地位。我们的实验结果支持了先前提出的理论模型,并为优化激光介导的基因向哺乳动物细胞的传递提供了一步。

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