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Mechanisms of gold nanoparticle mediated ultrashort laser cell membrane perforation

机译:金纳米粒子介导的超短激光细胞膜穿孔的机理

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摘要

The gold nanoparticle (AuNP) mediated ultrashort laser cell membrane perforation has been proven as an efficient delivery method to bring membrane impermeable molecules into the cytoplasm. Nevertheless, the underlying mechanisms have not been fully determined yet. Different effects may occur when irradiating a AuNP with ultrashort laser pulses and finally enable the molecule to transfer. Depending on the parameters (pulse length, laser fluence and wavelength, particle size and shape, etc.) light absorption or an enhanced near field scattering can lead to perforation of the cell membrane when the particle is in close vicinity. Here we present our experimental results to clarify the perforation initiating mechanisms. The generation of cavitation and gas bubbles due to the laser induced effects were observed via time resolved imaging. Additionally, pump-probe experiments for bubble detection was performed. Furthermore, in our patch clamp studies a depolarization of the membrane potential and the current through the membrane of AuNP loaded cell during laser treatment was detected. This indicates an exchange of extra- and intra cellular ions trough the perforated cell membrane for some milliseconds. Additionally investigations by ESEM imaging were applied to study the interaction of cells and AuNP after co incubation. The images show an attachment of AuNP at the cell membrane after several hours of incubation. Moreover, images of irradiated and AuNP loaded cells were taken to visualize the laser induced effects.
机译:金纳米粒子(AuNP)介导的超短激光细胞膜穿孔已被证明是一种将膜不可渗透的分子带入细胞质的有效递送方法。但是,其潜在机制尚未完全确定。用超短激光脉冲照射AuNP并最终使分子能够转移时,可能会发生不同的影响。根据参数(脉冲长度,激光能量密度和波长,颗粒大小和形状等)的不同,当颗粒非常靠近时,光吸收或增强的近场散射会导致细胞膜穿孔。在这里,我们介绍我们的实验结果以阐明射孔起爆机制。通过时间分辨成像观察到由于激光诱导的效应而产生的气蚀和气泡。另外,进行了用于气泡检测的泵浦探针实验。此外,在我们的膜片钳研究中,检测到了膜电位的去极化,并检测了激光处理过程中通过AuNP加载细胞的膜的电流。这表明通过穿孔的细胞膜的细胞外离子和细胞内离子的交换持续了几毫秒。另外,通过ESEM成像进行的研究被用于研究共孵育后细胞与AuNP的相互作用。图像显示孵育数小时后,AuNP在细胞膜上的附着。而且,拍摄照射的和AuNP负载的细胞的图像以可视化激光诱导的作用。

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