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等离子体细胞融合后形成的大细胞内肌动蛋白网络。

Formation of Large Intracellular Actin Networks Following Plasmonic Cell Fusion.

出版信息

IEEE Trans Nanobioscience. 2021 Jul;20(3):271-277. doi: 10.1109/TNB.2021.3077638. Epub 2021 Jun 30.

Abstract

Following fusion between two or more individual cells, the resulting cellular entity must undergo extensive restructuring of its plasma membrane and cytoskeleton in order to maintain its mechanical and physiological function. In artificial cell fusion that is executed by external triggering, such restructuring could be problematic due to the absence of preconditioning biological signals. In this work we study the reorganization of the actin filaments in adenocarcinoma cells that were fused using plasmonic triggering, i.e. the irradiation by resonant femtosecond laser pulses of cells specifically targeted by gold nanoparticles. Time-lapse confocal microscopy of the fusing cells has revealed the formation of large-scale actin networks that preserve the local orientations of the original actin cytoskeletons. The results confirm the local nature of the plasmonic interactions that were confined to the cells' plasma membranes and would help studying the development and dynamics of actin networks by offering a relatively stable, living cellular environment that supports large-scale actin growth.

摘要

两个或更多单个细胞融合后,为了保持其机械和生理功能,其质膜和细胞骨架必须经历广泛的重构。在通过外部触发执行的人工细胞融合中,由于缺乏预处理的生物信号,这种重构可能会成为问题。在这项工作中,我们研究了使用等离子体触发(即通过共振飞秒激光脉冲照射专门被金纳米粒子靶向的细胞)融合的腺癌细胞中肌动蛋白丝的重组。融合细胞的延时共焦显微镜观察揭示了大规模肌动蛋白网络的形成,这些网络保持了原始肌动蛋白细胞骨架的局部取向。结果证实了等离子体相互作用的局部性质,这些相互作用仅限于细胞的质膜,并通过提供相对稳定的、有活力的细胞环境来支持大规模肌动蛋白生长,从而有助于研究肌动蛋白网络的发展和动力学。

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