Dipalo Michele, Caprettini Valeria, Bruno Giulia, Caliendo Fabio, Garma Leonardo D, Melle Giovanni, Dukhinova Marina, Siciliano Velia, Santoro Francesca, De Angelis Francesco
Istituto Italiano di Tecnologia, Genoa, 16163, Italy.
Dipartimento di Informatica, Bioingegneria, Robotica e Ingegneria dei Sistemi. DIBRIS, Università degli Studi di Genova, Genova, 16126, Italy.
Adv Biosyst. 2019 Dec;3(12):e1900148. doi: 10.1002/adbi.201900148. Epub 2019 Nov 6.
3D vertical nanostructures have become one of the most significant methods for interfacing cells and the nanoscale and for accessing significant intracellular functionalities such as membrane potential. As this intracellular access can be induced by means of diverse cellular membrane poration mechanisms, it is important to investigate in detail the cell condition after membrane rupture for assessing the real effects of the poration techniques on the biological environment. Indeed, differences of the membrane dynamics and reshaping have not been observed yet when the membrane-nanostructure system is locally perturbed by, for instance, diverse membrane breakage events. In this work, new insights are provided into the membrane dynamics in case of two different poration approaches, optoacoustic- and electro-poration, both mediated by the same 3D nanostructures. The experimental results offer a detailed overview on the different poration processes in terms of electrical recordings and membrane conformation.
三维垂直纳米结构已成为连接细胞与纳米尺度以及获取诸如膜电位等重要细胞内功能的最重要方法之一。由于这种细胞内通路可通过多种细胞膜穿孔机制诱导产生,因此详细研究膜破裂后的细胞状况对于评估穿孔技术对生物环境的实际影响至关重要。事实上,当膜 - 纳米结构系统受到例如不同的膜破裂事件局部干扰时,尚未观察到膜动力学和重塑的差异。在这项工作中,针对由相同三维纳米结构介导的两种不同穿孔方法——光声穿孔和电穿孔,提供了关于膜动力学的新见解。实验结果在电记录和膜构象方面提供了不同穿孔过程的详细概述。