Melikov Rustamzhon, Iachetta Giuseppina, d'Amora Marta, Melle Giovanni, Conti Silvia, Tantussi Francesco, Dipalo Michele, De Angelis Francesco
Italian Institute of Technology, Genoa, 16163, Italy.
Department of Biology, University of Pisa, Pisa, 56127, Italy.
Adv Mater. 2025 Feb;37(8):e2412697. doi: 10.1002/adma.202412697. Epub 2025 Jan 10.
Presently, the in vitro recording of intracellular neuronal signals on microelectrode arrays (MEAs) requires complex 3D nanostructures or invasive and approaches such as electroporation. Here, it is shown that laser poration enables intracellular coupling on planar electrodes without damaging neurons or altering their spontaneous electrophysiological activity, allowing the process to be repeated multiple times on the same cells. This capability distinguishes laser-based neuron poration from more invasive methods like electroporation, which typically serve as endpoint measurement for cells. It is demonstrated that planar MEA electrodes, when combined with laser cell optoporation and live cell staining, can record spontaneous intracellular signaling from primary neurons in vitro. This approach allows for the detection of attenuated signals resembling positive monophasic intracellular action potentials. Recordings after laser optoporation also reveal subthreshold signals such as post-synaptic potentials that are essential for assessing neuronal network plasticity and connectivity. Moreover, the noninvasiveness of the process enables repeated intracellular recordings over multiple days from the same cells.
目前,在微电极阵列(MEA)上进行细胞内神经元信号的体外记录需要复杂的三维纳米结构或采用诸如电穿孔等侵入性方法。在此,研究表明激光打孔能够在平面电极上实现细胞内耦合,而不会损伤神经元或改变其自发电生理活动,从而允许在同一细胞上多次重复该过程。这种能力将基于激光的神经元打孔与电穿孔等更具侵入性的方法区分开来,电穿孔通常用于细胞的终点测量。研究证明,平面MEA电极与激光细胞光穿孔和活细胞染色相结合时,能够在体外记录原代神经元的自发电细胞内信号。这种方法能够检测到类似于正向单相细胞内动作电位的衰减信号。激光光穿孔后的记录还揭示了阈下信号,如突触后电位,这些信号对于评估神经元网络可塑性和连接性至关重要。此外,该过程的非侵入性使得能够在多天内对同一细胞进行重复的细胞内记录。