Remote nongenetic optical modulation of neuronal activity using fuzzy graphene

利用模糊石墨烯对神经元活动进行远程非遗传光学调制

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作者:Sahil K Rastogi, Raghav Garg, Matteo Giuseppe Scopelliti, Bernardo I Pinto, Jane E Hartung, Seokhyoung Kim, Corban G E Murphey, Nicholas Johnson, Daniel San Roman, Francisco Bezanilla, James F Cahoon, Michael S Gold, Maysam Chamanzar, Tzahi Cohen-Karni

Abstract

The ability to modulate cellular electrophysiology is fundamental to the investigation of development, function, and disease. Currently, there is a need for remote, nongenetic, light-induced control of cellular activity in two-dimensional (2D) and three-dimensional (3D) platforms. Here, we report a breakthrough hybrid nanomaterial for remote, nongenetic, photothermal stimulation of 2D and 3D neural cellular systems. We combine one-dimensional (1D) nanowires (NWs) and 2D graphene flakes grown out-of-plane for highly controlled photothermal stimulation at subcellular precision without the need for genetic modification, with laser energies lower than a hundred nanojoules, one to two orders of magnitude lower than Au-, C-, and Si-based nanomaterials. Photothermal stimulation using NW-templated 3D fuzzy graphene (NT-3DFG) is flexible due to its broadband absorption and does not generate cellular stress. Therefore, it serves as a powerful toolset for studies of cell signaling within and between tissues and can enable therapeutic interventions.

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