4.7 Article

Flexible neural recording electrodes based on reduced graphene oxide interfaces

期刊

CHEMICAL ENGINEERING JOURNAL
卷 478, 期 -, 页码 -

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ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2023.147067

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Neural electrodes; Flexible neural electrodes; Reduced graphene oxide; Recording neural electrodes

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In this study, flexible three-dimensional and two-dimensional recording electrodes made of reduced graphene oxide were introduced for long-term and acute recordings. The results showed that these electrodes had good recording capabilities and excellent biocompatibility in vivo.
Conventional recording neural electrodes are made of stiff materials such as metal or silicon which triggers unwanted inflammation and does not provide intimate contact with brain tissue. Flexible neural electrodes have therefore been increasingly investigated to address these issues. In this study, we introduce reduced graphene oxide (rGO) recording electrodes in the format of 3-dimensional flexible membranes (rGO-3D) and 2-dimensional thin films (rGO-2D) for long-term and acute recordings, respectively. The rGO electrodes supported the functional development of cultured primary neurons and displayed good recording capabilities similar to conventional glass pipette and Pt ball electrodes in ex vivo and acute in vivo experiments. In vivo biocompatibility studies demonstrated the migration of neural processes onto the rGO-2D surface and within the rGO-3D electrodes, with the latter forming an intimate interpenetrating network. This study not only generates new knowledge to balance conductivity and porosity of rGO coatings but also provides in-depth evaluation of the physical and biological properties of such interfaces.

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