A Nanozyme‐Based Electrode for High‐Performance Neural Recording

电极 材料科学 生物医学工程 纳米技术 光电子学 医学 化学 物理化学
作者
Shuangjie Liu,Yang Wang,Yue Zhao,Ling Liu,Si Sun,Shaofang Zhang,Haile Liu,Shuhu Liu,Yonghui Li,Fan Yang,Menglu Jiao,Xinyu Sun,Yuqin Zhang,Renpeng Liu,Xiaoyu Mu,Hao Wang,Shu Zhang,Yang Jiang,Xi Xie,Xiaojie Duan
出处
期刊:Advanced Materials [Wiley]
卷期号:36 (6): e2304297-e2304297 被引量:50
标识
DOI:10.1002/adma.202304297
摘要

Implanted neural electrodes have been widely used to treat brain diseases that require high sensitivity and biocompatibility at the tissue-electrode interface. However, currently used clinical electrodes cannot meet both these requirements simultaneously, which hinders the effective recording of electronic signals. Herein, nanozyme-based neural electrodes incorporating bioinspired atomically precise clusters are developed as a general strategy with a heterogeneous design for multiscale and ultrasensitive neural recording via quantum transport and biocatalytic processes. Owing to the dual high-speed electronic and ionic currents at the electrode-tissue interface, the impedance of nanozyme electrodes is 26 times lower than that of state-of-the-art metal electrodes, and the acquisition sensitivity for the local field potential is ≈10 times higher than that of clinical PtIr electrodes, enabling a signal-to-noise ratio (SNR) of up to 14.7 dB for single-neuron recordings in rats. The electrodes provide more than 100-fold higher antioxidant and multi-enzyme-like activities, which effectively decrease 67% of the neuronal injury area by inhibiting glial proliferation and allowing sensitive and stable neural recording. Moreover, nanozyme electrodes can considerably improve the SNR of seizures in acute epileptic rats and are expected to achieve precise localization of seizure foci in clinical settings.
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