Wu Fei, Yu Ping, Mao Lanqun
College of Chemistry, Beijing Normal University, Beijing 100875, China.
Beijing National Laboratory for Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
JACS Au. 2023 Aug 9;3(8):2062-2072. doi: 10.1021/jacsau.3c00220. eCollection 2023 Aug 28.
electrochemistry is a powerful key for unlocking the chemical consequences in neural networks of the brain. The past half-century has witnessed the technology revolutionization in this field along with innovations in electrochemical concepts, principles, methods, and devices. Present applications of electrochemical approaches have extended from measuring neurochemical concentrations to modulating and mimicking brain signals. In this Perspective, newly reported strategies for tackling long-standing challenges of electrochemical brain monitoring (i.e., basal level measurement, electroactivity dependence, stability, neuron compatibility, multiplexity, and implantable device fabrication) are highlighted. Moreover, recent progress on neuromodulation tools and neuromorphic devices in electrochemical frameworks is introduced. A glimpse of future opportunities for electrochemistry in brain research is offered at last.
电化学是揭示大脑神经网络中化学效应的有力关键。在过去的半个世纪里,随着电化学概念、原理、方法和设备的创新,该领域经历了技术革命。目前电化学方法的应用已从测量神经化学物质浓度扩展到调节和模拟脑信号。在这篇综述中,重点介绍了新报道的应对电化学脑监测长期挑战(即基础水平测量、电活性依赖性、稳定性、神经元兼容性、多路复用和可植入设备制造)的策略。此外,还介绍了电化学框架中神经调节工具和神经形态设备的最新进展。最后展望了电化学在脑研究中的未来机遇。