长时程增强的电生理记录进展。
Advances in the Electrophysiological Recordings of Long-Term Potentiation.
机构信息
Department of Neuroscience, City University of Hong Kong, Kowloon, Hong Kong.
Research Institute of City University of Hong Kong, Shenzhen 518057, China.
出版信息
Int J Mol Sci. 2023 Apr 12;24(8):7134. doi: 10.3390/ijms24087134.
Understanding neuronal firing patterns and long-term potentiation (LTP) induction in studying learning, memory, and neurological diseases is critical. However, recently, despite the rapid advancement in neuroscience, we are still constrained by the experimental design, detection tools for exploring the mechanisms and pathways involved in LTP induction, and detection ability of neuronal action potentiation signals. This review will reiterate LTP-related electrophysiological recordings in the mammalian brain for nearly 50 years and explain how excitatory and inhibitory neural LTP results have been detected and described by field- and single-cell potentials, respectively. Furthermore, we focus on describing the classic model of LTP of inhibition and discuss the inhibitory neuron activity when excitatory neurons are activated to induce LTP. Finally, we propose recording excitatory and inhibitory neurons under the same experimental conditions by combining various electrophysiological technologies and novel design suggestions for future research. We discussed different types of synaptic plasticity, and the potential of astrocytes to induce LTP also deserves to be explored in the future.
理解神经元放电模式和长时程增强(LTP)诱导对于研究学习、记忆和神经疾病至关重要。然而,尽管神经科学取得了快速进展,但我们仍然受到实验设计、探索 LTP 诱导相关机制和途径的检测工具以及神经元动作电位信号检测能力的限制。本综述将重述近 50 年来哺乳动物大脑中与 LTP 相关的电生理记录,并解释如何分别通过场电位和单细胞电位来检测和描述兴奋性和抑制性神经 LTP 结果。此外,我们专注于描述抑制性 LTP 的经典模型,并讨论在兴奋神经元被激活以诱导 LTP 时抑制性神经元的活动。最后,我们提出通过结合各种电生理技术和新的设计建议,在相同的实验条件下记录兴奋性和抑制性神经元,并为未来的研究提出建议。我们讨论了不同类型的突触可塑性,未来也值得探索星形胶质细胞诱导 LTP 的潜力。