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实时监测揭示了通过L型钙通道对表面声波超声的三种不同神经元反应模式。

Real-time Monitoring Unveils Three Distinct Neuronal Response Patterns to SAW Ultrasound via L-type Calcium Channels.

作者信息

Chen Yiming, Tang Wenxu, Wang Yifan, Gao Ya, Hu Jiaqi, Lu Yixuan, Meng Long, Zheng Hairong, Feng Yi, Cheng Liming, Fan Wenyong, Cheng Qian, Xue Lei

机构信息

Institute of Acoustics, School of Physics Science and Engineering, Tongji University, Shanghai, 200092, China.

State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Department of Physiology and Neurobiology, School of Life Sciences, Fudan University, Shanghai, 200438, China.

出版信息

Neurosci Bull. 2025 Jul 16. doi: 10.1007/s12264-025-01457-6.

Abstract

Ultrasound neuromodulation shows promise for treating neurological disorders, but the underlying mechanisms remain unclear. Here, we developed an integrated surface acoustic wave (SAW) ultrasound chip enabling simultaneous electrophysiological recording and Ca imaging of cultured hippocampal neurons to investigate neuronal excitability and synaptic transmission during ultrasound stimulation. This study revealed, for the first time, three distinct neuronal response patterns induced by SAW ultrasound: an immediate response showing rapid activation, a delayed response exhibiting facilitation after several minutes, and a non-response maintaining baseline activity. Ultrasound stimulation increased action potential firing, enhanced excitatory postsynaptic currents, and elevated intracellular Ca levels. These effects were dependent on extracellular Ca influx and primarily dominated by L-type Ca channels. Our findings suggest that individual neurons exhibit heterogeneous responses to SAW ultrasound stimulation based on their intracellular Ca levels and L-type Ca channel activity. This integrated approach provides new insights into the cellular mechanisms of ultrasound neuromodulation while highlighting the potential of SAW technology for precise, cell-type-specific neural control.

摘要

超声神经调节在治疗神经系统疾病方面显示出前景,但潜在机制仍不清楚。在此,我们开发了一种集成表面声波(SAW)超声芯片,能够对培养的海马神经元进行同步电生理记录和钙成像,以研究超声刺激期间的神经元兴奋性和突触传递。这项研究首次揭示了SAW超声诱导的三种不同的神经元反应模式:一种立即反应,表现为快速激活;一种延迟反应,在几分钟后表现出易化;一种无反应,维持基线活动。超声刺激增加了动作电位发放,增强了兴奋性突触后电流,并提高了细胞内钙水平。这些效应依赖于细胞外钙内流,主要由L型钙通道主导。我们的研究结果表明,单个神经元根据其细胞内钙水平和L型钙通道活性对SAW超声刺激表现出异质性反应。这种集成方法为超声神经调节的细胞机制提供了新的见解,同时突出了SAW技术在精确、细胞类型特异性神经控制方面的潜力。

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