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红外神经胶质对脊髓运动网络的调节。

Infrared neuroglial modulation of spinal locomotor networks.

机构信息

Mines Saint-Etienne, Centre CMP, Département BEL, 13541, Gardanne, France.

Institut de Neurosciences de la Timone, CNRS UMR 7289 et Aix- Marseille Université, 13005, Marseille, France.

出版信息

Sci Rep. 2024 Sep 27;14(1):22282. doi: 10.1038/s41598-024-73577-4.

Abstract

Infrared neural stimulation (INS) emerges as a promising tool for stimulating the nervous system by its high spatial precision and absence of the use of exogenous agents into the tissue, which led to the first successful proof of concept in human brain. While neural networks have been the focal point of INS research, this technique is also non cell type specific as it triggers activity in non electrically excitable cells. Despite increasing interest, there remains to demonstrate well defined simultaneous astrocytic and neuronal signals in response to INS. Using calcium imaging, we show that INS has the capacity to initiate calcium signaling in both astrocytes and neurons simultaneously from the rostral lumbar spinal cord, each exhibiting distinct temporal and amplitude characteristics. Importantly, the mechanism underlying infrared-induced neuronal and astrocytic calcium signaling differ, with neuronal activity relying on sodium channels, whereas induced astrocytic signaling is predominantly influenced by extracellular calcium and TRPV4 channels. Furthermore, our findings demonstrate the frequency shift of neuronal calcium oscillations through infrared stimulation. By deepening our understanding in INS fundamentals, this technique holds great promise for advancing neuroscience, deepening our understanding of pathologies, and potentially paving the way for future clinical applications.

摘要

红外神经刺激 (INS) 通过其高空间精度和不将外源物质引入组织中,成为刺激神经系统的一种有前途的工具,这导致了在人类大脑中的第一个成功的概念验证。虽然神经网络一直是 INS 研究的焦点,但该技术也不是细胞类型特异性的,因为它会引发非电兴奋细胞的活动。尽管兴趣日益增加,但仍需要证明 INS 能够同时明确地响应星形胶质细胞和神经元信号。使用钙成像,我们表明 INS 有能力从颅腰部脊髓同时引发星形胶质细胞和神经元中的钙信号,每个细胞都表现出不同的时间和幅度特征。重要的是,红外诱导的神经元和星形胶质细胞钙信号的机制不同,神经元活动依赖于钠通道,而诱导的星形胶质细胞信号主要受细胞外钙和 TRPV4 通道影响。此外,我们的发现还表明通过红外刺激可以改变神经元钙振荡的频率。通过加深对 INS 基础的理解,这项技术有望推动神经科学的发展,加深对病理学的理解,并为未来的临床应用铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5be/11437012/ed4c65ea3fb9/41598_2024_73577_Fig1_HTML.jpg

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