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Optogenetic activation of fiber-specific compound action potentials in the mouse vagus nerve

机译:小鼠迷走神经中纤维特异性化合物作用电位的致敏活化

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A major function of the nervous system is to transmit information between the body and the brain. The vagus nerve, also known as the tenth cranial nerve, is an important conduit for brain-body communication and has been identified as a focus of bioelectronic therapies. Current neuromodulation therapies, such as vagus nerve stimulation (VNS), lack fiber- and molecular-specificity as they involve electrical stimulation of the entire nerve bundle. This results in recruitment of fiber types based on electrical properties rather than molecular specificity. To better understand the contributions of different fiber subtypes in the vagus nerve, we utilized optogenetics to record light-evoked compound actions potentials (CAPs) in TRPV1-ChR2-YFP and ChAT-ChR2-YFP mice. We found that direct photostimulation of TRPV1-ChR2 on the vagus nerve evoked large amplitude CAPs, while the same light stimulation in ChAT-ChR2 mice produced smaller amplitude CAPs. We also found that the amplitude of light-evoked CAPs decreased at a higher photostimulation frequency (25 Hz). Our results show that fiber-specific activation of the sensory afferent and motor efferent pathways in the vagus nerve produce discrete evoked CAPs. This can be used to decipher different neurotransmitter contributions in vagus nerve signaling for both the afferent and efferent pathways, thereby opening an avenue for potential selective, fiber-specific neuromodulation of the vagus nerve.
机译:神经系统的主要功能是在身体和大脑之间传输信息。迷走神经,也被称为第十个颅神经,是脑体通信的重要导管,并被识别为生物电子疗法的焦点。目前的神经调节疗法,如迷走神经刺激(VNS),缺乏纤维和分子特异性,因为它们涉及整个神经束的电刺激。这导致基于电性能而不是分子特异性募集纤维类型。为了更好地了解迷走神经中不同纤维亚型的贡献,我们利用了光源在TRPV1-CHR2-YFP和CHAT-CHR2-YFP小鼠中记录了光诱发的复合作用电位(帽)。我们发现,在迷走神经上的TRPV1-CHR2的直接照相刺激诱发大振幅盖,而CHAT-CHR2小鼠中的相同光刺激产生较小的幅度盖。我们还发现,光诱发帽的幅度以更高的光致频率(25Hz)降低。我们的结果表明,迷走神经的感觉传入和电动机传递途径的纤维特异性活化产生了离散的诱发帽。这可用于破译迷走神经信号中的不同神经递质贡献,用于传入传神和传递途径,从而开口迷走神经的潜在选择性,纤维特异性神经调节的大道。

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