Choi Seunghwan, Baek In Seon, Lee Kyungjoon, Kim Sun Kwang
Department of East-West Department of East-West Medicine, Graduate School, Kyung Hee University, Seoul 02447, Korea, Graduate School, Kyung Hee University, Seoul 02447, Korea.
Department of Science in Korean Medicine, Graduate School, Kyung Hee University, Seoul 02447, Korea.
Korean J Physiol Pharmacol. 2025 Jan 1;29(1):109-116. doi: 10.4196/kjpp.24.266. Epub 2024 Oct 31.
Auricular vagus nerve stimulation (aVNS) is one of the promising neuromodulation techniques due to its non-invasiveness, convenience, and effectiveness. aVNS has been suggested as a potential treatment for neurodegenerative diseases showing impaired cerebrospinal fluid (CSF) dynamics. Improving CSF flow has been proposed as a key mechanism of the therapeutic effect on neurodegenerative diseases. However, aVNS parameters have been set empirically and the effective parameter that maximize the effect remains elusive. Here we show that 30 minutes of low-frequency aVNS increased arterial vasomotion events and enhanced cortical CSF influx along the branches of middle cerebral arteries. By using two photon imaging or widefield fluorescence microscopy with plasma and CSF tracers for visualizing blood vessels and perivascular spaces, arterial vasomotion and cortical CSF influx dynamics were acquired. The low-frequency (2 Hz) aVNS, but not middleand high-frequency (40 and 100 Hz) aVNS, significantly increased the number of vasomotion events compared to the sham group. Accordingly, in the CSF imaging, 2 Hz of aVNS markedly enhanced the CSF influx. Our findings demonstrate that lowfrequency aVNS is the effective parameter in respect to modulating vasomotion and CSF influx, resulting in brain clearance effect.
耳迷走神经刺激(aVNS)因其非侵入性、便利性和有效性,是一种很有前景的神经调节技术。aVNS已被认为是治疗脑脊液(CSF)动力学受损的神经退行性疾病的一种潜在疗法。改善脑脊液流动已被提出是对神经退行性疾病治疗效果的关键机制。然而,aVNS参数一直是凭经验设定的,能使效果最大化的有效参数仍然难以捉摸。在这里,我们表明30分钟的低频aVNS增加了动脉血管运动事件,并增强了沿大脑中动脉分支的皮质脑脊液流入。通过使用双光子成像或宽场荧光显微镜,结合血浆和脑脊液示踪剂来可视化血管和血管周围间隙,获取了动脉血管运动和皮质脑脊液流入动力学。与假手术组相比,低频(2Hz)aVNS而非中频和高频(40和100Hz)aVNS显著增加了血管运动事件的数量。相应地,在脑脊液成像中,2Hz的aVNS显著增强了脑脊液流入。我们的研究结果表明,低频aVNS是调节血管运动和脑脊液流入的有效参数,从而产生脑清除效应。