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经颅直流电刺激改变了小鼠大脑中的脑脊液-间质液交换。

Transcranial direct current stimulation alters cerebrospinal fluid-interstitial fluid exchange in mouse brain.

机构信息

Graduate School of Humanities and Sciences, Ochanomizu University, Ohtsuka, Bunkyo-ku, Tokyo, 112-8610, Japan.

Graduate School of Humanities and Sciences, Ochanomizu University, Ohtsuka, Bunkyo-ku, Tokyo, 112-8610, Japan.

出版信息

Brain Stimul. 2024 May-Jun;17(3):620-632. doi: 10.1016/j.brs.2024.04.009. Epub 2024 Apr 28.

Abstract

BACKGROUND

Transcranial direct current stimulation (tDCS) is a non-invasive brain stimulation technique that has gained prominence recently. Clinical studies have explored tDCS as an adjunct to neurologic disease rehabilitation, with evidence suggesting its potential in modulating brain clearance mechanisms. The glymphatic system, a proposed brain waste clearance system, posits that cerebrospinal fluid-interstitial fluid (CSF-ISF) exchange aids in efficient metabolic waste removal. While some studies have linked tDCS to astrocytic inositol trisphosphate (IP)/Ca signaling, the impact of tDCS on CSF-ISF exchange dynamics remains unclear.

HYPOTHESIS

tDCS influences the dynamics of CSF-ISF exchange through astrocytic IP/Ca signaling.

METHODS

In this study, we administered tDCS (0.1 mA for 10 min) to C57BL/6N mice anesthetized with ketamine-xylazine (KX). The anode was positioned on the cranial bone above the cortex, and the cathode was inserted into the neck. Following tDCS, we directly assessed brain fluid dynamics by injecting biotinylated dextran amine (BDA) as a CSF tracer into the cisterna magna (CM). The brain was then extracted after either 30 or 60 min and fixed. After 24 h, the sectioned brain slices were stained with Alexa 594-conjugated streptavidin (SA) to visualize BDA using immunohistochemistry. We conducted Electroencephalography (EEG) recordings and aquaporin 4 (AQP4)/CD31 immunostaining to investigate the underlying mechanisms of tDCS. Additionally, we monitored the efflux of Evans blue, injected into the cisterna magna, using cervical lymph node imaging. Some experiments were subsequently repeated with inositol trisphosphate receptor type 2 (IPR2) knockout (KO) mice.

RESULTS

Post-tDCS, we observed an increased CSF tracer influx, indicating a modulation of CSF-ISF exchange by tDCS. Additionally, tDCS appeared to enhance the brain's metabolic waste efflux. EEG recordings showed an increase in delta wave post-tDCS. But no significant change in AQP4 expression was detected 30 min post-tDCS. Besides, we found no alteration in CSF-ISF exchange and delta wave activity in IPR2 KO mice after tDCS.

CONCLUSION

Our findings suggest that tDCS augments the glymphatic system's influx and efflux. Through astrocytic IP/Ca signaling, tDCS was found to modify the delta wave, which correlates positively with brain clearance. This study underscores the potential of tDCS in modulating brain metabolic waste clearance.

摘要

背景

经颅直流电刺激(tDCS)是一种非侵入性的脑刺激技术,最近得到了广泛关注。临床研究已经探索了 tDCS 作为神经疾病康复的辅助手段,有证据表明它在调节大脑清除机制方面具有潜力。糖液系统,即一种提出的大脑废物清除系统,假设脑脊髓液-间质液(CSF-ISF)交换有助于有效代谢废物的清除。虽然一些研究将 tDCS 与星形胶质细胞肌醇三磷酸(IP)/Ca 信号联系起来,但 tDCS 对 CSF-ISF 交换动力学的影响尚不清楚。

假设

tDCS 通过星形胶质细胞 IP/Ca 信号影响 CSF-ISF 交换的动力学。

方法

在这项研究中,我们用氯胺酮-甲苯噻嗪(KX)麻醉的 C57BL/6N 小鼠给予 tDCS(0.1 mA 持续 10 分钟)。阳极置于颅骨上方的皮层上,阴极插入颈部。tDCS 后,我们通过将生物素化葡聚糖胺(BDA)作为 CSF 示踪剂直接注入枕大池(CM)来直接评估脑内液动力学。然后在 30 或 60 分钟后取出大脑并固定。24 小时后,用 Alexa 594 缀合的链霉亲和素(SA)对切片脑进行染色,通过免疫组织化学法观察 BDA。我们进行脑电图(EEG)记录和水通道蛋白 4(AQP4)/CD31 免疫染色,以研究 tDCS 的潜在机制。此外,我们通过颈淋巴结成像监测枕大池注射的 Evans 蓝的流出。随后,一些实验用肌醇三磷酸受体 2(IPR2)敲除(KO)小鼠重复进行。

结果

tDCS 后,我们观察到 CSF 示踪剂流入增加,表明 tDCS 调节了 CSF-ISF 交换。此外,tDCS 似乎增强了大脑的代谢废物流出。EEG 记录显示 tDCS 后 delta 波增加。但 tDCS 后 30 分钟时,AQP4 表达没有明显变化。此外,tDCS 后,IPR2 KO 小鼠的 CSF-ISF 交换和 delta 波活动没有改变。

结论

我们的研究结果表明,tDCS 增强了糖液系统的流入和流出。通过星形胶质细胞 IP/Ca 信号,tDCS 被发现可以调节与大脑清除相关的 delta 波。这项研究强调了 tDCS 在调节大脑代谢废物清除方面的潜力。

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