• Neuromodulation · Oct 2024

    Restoring the Autonomic Balance in an Atrial Fibrillation Rat Model by Electroacupuncture at the Neiguan Point.

    • Yang Su, Jing Huang, Shengxuan Sun, Teng He, Taiyi Wang, Mengyue Fan, Huanhuan Yu, Jinglan Yan, Lin Yao, Yucen Xia, Meng Zhang, Yuanjia Zheng, Xiaoyan Luo, Yuewen Zhang, Manqi Lu, Meixia Zou, Cunzhi Liu, and Yongjun Chen.
    • South China Research Center for Acupuncture and Moxibustion, Medical College of Acu-Moxi and Rehabilitation, Guangzhou University of Chinese Medicine, Guangzhou, China.
    • Neuromodulation. 2024 Oct 1; 27 (7): 119612071196-1207.

    ObjectivesAutonomic nervous activity imbalance plays an important role in atrial fibrillation (AF). AF can be treated by acupuncture at the Neiguan point (PC6), but the mechanism remains elusive. Here, we investigated autonomic nervous system activity in electroacupuncture (EA) at PC6 in a rat AF model.Material And MethodsIn this study, we established a rat AF model via tail vein injection with ACh-CaCl2 for ten consecutive days with or without EA at PC6. AF inducibility and heart rate variability (HRV) were assessed by electrocardiogram. Next, we completed in vivo recording of the activity of cervical sympathetic and vagal nerves, respectively. Finally, the activities of brain regions related to autonomic nerve regulation were assessed by c-Fos immunofluorescence and multichannel recording.ResultsEA at PC6 decreased AF inducibility and prevented changes in HRV caused by ACh-CaCl2 injection. Meanwhile, EA at PC6 reversed the increased sympathetic and decreased vagal nerve activity in AF rats. Furthermore, EA treatment downregulated increased c-Fos expression in brain regions, including paraventricular nucleus, rostral ventrolateral medulla, and dorsal motor nucleus of the vagus in AF, while c-Fos expression in nucleus ambiguus was upregulated with EA.ConclusionThe protective effect of EA at PC6 on AF is associated with balance between sympathetic and vagal nerve activities.Copyright © 2022 International Neuromodulation Society. Published by Elsevier Inc. All rights reserved.

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