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调节室旁核神经元的活动可预防电针BL15诱导的心房颤动引起的循环功能障碍。

Modulating activity of PVN neurons prevents atrial fibrillation induced circulation dysfunction by electroacupuncture at BL15.

作者信息

Wang Jingya, Zhang Qiumei, Yao Lin, He Teng, Chen Xinyi, Su Yang, Sun Shengxuan, Fan Mengyue, Yan Jinglan, Wang Taiyi, Zhang Meng, Guo Feng, Mo Shiqing, Lu Manqi, Zou Meixia, Li Liangjie, Yuan Qing, Pan Huashan, Chen Yongjun

机构信息

Institute of Acupuncture and Moxibustion, Shandong University of Traditional Chinese Medicine, Jinan, 250355, People's Republic of China.

South China Research Center for Acupuncture and Moxibustion, Guangzhou University of Chinese Medicine, Guangzhou, 510006, People's Republic of China.

出版信息

Chin Med. 2023 Oct 17;18(1):135. doi: 10.1186/s13020-023-00841-6.

Abstract

BACKGROUND

Circulation dysfunction is a major contributing factor to thrombosis in patients with atrial fibrillation (AF) for which effective interventions are lacking. Growing evidence indicates that regulating the paraventricular nucleus (PVN), an autonomic control center, could offer a novel strategy for treating cardiovascular and circulatory diseases. Concurrently, electroacupuncture (EA) at Xinshu (BL15), a form of peripheral nerve stimulation, has shown efficacy in treating several cardiovascular conditions, although its specific mechanism remains unclear. This study aimed to assess the impact of EA at BL15 on circulatory dysfunction in a rat AF model and investigate the pivotal role of PVN neuronal activity.

METHODS

To mimic the onset of AF, male SD rats received tail intravenous injection of ACh-CaCl and were then subjected to EA at BL15, sham EA, or EA at Shenshu (BL23). Macro- and micro-circulation function were evaluated using in vivo ultrasound imaging and laser doppler testing, respectively. Vasomotricity was assessed by measuring dimension changes during vascular relaxation and contraction. Vascular endothelial function was measured using myograph, and the activation of the autonomic nerve system was evaluated through nerve activity signals. Additionally, chemogenetic manipulation was used to block PVN neuronal activation to further elucidate the role of PVN activation in the prevention of AF-induced blood circulation dysfunction through EA treatment.

RESULTS

Our data demonstrate that EA at BL15, but not BL23 or sham EA, effectively prevented AF-induced macro- and micro-circulation dysfunction. Furthermore, EA at BL15 restored AF-induced vasomotricity impairment. Additionally, EA treatment prevented abnormal activation of the autonomic nerve system induced by AF, although it did not address vascular endothelial dysfunction. Importantly, excessive activation of PVN neurons negated the protective effects of EA treatment on AF-induced circulation dysfunction in rats.

CONCLUSION

These results indicate that EA treatment at BL15 modulates PVN neuronal activity and provides protection against AF-induced circulatory dysfunction.

摘要

背景

循环功能障碍是心房颤动(AF)患者血栓形成的主要促成因素,目前缺乏有效的干预措施。越来越多的证据表明,调节作为自主神经控制中心的室旁核(PVN)可能为治疗心血管和循环系统疾病提供一种新策略。同时,针刺心俞穴(BL15)作为一种外周神经刺激形式,已显示出对多种心血管疾病的治疗效果,但其具体机制尚不清楚。本研究旨在评估针刺BL15对大鼠房颤模型循环功能障碍的影响,并探讨PVN神经元活动的关键作用。

方法

为模拟房颤的发作,雄性SD大鼠经尾静脉注射乙酰胆碱 - 氯化钙,然后接受BL15针刺、假针刺或肾俞穴(BL23)针刺。分别使用体内超声成像和激光多普勒测试评估宏观和微循环功能。通过测量血管舒张和收缩过程中的尺寸变化来评估血管舒缩功能。使用血管张力测定仪测量血管内皮功能,并通过神经活动信号评估自主神经系统的激活情况。此外,采用化学遗传学操作阻断PVN神经元激活,以进一步阐明PVN激活在针刺治疗预防房颤引起的血液循环功能障碍中的作用。

结果

我们的数据表明,针刺BL15而非BL23或假针刺能有效预防房颤引起的宏观和微循环功能障碍。此外,针刺BL15可恢复房颤引起的血管舒缩功能损伤。另外,针刺治疗可预防房颤诱导的自主神经系统异常激活,尽管它不能解决血管内皮功能障碍问题。重要的是,PVN神经元的过度激活消除了针刺治疗对大鼠房颤诱导的循环功能障碍的保护作用。

结论

这些结果表明,针刺BL15可调节PVN神经元活动,并为房颤诱导的循环功能障碍提供保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7244/10580609/b33703b1bda6/13020_2023_841_Fig1_HTML.jpg

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