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千赫兹频率神经阻滞增强迷走神经刺激的抗炎作用。

Kilohertz frequency nerve block enhances anti-inflammatory effects of vagus nerve stimulation.

机构信息

Georgia Institute of Technology, Department of Biomedical Engineering, Atlanta, GA, 30332 USA.

Georgia Institute of Technology, Bioengineering Graduate Program, Atlanta, GA, 30332 USA.

出版信息

Sci Rep. 2017 Jan 5;7:39810. doi: 10.1038/srep39810.

Abstract

Efferent activation of the cervical vagus nerve (cVN) dampens systemic inflammatory processes, potentially modulating a wide-range of inflammatory pathological conditions. In contrast, afferent cVN activation amplifies systemic inflammatory processes, leading to activation of the hypothalamic-pituitary-adrenal (HPA) axis, the sympathetic nervous system through the greater splanchnic nerve (GSN), and elevation of pro-inflammatory cytokines. Ideally, to clinically implement anti-inflammatory therapy via cervical vagus nerve stimulation (cVNS) one should selectively activate the efferent pathway. Unfortunately, current implementations, in animal and clinical investigations, activate both afferent and efferent pathways. We paired cVNS with kilohertz electrical stimulation (KES) nerve block to preferentially activate efferent pathways while blocking afferent pathways. Selective efferent cVNS enhanced the anti-inflammatory effects of cVNS. Our results demonstrate that: (i) afferent, but not efferent, cVNS synchronously activates the GSN in a dose-dependent manner; (ii) efferent cVNS enabled by complete afferent KES nerve block enhances the anti-inflammatory benefits of cVNS; and (iii) incomplete afferent KES nerve block exacerbates systemic inflammation. Overall, these data demonstrate the utility of paired efferent cVNS and afferent KES nerve block for achieving selective efferent cVNS, specifically as it relates to neuromodulation of systemic inflammation.

摘要

颈迷走神经(cVN)传出激活抑制全身炎症过程,可能调节广泛的炎症病理状况。相反,传入 cVN 激活放大全身炎症过程,导致下丘脑-垂体-肾上腺(HPA)轴、通过较大的内脏神经(GSN)的交感神经系统以及促炎细胞因子的升高。理想情况下,通过颈迷走神经刺激(cVNS)进行临床抗炎治疗,应选择性地激活传出途径。不幸的是,目前的动物和临床研究中的实施方法同时激活传入和传出途径。我们将 cVNS 与千赫兹电刺激(KES)神经阻滞相结合,以优先激活传出途径同时阻断传入途径。选择性传出 cVNS 增强了 cVNS 的抗炎作用。我们的结果表明:(i)传入而非传出 cVNS 以剂量依赖的方式同步激活 GSN;(ii)通过完全传入 KES 神经阻滞实现的传出 cVNS 增强了 cVNS 的抗炎益处;(iii)不完全传入 KES 神经阻滞加重全身炎症。总体而言,这些数据表明,传出 cVNS 和传入 KES 神经阻滞的配对可用于实现选择性传出 cVNS,特别是与全身炎症的神经调节有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4d2/5215548/ca4c47789552/srep39810-f5.jpg

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