迷走神经电刺激
迷走神经
医学
神经科学
刺激
反射
植入
麻醉
内科学
生物
外科
作者
Ibrahim T. Mughrabi,Jordan Hickman,Naveen Jayaprakash,Dane Thompson,Umair Ahmed,Eleni S. Papadoyannis,Yao-Chuan Chang,Adam Abbas,Timir Datta-Chaudhuri,Eric H. Chang,Theodoros P. Zanos,Sunhee C. Lee,Robert C. Froemke,Kevin J. Tracey,Cristin G. Welle,Yousef Al‐Abed,Stavros Zanos
出处
期刊:eLife
[eLife Sciences Publications, Ltd.]
日期:2021-04-06
卷期号:10
被引量:26
摘要
Vagus nerve stimulation (VNS) suppresses inflammation and autoimmune diseases in preclinical and clinical studies. The underlying molecular, neurological, and anatomical mechanisms have been well characterized using acute electrophysiological stimulation of the vagus. However, there are several unanswered mechanistic questions about the effects of chronic VNS, which require solving numerous technical challenges for a long-term interface with the vagus in mice. Here, we describe a scalable model for long-term VNS in mice developed and validated in four research laboratories. We observed significant heart rate responses for at least 4 weeks in 60-90% of animals. Device implantation did not impair vagus-mediated reflexes. VNS using this implant significantly suppressed TNF levels in endotoxemia. Histological examination of implanted nerves revealed fibrotic encapsulation without axonal pathology. This model may be useful to study the physiology of the vagus and provides a tool to systematically investigate long-term VNS as therapy for chronic diseases modeled in mice.
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