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开发并鉴定一种用于迷走神经刺激的慢性植入式小鼠模型。

Development and characterization of a chronic implant mouse model for vagus nerve stimulation.

机构信息

Institute of Bioelectronic Medicine, The Feinstein Institutes for Medical Research, Northwell Health, Manhasset, United States.

Departments of Neurosurgery, University of Colorado Anschutz Medical Campus, Aurora, United States.

出版信息

Elife. 2021 Apr 6;10:e61270. doi: 10.7554/eLife.61270.

Abstract

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.

摘要

迷走神经刺激(VNS)在临床前和临床研究中抑制炎症和自身免疫性疾病。使用迷走神经的急性电生理刺激已经很好地描述了潜在的分子、神经和解剖学机制。然而,关于慢性 VNS 的作用仍有几个未解决的机制问题,这需要解决许多技术挑战,以便在小鼠中与迷走神经进行长期接口。在这里,我们描述了一种在四个研究实验室中开发和验证的可扩展的小鼠长期 VNS 模型。我们观察到至少 4 周内 60-90%的动物的心率反应显著。设备植入不会损害迷走神经介导的反射。使用这种植入物的 VNS 显著抑制了内毒素血症中的 TNF 水平。对植入神经的组织学检查显示出纤维化包裹而没有轴突病理学。该模型可能有助于研究迷走神经的生理学,并提供了一种工具,可系统地研究慢性疾病在小鼠模型中的长期 VNS 治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb7b/8051950/f3f5c5fab16e/elife-61270-fig1.jpg

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