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腹腔内给予 LPS 和膈下分支迷走神经刺激对大鼠模型血浆细胞因子反应的特征分析。

Characterization of plasma cytokine response to intraperitoneally administered LPS & subdiaphragmatic branch vagus nerve stimulation in rat model.

机构信息

Department of Electrical and Computer Engineering, Purdue University, West Lafayette, Indiana, United States of America.

Center for Implantable Devices (CID), Purdue University, West Lafayette, Indiana, United States of America.

出版信息

PLoS One. 2019 Mar 28;14(3):e0214317. doi: 10.1371/journal.pone.0214317. eCollection 2019.

Abstract

Vagus nerve stimulation (VNS) has been on the forefront of inflammatory disorder research and has yielded many promising results. Questions remain, however, about the biological mechanisms of such treatments and the inconsistencies in the methods used in research efforts. Here, we aimed to clarify the inflammatory response to intraperitoneal (IP) injections of lipopolysaccharide (LPS) in rats, while analyzing corresponding effects of electrical stimulation to subdiaphragmatic branches (anterior gastric, accessory celiac, and hepatic) of the left vagus nerve. We accomplished an in-depth characterization of the time-varying cytokine cascade response in the serum of 58 rats to an acute IP LPS challenge over a 330-minute period by utilizing curve-fitting and starting point-alignment methods. We then explored the post-LPS neuromodulation effects of electrically stimulating individually cuffed subdiaphragmatic branches. Through our analysis, we found there to be a consistent order of IP LPS cytokine response (IL-10, TNF-α, GM-CSF, IL-17F, IL-6, IL-22, INF-γ). Apart from IL-10, the IP cytokine cascade was more variable in starting time and occurred later than in previously recorded intravenous (IV) challenges. We also found distinct regulatory effects on multiple cytokine levels by each of the three subdiaphragmatic stimulation subsets. While the time-variability of IP LPS use in rats complicates its utility, we have shown it to be a practical, arguably more physiologically relevant method than IV in rats when our methods are used. More importantly, we have shown that selective subdiaphragmatic neurostimulation can be utilized to selectively induce specific effects on inflammation in the body.

摘要

迷走神经刺激 (VNS) 一直处于炎症性疾病研究的前沿,已经产生了许多有前途的结果。然而,关于这些治疗的生物学机制以及研究工作中使用的方法的不一致性仍存在疑问。在这里,我们旨在阐明大鼠腹腔内 (IP) 注射脂多糖 (LPS) 后的炎症反应,同时分析电刺激膈下分支(胃前支、副腹腔支和肝支)对其的对应影响迷走神经的左侧。我们通过使用曲线拟合和起始点对齐方法,对 58 只大鼠在 330 分钟内对急性 IP LPS 挑战的血清细胞因子级联反应进行了深入的时间变化特征分析。然后,我们探索了单独刺激套囊膈下分支后的 LPS 后神经调节作用。通过我们的分析,我们发现 IP LPS 细胞因子反应(IL-10、TNF-α、GM-CSF、IL-17F、IL-6、IL-22、INF-γ)存在一致的顺序。除了 IL-10 之外,IP 细胞因子级联反应的起始时间和发生时间比以前记录的静脉内 (IV) 挑战更具变异性。我们还发现三种膈下刺激亚组中的每一种对多种细胞因子水平都有明显的调节作用。虽然大鼠中 IP LPS 的使用时间变化使其使用变得复杂,但我们已经表明,当我们使用我们的方法时,它比 IV 在大鼠中更实用,更具生理相关性。更重要的是,我们已经表明,选择性膈下神经刺激可用于选择性诱导体内炎症的特定影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3dc/6438475/93c86f0b3dc4/pone.0214317.g001.jpg

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