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首页> 外文期刊>Surgical infections >Cholinergic Signaling in the Gut: A Novel Mechanism of Barrier Protection through Activation of Enteric Glia Cells
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Cholinergic Signaling in the Gut: A Novel Mechanism of Barrier Protection through Activation of Enteric Glia Cells

机译:胆碱能的信号传导:通过激活肠胶质细胞的屏障保护的新机制。

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摘要

Background: Enteric glia cells (EGCs) play an important role in maintaining proper intestinal barrier function. We have shown that vagal nerve stimulation (VNS) increases EGC activation, which is associated with better gut barrier integrity. Enteric neurons communicate with EGCs through nicotinic cholinergic signaling, which may represent a pathway by which VNS activates EGCs. This study sought to define further the mechanism by which VNS prevents intestinal barrier failure using an in vitro model. We hypothesized that a nicotinic cholinergic agonist would increase EGC activation, prevent intestinal nuclear factor kappa-B (NF-kB) activation, and result in better intestinal barrier function. Methods: Cultured EGCs were exposed to the nicotinic cholinergic agonist nicotine. Expression of glial fibrillary acidic protein (GFAP) was measured by immunoblot to determine changes in EGC activation. Caco-2 cells were grown to confluence and incubated alone or in co-culture with EGCs. Cells were then stimulated with Cytomix for 24 h in the presence or absence of nicotine, and barrier integrity was assessed by permeability to 4-kDa FITC-dextran. Changes in phosphorylated inhibitor of NF-κb (P-IκBα and phosphorylated NF-κB (P-NF-κB) were assessed by immunoblot. Results: Stimulation with nicotine resulted in EGC activation, as demonstrated by an increase in GFAP expression. Cytomix stimulation increased permeability in Caco-2 cells cultured alone or with EGCs. Treatment of stimulated Caco-2/EGC co-cultures with nicotine reduced permeability similar to control. Nicotine failed to prevent barrier permeability in Caco-2 cells alone. Co-culture of stimulated Caco-2 cells with nicotine-activated EGCs prevented Cytomix-induced increases in P-IκBα and P-NF-κB expression. Conclusion: A pharmacologic nicotinic cholinergic agonist increased EGC activation and improved intestinal epithelial barrier function in an in vitro model of intestinal injury. Nicotine-activated EGCs appear to modulate barrier function by preventing the activation of the NF-κB pathway. Therapies aimed at activating EGCs may have important clinical applications for improving intestinal barrier function after injury.
机译:背景:肠神经胶质细胞(EGC)在维持适当的肠屏障功能中起重要作用。我们已经显示迷走神经刺激(VNS)增加EGC激活,这与更好的肠屏障完整性相关。肠神经元通过烟碱胆碱能信号传导与EGC通讯,这可能代表VNS激活EGC的途径。这项研究试图使用体外模型进一步定义VNS预防肠道屏障衰竭的机制。我们假设烟碱胆碱能激动剂会增加EGC的激活,防止肠核因子kappa-B(NF-kB)的激活,并导致更好的肠屏障功能。方法:将培养的EGC暴露于烟碱胆碱能激动剂烟碱。通过免疫印迹测定神经胶质原纤维酸性蛋白(GFAP)的表达,以确定EGC激活的变化。 Caco-2细胞生长至汇合并单独孵育或与EGC共培养。然后在存在或不存在尼古丁的情况下,用Cytomix刺激细胞24小时,并通过对4-kDa FITC-葡聚糖的通透性评估屏障完整性。通过免疫印迹评估了NF-κb磷酸化抑制剂(P-IκBα和磷酸化NF-κB(P-NF-κB)的变化。结果:尼古丁刺激可导致EGC活化,如GFAP表达增加所证明。单独或与EGC一起培养的Caco-2细胞的通透性增加;用尼古丁处理刺激的Caco-2 / EGC共培养物,通透性降低,与对照相似;尼古丁不能阻止单独的Caco-2细胞的屏障通透性。尼古丁激活的EGCs的Caco-2细胞阻止了Cytomix诱导的P-IκBα和P-NF-κB表达的增加。结论:药理性烟碱胆碱能激动剂在体外肠损伤模型中增加了EGC的激活并改善了肠上皮屏障功能。 。尼古丁激活的EGC似乎通过阻止NF-κB途径的激活来调节屏障功能,旨在激活EGC的疗法可能对免疫抑制剂具有重要的临床应用。证明受伤后的肠屏障功能。

著录项

  • 来源
    《Surgical infections 》 |2014年第4期| 387-393| 共7页
  • 作者单位

    Division of Trauma, Surgical Critical Care, and Burns, Department of Surgery, University of California San Diego Health Sciences, San Diego, California;

    Division of Trauma, Surgical Critical Care, and Burns, Department of Surgery, University of California San Diego Health Sciences, San Diego, California;

    Division of Trauma, Surgical Critical Care, and Burns, Department of Surgery, University of California San Diego Health Sciences, San Diego, California;

    Division of Trauma, Surgical Critical Care, and Burns, Department of Surgery, University of California San Diego Health Sciences, San Diego, California;

    Division of Trauma, Surgical Critical Care, and Burns Department of Surgery University of California San Diego Health Sciences 200 W. Arbor Dr., #8896 San Diego, CA 92103-8896;

  • 收录信息 美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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