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Enhancement of Methacholine-Evoked Tracheal Contraction Induced by Bacterial Lipopolysaccharides Depends on Epithelium and Tumor Necrosis Factor

机译:细菌脂多糖诱导的甲硫胆碱诱发的气管收缩的增强取决于上皮和肿瘤坏死因子

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摘要

Inhaled bacterial lipopolysaccharides (LPSs) induce an acute tumour necrosis factor-alpha (TNF-α-) dependent inflammatory response in the murine airways mediated by Toll-like receptor 4 (TLR4) via the myeloid differentiation MyD88 adaptor protein pathway. However, the contractile response of the bronchial smooth muscle and the role of endogenous TNFα in this process have been elusive. We determined the in vivo respiratory pattern of C57BL/6 mice after intranasal LPS administration with or without the presence of increasing doses of methacholine (MCh). We found that LPS administration altered the basal and MCh-evoked respiratory pattern that peaked at 90 min and decreased thereafter in the next 48 h, reaching basal levels 7 days later. We investigated in controlled ex vivo condition the isometric contraction of isolated tracheal rings in response to MCh cholinergic stimulation. We observed that preincubation of the tracheal rings with LPS for 90 min enhanced the subsequent MCh-induced contractile response (hyperreactivity), which was prevented by prior neutralization of TNFα with a specific antibody. Furthermore, hyperreactivity induced by LPS depended on an intact epithelium, whereas hyperreactivity induced by TNFα was well maintained in the absence of epithelium. Finally, the enhanced contractile response to MCh induced by LPS when compared with control mice was not observed in tracheal rings from TLR4- or TNF- or TNF-receptor-deficient mice. We conclude that bacterial endotoxin-mediated hyperreactivity of isolated tracheal rings to MCh depends upon TLR4 integrity that signals the activation of epithelium, which release endogenous TNFα.
机译:吸入细菌脂多糖(LPS)通过髓样分化MyD88衔接子蛋白途径在由Toll样受体4(TLR4)介导的鼠气道中诱导急性肿瘤坏死因子-α(TNF-α-)依赖性炎症反应。然而,支气管平滑肌的收缩反应和内源性TNFα在该过程中的作用难以捉摸。我们确定了鼻内LPS给药后有或没有增加剂量的乙酰甲胆碱(MCh)的存在后C57BL / 6小鼠的体内呼吸模式。我们发现,LPS的使用改变了基础和MCh诱发的呼吸模式,该模式在90分钟时达到峰值,然后在接下来的48小时内降低,在7天后达到基础水平。我们在受控的离体条件下研究了响应MCh胆碱能刺激的孤立气管环的等距收缩。我们观察到,LPS气管环预温育90分钟可增强随后的MCh诱导的收缩反应(高反应性),这可通过事先用特异性抗体中和TNFα来预防。此外,LPS诱导的高反应性依赖于完整的上皮,而TNFα诱导的高反应性在不存在上皮的情况下得到很好的维持。最后,与对照小鼠相比,在来自TLR4或TNF或TNF受体缺失的小鼠的气管环中未观察到LPS诱导的对MCh的增强收缩反应。我们得出结论,细菌内毒素介导的孤立气管环对MCh的过度反应性取决于TLR4的完整性,该信号指示上皮的激活,释放出内源性TNFα。

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