Aix Marseille Université, CNRS, CRN2M UMR 7286 Marseille, France.
Front Neurosci. 2013 Apr 15;7:58. doi: 10.3389/fnins.2013.00058. eCollection 2013.
The colonic migrating motor complex (CMMC) is a major pattern of motility that is entirely generated and organized by the enteric nervous system. We have previously demonstrated that the Nav1.9 channel underlies a tetrodotoxin-resistant sodium current which modulates the excitability of enteric neurons. The aim of this study was to observe the effect of loss of the Nav1.9 channel in enteric neurons on mouse colonic motility in vitro. The mechanical activity of the circular muscle was simultaneously recorded from three sites, namely, proximal, mid- and distal, along the whole colon of male, age-matched wild-type and Nav1.9 null mice. Spontaneous CMMCs were observed in all preparations. The mean frequency of CMMCs was significantly higher in the Nav1.9 null mice (one every 2.87 ± 0.1 min compared to one every 3.96 ± 0.23 min in the wild type). The mean duration of CMMCs was shorter and the mean area-under-contraction was larger in the Nav1.9 null mice compared to the wild type. In addition, CMMCs propagated preferentially in an aboral direction in the Nav1.9 null mice. Our study demonstrates that CMMCs do occur in mice lacking the Nav1.9 channel, but their characteristics are significantly different from controls. Up to now, the Nav1.9 channel was mainly associated with nociceptive neurons and involved in their hyperexcitability after inflammation. Our result shows for the first time a role for the Nav1.9 channel in a complex colonic motor pattern.
结肠移行性运动复合波(CMMC)是一种主要的运动模式,完全由肠神经系统产生和组织。我们之前已经证明,Nav1.9 通道是一种河豚毒素抗性钠电流的基础,这种电流可以调节肠神经元的兴奋性。本研究的目的是观察肠神经元中 Nav1.9 通道缺失对体外小鼠结肠运动的影响。通过同时记录雄性、年龄匹配的野生型和 Nav1.9 敲除小鼠整个结肠近端、中部和远端三个部位的环形肌机械活动,观察到自发性 CMMC。所有标本中均观察到 CMMC。Nav1.9 敲除小鼠的 CMMC 平均频率明显高于野生型小鼠(每 2.87±0.1 分钟一次,而野生型小鼠为每 3.96±0.23 分钟一次)。CMMC 的平均持续时间更短,收缩面积更大。此外,CMMC 在 Nav1.9 敲除小鼠中更倾向于向口腔方向传播。我们的研究表明,缺乏 Nav1.9 通道的小鼠确实会发生 CMMC,但它们的特征与对照有显著差异。到目前为止,Nav1.9 通道主要与伤害感受神经元相关,并在炎症后参与其过度兴奋。我们的结果首次表明 Nav1.9 通道在复杂的结肠运动模式中发挥作用。