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在小鼠结肠中,直肠神经中不同类别的脊髓传入在结肠移行性运动复合期中的发放模式和功能作用。

Firing patterns and functional roles of different classes of spinal afferents in rectal nerves during colonic migrating motor complexes in mouse colon.

机构信息

Discipline of Human Physiology and Centre for Neuroscience, Flinders Medical Science and Technology Cluster, Flinders University, South Australia, Australia.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2012 Aug 1;303(3):G404-11. doi: 10.1152/ajpgi.00047.2012. Epub 2012 May 24.

Abstract

The functional role of the different classes of visceral afferents that innervate the large intestine is poorly understood. Recent evidence suggests that low-threshold, wide-dynamic-range rectal afferents play an important role in the detection and transmission of visceral pain induced by noxious colorectal distension in mice. However, it is not clear which classes of spinal afferents are activated during naturally occurring colonic motor patterns or during intense contractions of the gut smooth muscle. We developed an in vitro colorectum preparation to test how the major classes of rectal afferents are activated during spontaneous colonic migrating motor complex (CMMC) or pharmacologically induced contraction. During CMMCs, circular muscle contractions increased firing in low-threshold, wide-dynamic-range muscular afferents and muscular-mucosal afferents, which generated a mean firing rate of 1.53 ± 0.23 Hz (n = 8) under isotonic conditions and 2.52 ± 0.36 Hz (n = 17) under isometric conditions. These low-threshold rectal afferents were reliably activated by low levels of circumferential stretch induced by increases in length (1-2 mm) or load (1-3 g). In a small proportion of cases (5 of 34 units), some low-threshold muscular and muscular-mucosal afferents decreased their firing rate during the peak of the CMMC contractions. High-threshold afferents were never activated during spontaneous CMMC contractions or tonic contractions induced by bethanechol (100 μM). High-threshold rectal afferents were only activated by intense levels of circumferential stretch (10-20 g). These results show that, in the rectal nerves of mice, low-threshold, wide-dynamic-range muscular and muscular-mucosal afferents are excited during contraction of the circular muscle that occurs during spontaneous CMMCs. No activation of high-threshold rectal afferents was detected during CMMCs or intense contractile activity in naïve mouse colorectum.

摘要

支配大肠的不同类别的内脏传入神经的功能作用还不太清楚。最近的证据表明,低阈值、宽动态范围的直肠传入神经在小鼠的有害性结肠扩张引起的内脏疼痛的检测和传递中发挥重要作用。然而,在自然发生的结肠运动模式期间或在肠道平滑肌的强烈收缩期间,哪些类别的脊髓传入神经被激活尚不清楚。我们开发了一种体外结肠准备,以测试主要类别的直肠传入神经在自发性结肠移行性运动复合波(CMMC)或药理学诱导的收缩期间如何被激活。在 CMMC 期间,环形肌肉收缩增加了低阈值、宽动态范围的肌肉传入神经和肌肉-黏膜传入神经的放电,在等张条件下产生的平均放电率为 1.53 ± 0.23 Hz(n = 8),在等长条件下为 2.52 ± 0.36 Hz(n = 17)。这些低阈值直肠传入神经可被长度增加(1-2 mm)或负荷增加(1-3 g)引起的小幅度环周伸展可靠地激活。在一小部分情况下(34 个单位中的 5 个),一些低阈值肌肉和肌肉-黏膜传入神经在 CMMC 收缩的峰值期间降低了它们的放电率。在自发性 CMMC 收缩或贝那胆碱(100 μM)诱导的紧张性收缩期间,高阈值传入神经从未被激活。高阈值直肠传入神经仅在强烈的环周伸展(10-20 g)时被激活。这些结果表明,在小鼠的直肠神经中,低阈值、宽动态范围的肌肉和肌肉-黏膜传入神经在自发性 CMMC 期间发生的环形肌肉收缩期间被兴奋。在 CMMC 期间或在未成熟小鼠结肠的强烈收缩活动中,未检测到高阈值直肠传入神经的激活。

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