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从黏膜中释放 5-羟色胺对于结肠移行性运动复合波的产生或传播不是必需的。

Release of 5-hydroxytryptamine from the mucosa is not required for the generation or propagation of colonic migrating motor complexes.

机构信息

Department of Human Physiology, Flinders University, School of Medicine, South Australia, Australia.

出版信息

Gastroenterology. 2010 Feb;138(2):659-70 670.e1-2. doi: 10.1053/j.gastro.2009.09.020. Epub 2009 Sep 24.

Abstract

BACKGROUND & AIMS: The pacemaker mechanism that underlies the cyclic generation of colonic migrating motor complexes (CMMCs) is unknown, although studies have suggested that release of 5-hydroxytryptamine (5-HT) from enterochromaffin cells in the mucosa is essential. However, no recordings of 5-HT release from the colon have been made to support these suggestions.

METHODS

We used real-time amperometry to record 5-HT release directly from the mucosa in mouse isolated colon to determine whether 5-HT release from enterochromaffin cells was required for CMMC generation.

RESULTS

We found that 5-HT was released from mucosal enterochromaffin cells during many, but not all, CMMC contractions. However, spontaneous CMMCs still were recorded even after removal of the mucosa, and submucosa and submucosal plexus when all release of 5-HT had been abolished. CMMC pacemaker frequency was slower in the absence of the mucosa, an effect reversed by focal application of exogenous 5-HT onto the myenteric plexus. Despite the absence of the mucosa and all detectable release of 5-HT, ondansetron significantly reduced CMMC frequency, suggesting that 5-HT(3) receptor blockade slows the CMMC pacemaker via a mechanism independent of 5-HT release from enterochromaffin cells.

CONCLUSIONS

Our results show that 5-HT can be released dynamically during CMMCs. However, the intrinsic pacemaker and pattern generator underlying CMMC generation lies within the myenteric plexus and/or muscularis externa and does not require any release of 5-HT from enterochromaffin cells. Endogenous release of 5-HT from enterochromaffin cells plays a modulatory role, not an essential role, in CMMC generation.

摘要

背景与目的

虽然已有研究表明,黏膜内嗜铬细胞释放 5-羟色胺(5-HT)对于结肠移行性复合运动(CMMC)的周期性产生至关重要,但目前尚不清楚其背后的起搏器机制。然而,尚无关于结肠中 5-HT 释放的记录可以支持这些观点。

方法

我们使用实时电流测定法直接记录小鼠离体结肠黏膜中的 5-HT 释放,以确定嗜铬细胞释放 5-HT 是否是 CMMC 产生所必需的。

结果

我们发现,在许多但不是所有的 CMMC 收缩过程中,5-HT 都从黏膜嗜铬细胞中释放出来。然而,即使在去除黏膜、黏膜下层和黏膜下层丛后,当 5-HT 的所有释放都被消除时,仍可记录到自发性 CMMC。在没有黏膜的情况下,CMMC 的起搏频率会变慢,而在外源性 5-HT 局部应用于肌间神经丛时,这种效应可以逆转。尽管没有黏膜和所有可检测到的 5-HT 释放,昂丹司琼仍显著降低了 CMMC 的频率,这表明 5-HT3 受体阻断通过一种独立于嗜铬细胞释放 5-HT 的机制来减缓 CMMC 起搏器的活动。

结论

我们的结果表明,5-HT 可以在 CMMC 期间动态释放。然而,CMMC 产生的内在起搏器和模式发生器位于肌间神经丛和/或外纵肌内,并不需要嗜铬细胞释放任何 5-HT。内源性 5-HT 从嗜铬细胞的释放对 CMMC 的产生起着调节作用,而不是必需作用。

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