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比较小鼠回肠环形和平滑纵肌中的氮能信号传导。

Comparison of nitrergic signaling in circular and longitudinal smooth muscle of murine ileum.

机构信息

Physiologisches Institut, Universität Würzburg, Würzburg, Germany.

出版信息

Neurogastroenterol Motil. 2018 Mar;30(3). doi: 10.1111/nmo.13175. Epub 2017 Aug 7.

DOI:10.1111/nmo.13175
PMID:28782271
Abstract

BACKGROUND

Gastrointestinal (GI) motility originates from coordinated movements of circular (CM) and longitudinal (LM) smooth muscle. How the two muscle layers react individually to nitrergic input and how they integrate nitrergic signaling is not thoroughly understood.

METHODS

We used immunohistochemistry to unveil expression of NO-sensitive guanylyl cyclase (NO-GC) in the ileum. For functional analyses, we measured tone of ileal CM and spontaneous contractions in both ileal muscle layers from mice lacking NO-GC globally (GCKO) and specifically in smooth muscle cells (SMC-GCKO).

KEY RESULTS

In contrast to other parts of the GI tract, NO-GC was not expressed in ckit-positive cells in ileum. NO-GC expression was intense in platelet-derived growth factor receptor α-positive cells and in yet unidentified cells of myenteric plexus and serosa. Both CM and LM developed spontaneous contractile activity; frequency and duration of their spontaneous contractions were identical. The amplitude of spontaneous contractions in CM was increased in the absence of NO-GC. In ileum from control (ctrl) animals, inhibition of NO-GC increased whereas NO-GC stimulation decreased tissue tone. In contrast, contractile activity in LM was not different between ctrl and knockout strains. Here, NO led to suppression of spontaneous contractions of ctrl ileum whereas GCKO tissue was unaffected. To our surprise, NO suppressed spontaneous contractions in SMC-GCKO ileum indicating participation of other cell type(s).

CONCLUSIONS AND INFERENCES

NO-GC in SMC is involved in the regulation of tone and amplitude of spontaneous contractions in ileal CM. In LM, NO induces suppression of spontaneous contractions via NO-GC in a non-SMC type.

摘要

背景

胃肠道(GI)运动源于环形(CM)和纵向(LM)平滑肌的协调运动。两层肌肉如何单独对氮能输入做出反应,以及它们如何整合氮能信号,这些问题还没有得到彻底的理解。

方法

我们使用免疫组织化学方法揭示了一氧化氮敏感鸟苷酸环化酶(NO-GC)在回肠中的表达。为了进行功能分析,我们测量了缺乏全局 NO-GC(GCKO)和特异性平滑肌细胞(SMC-GCKO)的小鼠回肠 CM 的张力和两层平滑肌的自发性收缩。

主要结果

与 GI 道的其他部位不同,NO-GC 不在回肠的 ckit 阳性细胞中表达。NO-GC 表达在血小板衍生生长因子受体α阳性细胞中和肠丛和浆膜中的未确定细胞中强烈。CM 和 LM 均自发产生收缩活动;其自发性收缩的频率和持续时间相同。在不存在 NO-GC 的情况下,CM 的自发性收缩幅度增加。在对照(ctrl)动物的回肠中,抑制 NO-GC 增加,而刺激 NO-GC 降低组织张力。相比之下,在对照和敲除品系之间,LM 的收缩活动没有差异。在这里,NO 抑制了对照回肠的自发性收缩,而 GCKO 组织不受影响。令我们惊讶的是,NO 抑制了 SMC-GCKO 回肠的自发性收缩,表明存在其他细胞类型。

结论和推断

SMC 中的 NO-GC 参与调节回肠 CM 自发性收缩的张力和幅度。在 LM 中,NO 通过非 SMC 类型中的 NO-GC 诱导自发性收缩的抑制。

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