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猫的食管下括约肌吊带和环形肌具有不同的功能性抑制神经元反应。

Feline lower esophageal sphincter sling and circular muscles have different functional inhibitory neuronal responses.

作者信息

L'Heureux Marie-Claude, Muinuddin Ahmad, Gaisano Herbert Y, Diamant Nicholas E

机构信息

Department of Physiology, University of Toronto, Ontario, Canada M5T 2S8.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2006 Jan;290(1):G23-9. doi: 10.1152/ajpgi.00303.2005. Epub 2005 Sep 15.

Abstract

The lower esophageal sphincter (LES) has a circular muscle component exhibiting spontaneous tone that is relaxed by nitric oxide (NO) and a low-tone sling muscle that contracts vigorously to cholinergic stimulation but with little or no evidence of NO responsiveness. This study dissected the responses of the sling muscle to nitrergic innervation in relationship to its cholinergic innervation and circular muscle responses. Motor responses were induced by electrical field stimulation (EFS; 1-30 Hz) of muscle strips from sling and circular regions of the feline LES in the presence of cholinergic receptor inhibition (atropine) or NO synthase inhibition [NG-nitro-L-arginine (L-NNA)+/-atropine]. This study showed the following. First, sling muscle developed less intrinsic resting tone compared with circular muscle. Second, with EFS, sling muscle contracted (most at <or=10 Hz), whereas circular muscle relaxed >50% by 5 Hz. Third, on neural blockade with atropine or L-NNA+/-atropine, 1) sling muscle, although predominantly influenced by excitatory cholinergic stimulation, had a small neural NO-mediated inhibition, with no significant non-NO-mediated inhibition and 2) circular muscle, although little affected by cholinergic influence, underwent relaxation predominantly by neural release of NO and some non-NO inhibitory influence (at higher EFS frequency). Fourth, the sling, precontracted with bethanecol, could relax with NO and some non-NO inhibition. Finally, the tension range of both muscles is similar. In conclusion, sling muscle has limited NO-mediated inhibition to potentially augment or replace sling relaxation effected by switching off its cholinergic excitation. Differences within the LES sling and circular muscles could provide new directions for therapy of LES disorders.

摘要

食管下括约肌(LES)有一个呈环形肌成分,表现出由一氧化氮(NO)介导的自发张力松弛,还有一个低张力的吊带肌,对胆碱能刺激有强烈收缩,但几乎没有或没有NO反应性的证据。本研究剖析了吊带肌对氮能神经支配的反应及其与胆碱能神经支配和环形肌反应的关系。在存在胆碱能受体抑制(阿托品)或NO合酶抑制[NG-硝基-L-精氨酸(L-NNA)±阿托品]的情况下,通过电场刺激(EFS;1-30Hz)猫LES吊带和环形区域的肌条来诱导运动反应。本研究结果如下。第一,与环形肌相比,吊带肌产生的内在静息张力较小。第二,在EFS作用下,吊带肌收缩(大多数在≤10Hz时),而环形肌在5Hz时松弛超过50%。第三,在用阿托品或L-NNA±阿托品进行神经阻滞时,1)吊带肌虽然主要受兴奋性胆碱能刺激的影响,但有少量神经介导的NO抑制,没有明显的非NO介导的抑制,2)环形肌虽然受胆碱能影响较小,但主要通过神经释放NO和一些非NO抑制作用(在较高EFS频率时)发生松弛。第四,用氨甲酰甲胆碱预收缩的吊带肌可通过NO和一些非NO抑制作用而松弛。最后,两种肌肉的张力范围相似。总之吊带肌的NO介导抑制作用有限,可能无法增强或替代通过关闭其胆碱能兴奋所实现的吊带肌松弛。LES吊带肌和环形肌之间的差异可为LES疾病的治疗提供新的方向。

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