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α₂肾上腺素能受体在豚鼠回肠运动反射交感抑制中的作用。

Role of alpha(2)-adrenoceptors in the sympathetic inhibition of motility reflexes of guinea-pig ileum.

作者信息

Stebbing M, Johnson P, Vremec M, Bornstein J

机构信息

Department of Physiology, University of Melbourne, Parkville, Victoria 3010, Australia.

出版信息

J Physiol. 2001 Jul 15;534(Pt. 2):465-78. doi: 10.1111/j.1469-7793.2001.00465.x.

Abstract
  1. Sympathetic regulation of the motility of guinea-pig ileum was investigated using mesenteric nerve (MN) stimulation to inhibit motility reflexes, in vitro. 2. Transmural electrical stimulation (5 Hz, 1 s) in intact intestinal segments, or inflation of a balloon against the mucosa in opened segments, evoked contractions of the circular and longitudinal muscles oral to the stimulus. 3. MN stimulation (10 Hz, 5 s) usually abolished contractions of the longitudinal and circular muscles evoked by either electrical or mechanical stimuli. 4. The inhibition was mimicked by UK14,304 (70-100 nM) and abolished by idazoxan (100 nM), revealing an enhancement of circular muscle contractions. There was no evidence for alpha(2)-receptors on the muscle, suggesting sympathetic inhibition was via the myenteric plexus. 5. Possible sites of action of noradrenaline released from sympathetic nerves were investigated using intracellular recordings from the circular muscle in a multichambered organ bath. 6. When in the stimulation chamber, UK14,304 depressed (by 50 %) excitatory junction potentials (EJPs) recorded oral to a distension stimulus, but did not affect inhibitory junction potentials (IJPs) recorded anal to the stimulus. When added to a chamber between the stimulus and recording chambers, UK14,304 depressed EJPs by 40 %, but did not alter IJPs. When in the recording chamber, UK14,304 depressed EJPs by 20 %, but had no effect on IJPs. IJPs were inhibited, however, when UK14,304 was applied to the whole bath. 7. It is concluded that sympathetic activity inhibits intestinal motility mainly via alpha(2)-adrenoceptors on ascending interneurons and intrinsic sensory neurons of the orally directed reflex pathway.
摘要
  1. 在体外,通过刺激肠系膜神经(MN)抑制运动反射,研究了豚鼠回肠运动的交感神经调节。2. 在完整肠段进行跨壁电刺激(5赫兹,1秒),或在开放肠段中向黏膜充气,可诱发刺激口侧环形肌和纵行肌的收缩。3. MN刺激(10赫兹,5秒)通常可消除电刺激或机械刺激诱发的纵行肌和环形肌收缩。4. UK14,304(70 - 100纳摩尔)可模拟这种抑制作用,而咪唑克生(100纳摩尔)可消除这种抑制作用,从而显示环形肌收缩增强。未发现肌肉上存在α₂受体的证据,提示交感神经抑制是通过肌间神经丛实现的。5. 使用多室器官浴槽中环形肌的细胞内记录,研究了交感神经释放的去甲肾上腺素可能的作用位点。6. 当处于刺激室时,UK14,304可使记录到的位于扩张刺激口侧的兴奋性接头电位(EJPs)降低(50%),但不影响记录到的位于刺激肛侧的抑制性接头电位(IJPs)。当添加到刺激室和记录室之间的腔室时,UK14,304可使EJPs降低40%,但不改变IJPs。当处于记录室时,UK14,304可使EJPs降低20%,但对IJPs无影响。然而,当将UK14,304应用于整个浴槽时,IJPs会受到抑制。7. 得出结论:交感神经活动主要通过口向反射通路中上行中间神经元和内在感觉神经元上的α₂肾上腺素受体抑制肠道运动。

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