首页> 外文OA文献 >Tachykinin NK1 but not NK2 receptors mediate non-cholinergic excitatory junction potentials in the circular muscle of guinea-pig colon.
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Tachykinin NK1 but not NK2 receptors mediate non-cholinergic excitatory junction potentials in the circular muscle of guinea-pig colon.

机译:速激肽NK1而非NK2受体介导豚鼠结肠环形肌肉中的非胆碱能兴奋性连接电位。

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摘要

1. The effect of tachykinin NK1 and NK2 receptor antagonists on noncholinergic excitatory junction potentials (e.j.ps) evoked by electric field stimulation (EFS) in the circular muscle of the guinea-pig proximal colon was investigated by means of a sucrose-gap technique. 2. In the presence of 1 microM atropine, submaximal EFS (10 Hz, 20-30 V, 0.5 ms pulse width, 1 s train duration) evoked an inhibitory junction potential (i.j.p.) followed by e.j.p. with superimposed action potentials (APs) and contraction. Addition of either NG-nitro-L-arginine (L-NOARG, 0.1 mM) or apamin (0.1 microM) inhibited the evoked i.j.p. and the combined administration of the two agents almost abolished it. In the presence of both L-NOARG and apamin, an atropine-resistant e.j.p. was the only electrical response evoked by EFS in 50% of cases and a small i.j.p. (10% of original amplitude) followed by e.j.p. was evident in the remainder. 3. In the presence of L-NOARG and apamin, the tachykinin NK1 receptor antagonists, (+/-)-CP 96,345 and GR 82,334 (10 nM-3 microM) concentration-dependently inhibited the atropine-resistant e.j.p. and accompanying contraction evoked by EFS. EC50 values were: 0.77 microM (e.j.p. inhibition) and 0.22 microM (inhibition of contraction) for (+/-)-CP 96,345; 0.61 microM (e.j.p. inhibition) and 0.20 microM (inhibition of contraction) for GR 82,334. The tachykinin NK2 receptor antagonists, MEN 10,376 (up to 3 microM) and SR 48,968 (up to 1 microM) had no effect on the atropine-resistant e.j.p. MEN 10,376 (3 microM) but not SR 48,968 produced a slight inhibition of the evoked contraction.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:1.通过蔗糖间隙技术研究了速激肽NK1和NK2受体拮抗剂对豚鼠近端结肠环形肌肉中电场刺激(EFS)诱发的非胆碱能兴奋性连接电位(e.j.ps)的影响。 2.在存在1 microM阿托品的情况下,亚最大EFS(10 Hz,20-30 V,0.5 ms脉冲宽度,1 s训练持续时间)引起抑制性连接电位(i.j.p.),然后是e.j.p.。具有叠加的动作电位(AP)和收缩。加入NG-硝基-L-精氨酸(L-NOARG,0.1 mM)或木瓜蛋白酶(0.1 microM)抑制诱发的i.j.p.两种药剂的联合管理几乎废除了它。在L-NOARG和Apapamin的共同作用下,抗阿托品的e.j.p.是EFS在50%的病例和一个小的i.j.p.中引起的唯一电反应。 (原始振幅的10%),然后加上e.j.p.在其余的方面很明显。 3.在L-NOARG和阿帕明存在下,速激肽NK1受体拮抗剂(+/-)-CP 96,345和GR 82,334(10 nM-3 microM)浓度依赖性地抑制了对阿托品耐药的e.j.p.。以及EFS引起的伴随收缩。 EC 50值为:(+/-)-CP 96,345 0.77 microM(e.j.p.抑制)和0.22 microM(收缩抑制);对于GR 82,334,0.61 microM(e.j.p。抑制)和0.20 microM(收缩抑制)。速激肽NK2受体拮抗剂MEN 10,376(最高达3 microM)和SR 48,968(最高达1 microM)对耐阿托品的e.j.p. MEN 10,376(3 microM)而非SR 48,968产生了对诱发收缩的轻微抑制作用(摘要以250字截短)

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