首页> 美国卫生研究院文献>The Journal of Physiology >Blockade of slow excitatory post-synaptic potential by substance P antagonists in guinea-pig sympathetic ganglia.
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Blockade of slow excitatory post-synaptic potential by substance P antagonists in guinea-pig sympathetic ganglia.

机译:豚鼠交感神经节中P物质拮抗剂对缓慢的兴奋性突触后突触电位的阻断。

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摘要

The effects of three substance P (SP) antagonists on the inferior mesenteric ganglion of the guinea-pig were studied using intracellular recording techniques, and the possible role of SP as a transmitter for the non-cholinergic slow excitatory post-synaptic potential (e.p.s.p.) was examined. The SP antagonist, [D-Arg1, D-Pro2, D-Trp7,9, Leu11]SP, exerted a depolarizing action on the ganglion cells when applied by perfusion at a concentration of 3-16 microM or by pressure ejection from a micropipette. This depolarizing action is probably due to a release of endogenous histamine because it was abolished by treatment with a histamine antagonist, mepyramine (1-3 microM), or by a repeated application of the antagonist. When applied by pressure ejection, SP at 0.5-1 microM depolarized the ganglion cells. In the presence of mepyramine, [D-Arg1, D-Pro2, D-Trp7,9, Leu11]SP suppressed the SP-induced depolarization by 41% at a concentration of 8 microM and by 75% at 16 microM. By contrast the SP antagonist did not affect the depolarizing action of angiotensin II on the ganglion cells. The non-cholinergic slow e.p.s.p. evoked in the ganglion cells by repetitive stimulation of the lumbar splanchnic nerves was suppressed by [D-Arg1, D-Pro2, D-Trp7,9, Leu11]SP at 8 or 16 microM. The degrees of suppression of both the non-cholinergic slow e.p.s.p. and the SP-induced depolarization by the SP antagonist were approximately equal. The cholinergic fast e.p.s.p. evoked by preganglionic nerve stimulation was not affected by the SP antagonist. [D-Pro2, D-Trp7,9]SP exhibited the properties of an SP antagonist similar to, but slightly weaker than [D-Arg1, D-Pro2, D-Trp7,9, Leu11]SP. [D-Pro2, D-Phe7, D-Trp9] at a concentration of 16 microM had a depolarizing action on the ganglion cells, which was not blocked by mepyramine. The peptide exerted hardly any antagonistic action against the SP-induced depolarization of the ganglion cells. Stimulation of the other preganglionic (intermesenteric) nerves and the post-ganglionic (colonic and hypogastric) nerves produced a non-cholinergic slow e.p.s.p. in the inferior mesenteric ganglion cells. The non-cholinergic slow e.p.s.p. evoked by both pre- and post-ganglionic nerve stimulation were depressed by [D-Arg1, D-Pro2, D-Trp7,9, Leu11]SP to similar extents. The present results show that [D-Arg1, D-Pro2, D-Trp7,9, Leu11]SP and [D-Pro2, D-Trp7,9]SP can serve as specific SP antagonists in the inferior mesenteric ganglion of the guinea-pig.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:使用细胞内记录技术研究了三种物质P(SP)拮抗剂对豚鼠肠系膜下神经节的影响,并探讨了SP作为非胆碱能缓慢兴奋性突触后电位(epsp)的传递者的可能作用。被检查了。 SP拮抗剂[D-Arg1,D-Pro2,D-Trp7,9,Leu11] SP通过以3-16 microM的浓度灌注或通过微量移液管施加压力,对神经节细胞产生去极化作用。 。这种去极化作用可能是由于内源性组胺的释放,因为通过用组胺拮抗剂美吡拉敏(1-3 microM)治疗或通过重复使用该拮抗剂可消除该作用。当通过压力喷射施加时,0.5-1 microM的SP使神经节细胞去极化。在存在美吡拉明的情况下,[D-Arg1,D-Pro2,D-Trp7,9,Leu11] SP在8 microM的浓度下抑制SP诱导的去极化,在8 microM的浓度下抑制75%。相反,SP拮抗剂不影响血管紧张素II对神经节细胞的去极化作用。非胆碱能慢e.p.s.p.在8或16 microM处[D-Arg1,D-Pro2,D-Trp7,9,Leu11] SP抑制了通过重复刺激腰内脏神经而在神经节细胞中引起的。非胆碱能慢e.p.s.p的抑制程度。与SP拮抗剂引起的SP引起的去极化大致相等。胆碱能快e.p.s.p.神经节前神经刺激引起的不受SP拮抗剂的影响。 [D-Pro2,D-Trp7,9] SP表现出与[D-Arg1,D-Pro2,D-Trp7,9,Leu11] SP相似但略弱的SP拮抗剂的特性。浓度为16 microM的[D-Pro2,D-Phe7,D-Trp9]对神经节细胞具有去极化作用,但未被美吡拉明所阻断。该肽几乎没有对SP诱导的神经节细胞去极化产生任何拮抗作用。刺激其他神经节前(间充质)神经和神经节后(结肠和胃下垂)神经产生非胆碱能缓慢的e.p.s.p.在肠系膜下神经节细胞中非胆碱能慢e.p.s.p.神经节前和节后神经刺激引起的[D-Arg1,D-Pro2,D-Trp7,9,Leu11] SP压抑程度相似。目前的结果表明,[D-Arg1,D-Pro2,D-Trp7,9,Leu11] SP和[D-Pro2,D-Trp7,9] SP可以作为豚鼠下肠系膜神经节的特定SP拮抗剂。 -猪(摘要以400字截断)

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