首页> 美国卫生研究院文献>The Journal of Physiology >The electrophysiological effects of neurotensin on neurones of guinea-pig prevertebral sympathetic ganglia.
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The electrophysiological effects of neurotensin on neurones of guinea-pig prevertebral sympathetic ganglia.

机译:神经降压素对豚鼠椎前交感神经节神经元的电生理作用。

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摘要

1. The membrane effects of neurotensin on neurons of guinea-pig prevertebral ganglia were investigated by means of intracellular recording techniques in vitro. 2. Neurotensin (2-5 microM) applied by superfusion caused depolarizing responses in fifty-seven of seventy-four neurones tested in the inferior mesenteric ganglion and thirty-seven of forty-seven neurones tested in the coeliac plexus. The remaining neurones tested showed no membrane response. 3. Responses to neurotensin could be discriminated into two different types of membrane depolarizations on the basis of their different time courses and pharmacological characteristics: a steady-state type of depolarization and a transient type of depolarization. Seven of fifty-seven responsive neurones tested in the inferior mesenteric ganglion and ten of thirty-seven responsive neurones tested in the coeliac plexus responded to neurotensin with a depolarization which was maintained constant as long as neurotensin was superfused over the preparation (steady-state type). Forty-eight of fifty-seven responsive neurones tested in the inferior mesenteric ganglion and twenty of thirty-seven responsive neurones tested in the coeliac plexus responded with a transient depolarization which was followed by a repolarization in the maintained presence of neurotensin (transient type). A combination of both types of responses was observed in two neurones tested in the inferior mesenteric ganglion and in seven neurones tested in the coeliac plexus. 4. Steady-state type responses were characterized by a slowly developing membrane depolarization which reached a plateau and lasted throughout the presence of neurotensin. Amplitude and time course of this response were not altered in a solution containing hexamethonium (10 microM) and atropine (10 microM) or by a solution low in calcium (1 mM) and high in magnesium (15 mM). 5. Transient type depolarizations evoked by neurotensin were faster in reaching their maximum and were followed by a repolarization during the maintained presence of neurotensin. Responses similar in time course and amplitude were obtained in solutions containing hexamethonium (10-100 microM) and atropine (10 microM). However, transient responses were abolished in a solution low in calcium (1 mM) and high in magnesium (15 mM) and were markedly attenuated in ganglia treated with capsaicin (3 microM). 6. Both types of depolarizations were associated with increases in membrane input resistance. Both responses converted subthreshold depolarizing electrotonic potentials and subthreshold fast EPSPs to action potentials. 7. Both types of depolarizations were observed when the C-terminal hexapeptide fragment neurotensin 8-13 was used.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.通过细胞内记录技术研究了神经降压素对豚鼠椎前神经节神经元的膜作用。 2.通过灌注施加的神经降压素(2-5 microM)在肠系膜下神经节中测试的74个神经元中和在腹腔神经丛中测试的47个神经元中的37个引起去极化反应。测试的其余神经元无膜反应。 3.对神经降压素的反应可以根据其不同的时程和药理学特性分为两种不同类型的膜去极化:稳态型去极化和瞬时型去极化。在肠系膜下神经节中测试的57个反应性神经元中有7个在腹腔神经丛中测试的37个反应性神经元中有10个对神经降压素有反应,只要神经降压素在制剂上超负荷(保持稳态类型)即可保持恒定)。在肠系膜下神经节中测试的47个反应性神经元中有48个,在腹腔神经丛中测试的37个反应性神经元中有29个反应为短暂性去极化,随后在维持神经降压素(暂时性)的情况下重新极化。在肠系膜下神经节测试的两个神经元和在腹腔神经丛测试的七个神经元中观察到两种类型的反应的组合。 4.稳态类型反应的特征在于缓慢发展的膜去极化,该去极化达到平台并持续存在神经降压素。在含有六甲铵(10 microM)和阿托品(10 microM)的溶液中或钙含量低(1 mM)和镁含量高(15 mM)的溶液中,此响应的幅度和时间过程均未改变。 5.神经降压素引起的短暂性去极化更快地达到其最大值,并在维持神经降压素存在的过程中重新极化。在含有六甲铵(10-100 microM)和阿托品(10 microM)的溶液中,获得了类似的时程和幅度响应。但是,在钙含量低(1 mM)和镁含量高(15 mM)的溶液中,瞬态响应消失了,在用辣椒素(3 microM)处理的神经节中,其显着减弱。 6.两种类型的去极化都与膜输入电阻的增加有关。两种响应都将亚阈值下的去极化电声电位和亚阈值快速EPSP转变为动作电位。 7.当使用C端六肽片段神经降压素8-13时,观察到两种去极化类型。(摘要截短为400字)

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