首页> 美国卫生研究院文献>The Journal of Physiology >A non-adrenergic non-cholinergic slow inhibitory post-synaptic potential in neurones of the guinea-pig submucous plexus.
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A non-adrenergic non-cholinergic slow inhibitory post-synaptic potential in neurones of the guinea-pig submucous plexus.

机译:豚鼠粘膜下丛神经元的非肾上腺素非胆碱能的缓慢抑制性突触后电位。

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摘要

1. Intracellular recordings were made from neurones in the submucous plexus of guinea-pig ileum and caecum. The responses to electrical stimulation of fibre strands entering the nodes of the plexus were studied. 2. Stimuli comprising trains of pulses (20 Hz, 1-5 s) produced nicotinic excitatory post-synaptic potentials (fast e.p.s.p.s), an adrenergic inhibitory post-synaptic potential (i.p.s.p.), a slow excitatory post-synaptic potential (slow e.p.s.p.) and a fourth, hitherto unnoticed, slow hyperpolarization which followed the slow e.p.s.p. All these responses were abolished by tetrodotoxin or solutions containing a low calcium concentration. 3. The slow hyperpolarization (slow i.p.s.p.) was examined in the presence of blockers of the nicotinic and adrenergic responses, and in conditions in which the slow e.p.s.p. was prevented by desensitizing concentrations of substance P or vasoactive intestinal polypeptide. The slow i.p.s.p. was unaffected by prazosin (0.1-1 microM), propranolol (0.1-1 microM), atropine (1 microM) or naloxone (1 microM). 4. The amplitude and duration of the slow i.p.s.p. increased with increasing numbers of stimulus pulses; it had an amplitude of 17 mV and a duration of 70 s when evoked by a stimulus of 20 Hz for 3 s. 5. The slow i.p.s.p. was associated with a decrease in the input resistance of the cell. It reversed polarity at -90 mV in 4.7 mM-potassium and the extrapolated reversal potential in 0.47 mM-potassium was -145 mV; these findings indicate that the slow i.p.s.p. results from an increase in membrane potassium conductance. 6. The slow i.p.s.p. could still be recorded from submucous plexus neurones in segments of ileum which had been extrinsically denervated 6-11 days previously.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:1.豚鼠回肠和盲肠粘膜下层神经元的细胞内记录。研究了进入神经丛节点的纤维束对电刺激的响应。 2.刺激包括一系列脉冲(20 Hz,1-5 s)产生的烟碱样兴奋性突触后电位(epsps),肾上腺素抑制性突触后电位(ipsp),慢兴奋性突触后电位(epsp缓慢)继缓慢的epsp之后,第四个迄今为止尚未引起注意的缓慢超极化所有这些反应都被河豚毒素或低钙溶液消除了。 3.在存在烟碱和肾上腺素能响应的阻滞剂的情况下,以及在缓慢的e.p.s.p.p.s.p.的条件下,检查了缓慢的超极化(sip.s.p.)的慢。通过降低P物质或血管活性肠多肽浓度的敏感性来预防这种疾病。缓慢的i.p.s.p.吡唑嗪(0.1-1 microM),普萘洛尔(0.1-1 microM),阿托品(1 microM)或纳洛酮(1 microM)不受影响。 4.缓慢i.p.s.p.的幅度和持续时间。随着刺激脉冲数量的增加而增加;当受到20 Hz刺激持续3 s时,其幅度为17 mV,持续时间为70 s。 5.缓慢的i.p.s.p.与电池输入电阻的降低有关。在4.7 mM的钾中-90 mV时极性反转,在0.47 mM的钾中外推反向电位为-145 mV;这些发现表明i.p.s.p缓慢。这是由于膜钾电导增加所致。 6.缓慢的i.p.s.p.仍可以在回肠段6-11天之前被外在去神经化的回肠段粘膜下神经元中记录下来(摘要截断为250个字)

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