首页> 美国卫生研究院文献>The Journal of Physiology >Stimulation of afferent fibres of the guinea-pig ureter evokes potentials in inferior mesenteric ganglion neurones.
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Stimulation of afferent fibres of the guinea-pig ureter evokes potentials in inferior mesenteric ganglion neurones.

机译:刺激豚鼠输尿管的传入纤维会引起肠系膜下神经节神经元的电位。

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摘要

1. Intracellular recordings were made from neurones of the guinea-pig inferior mesenteric ganglion (IMG) maintained in vitro with both ureters and major nerve trunks attached. Afferent fibres in the ureteric nerve were activated by electrical, chemical and mechanical stimuli. 2. Repetitive stimulation of a ureteric nerve branch evoked a non-cholinergic, synaptic slow excitatory potential (slow EPSP) in 48% of neurons. The amplitude of the slow EPSP was dependent on membrane potential and was decreased by membrane depolarization and increased by hyperpolarization. 3. The slow EPSP was attenuated or abolished by capsaicin (1 microM), which itself depolarized IMG neurones. Substance P (2 microM) or neurokinin A (2 microM) also depolarized IMG neurones and in the presence of these tachykinins the slow EPSP was attenuated or abolished. 4. Distension of the ureter evoked a non-cholinergic slow depolarization in 45% of IMG neurones which was abolished by tetrodotoxin (1 microM) and by capsaicin (1 microM). 5. Chemical stimulation of ureteric afferent nerve terminals by intralumenal perfusions of the ureter with capsaicin (1 microM) produced a slow depolarization in the IMG which was prevented by blocking nerve conduction with TTX. 6. These data demonstrate that electrical stimulation of ureteric afferent fibres produces a non-cholinergic slow EPSP in the IMG. Primary afferent (capsaicin-sensitive) C fibres are also activated by distension of the ureter and evoke a slow depolarization in the IMG. The synaptic mediator of these events is likely to be tachykinin(s) released from capsaicin-sensitive C fibres. These fibres may be mechanosensory and/or nociceptive.
机译:1.细胞内记录来自豚鼠下肠系膜神经节(IMG)的神经元,该神经元在体外保持并附有输尿管和主要神经干。输尿管神经中的传入纤维被电,化学和机械刺激激活。 2.重复刺激输尿管神经分支可在48%的神经元中引起非胆碱能,突触性缓慢兴奋性电位(EPSP缓慢)。慢速EPSP的幅度取决于膜电位,并通过膜去极化降低,并通过超极化增加。 3.辣椒素(1 microM)会减弱或消除慢速EPSP,辣椒素本身会使IMG神经元去极化。物质P(2 microM)或神经激肽A(2 microM)也使IMG神经元去极化,在这些速激肽的存在下,慢速EPSP被减弱或消除。 4.输尿管扩张引起45%IMG神经元发生非胆碱能缓慢去极化,这被河豚毒素(1 microM)和辣椒素(1 microM)消除。 5.通过输尿管腔内灌注辣椒素(1 microM)对输尿管传入神经末梢进行化学刺激,在IMG中产生了缓慢的去极化,这可以通过用TTX阻断神经传导来防止。 6.这些数据表明,电刺激输尿管传入纤维在IMG中产生非胆碱能的慢EPSP。输尿管扩张也激活了初级传入(辣椒素敏感)C纤维,并在IMG中引起了缓慢的去极化。这些事件的突触介质可能是对辣椒素敏感的C纤维释放的速激肽。这些纤维可以是机械感和/或伤害性的。

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