首页> 美国卫生研究院文献>The Journal of Physiology >Discrimination between nicotinic receptors in vertebrate ganglia and skeletal muscle by alpha-bungarotoxin and cobra venoms.
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Discrimination between nicotinic receptors in vertebrate ganglia and skeletal muscle by alpha-bungarotoxin and cobra venoms.

机译:用α-真菌毒素和眼镜蛇毒液区分脊椎动物神经节和骨骼肌中的烟碱样受体。

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摘要

1. We have used snake neurotoxins, alpha-bungarotoxin and venoms from Naja naja siamensis and Naja nivea, to distinguish the nicotinic receptors of ganglia from those of skeletal neuromuscular junctions. 2. These neurotoxins failed to block responses of isolated guinea-pig longitudinal muscle with adherent myenteric plexus to the nicotinic agonists, nicotine or dimethylphenylpiperazinium, to acetylcholine (ACh), or to electrical field stimulation. 3. The toxins failed to affect responses of the isolated guinea-pig stomach to pregnaglionic stimulation by way of the vagus nerves or of the vas deferens to preganglionic stimulation via the hypogastric nerves. 4. Snake neurotoxins did not block non-adrenergic inhibitory responses of the rabbit small intestine to nicotine or electrical field stimulation. 5. Neurotoxins were ineffective blockers against nicotinic agonists in new-born rabbit or embryonic chick intestine. 6. Attempts to increase the penetration of the toxins into tissues with dimethylsulphoxide, exposure to hypertonic solutions, or to ethylene-diaminetetracetic acid did not enable the toxins to act as nicotinic antagonists. 7. In contrast to diaphragmatic or oesophageal skeletal neuromuscular junctions no binding of rhodamine or tritium labelled toxins to structures in ganglia could be detected. 8. No potential permeability barriers were found by electron microscopy of the ganglia of the guinea-pig myenteric plexus. 9. The tracers, lanthanum ion and ruthenium red, readily penetrated into all regions of the myenteric plexus including synaptic gaps. 10. It is concluded that the failure of snake neurotoxins to act as nicotinic antagonists or to bind to ganglia is not due to their inability to reach ganglionic nicotinic receptors. Therefore, it is likely that ganglionic nicotinic receptors are different from those of the skeletal neuromuscular junction.
机译:1.我们使用了来自印度眼镜蛇(Naja naja siamensis)和眼镜蛇(Naja nivea)的蛇神经毒素,α-真菌毒素和毒液,以区分神经节的烟碱受体和骨骼神经肌肉接头的烟碱受体。 2.这些神经毒素未能阻止具有粘附性肌间神经丛的豚鼠纵向肌肉对烟碱激动剂,尼古丁或二甲基苯基哌嗪鎓,乙酰胆碱(ACh)或电场刺激的反应。 3.毒素不能影响离体的豚鼠胃对迷走神经的孕激素刺激或输精管对通过下胃神经的神经节前刺激的反应。 4.蛇神经毒素未阻断兔小肠对尼古丁或电场刺激的非肾上腺素抑制反应。 5.神经毒素对新生兔或胚胎小鸡肠的烟碱激动剂无效。 6.尝试使用二甲基亚砜增加毒素向组织的渗透,暴露于高渗溶液或暴露于乙二胺四乙酸,均不能使毒素充当烟碱类拮抗剂。 7.与diaphragm肌或食道骨骼神经肌肉连接相反,未检测到若丹明或tri标记的毒素与神经节结构的结合。 8.通过电子显微镜未发现豚鼠肌间神经丛神经节的潜在通透性障碍。 9.示踪剂镧离子和钌红很容易渗透到肌间神经丛的所有区域,包括突触间隙。 10.结论是,蛇神经毒素未能充当烟碱样拮抗剂或与神经节结合的原因不是由于它们无法达到神经节烟碱样受体。因此,神经节烟碱受体可能与骨骼神经肌肉接头的受体不同。

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