Shimura S, Sasaki T, Okayama H, Sasaki H, Takishima T
J Appl Physiol (1985). 1987 Jun;62(6):2404-9. doi: 10.1152/jappl.1987.62.6.2404.
To determine the autonomic innervation to myoepithelial cells of submucosal gland, we applied electrical field stimulation (FS) to the intrinsic nerves in isolated submucosal glands from feline tracheae. FS induced contraction that was voltage or frequency dependent and abolished by pretreatment with tetrodotoxin. DMPP (1,1-dimethyl-4-phenylpiperazinium iodide) did not produce any significant contraction, and pretreatment with hexamethonium did not alter the response to FS. Atropine inhibited the contractile response to FS and neostigmine augmented the response to FS. Serotonin also augmented the response to FS, whereas the response to methacholine remained unchanged in the presence of serotonin. Phentolamine reduced the response to FS by 15% of control, whereas propranolol induced no significant changes in the response to FS. No significant inhibitory responses were observed by FS. Our findings indicate that the contraction of tracheal submucosal glands is mediated mainly by cholinergic nerves via muscarinic receptors and in small part by adrenergic nerves via alpha-receptors, and serotonin potentiates the contractile response to FS at the postganglionic nerve.
为了确定黏膜下腺肌上皮细胞的自主神经支配,我们对猫气管分离出的黏膜下腺中的固有神经施加电场刺激(FS)。FS诱导的收缩呈电压或频率依赖性,并可被河豚毒素预处理所消除。碘化二甲基苯基哌嗪(DMPP)未产生任何明显收缩,六甲铵预处理也未改变对FS的反应。阿托品抑制对FS的收缩反应,新斯的明增强对FS的反应。5-羟色胺也增强对FS的反应,而在5-羟色胺存在下对乙酰甲胆碱的反应保持不变。酚妥拉明使对FS的反应降低至对照的15%,而普萘洛尔对FS的反应未引起明显变化。FS未观察到明显的抑制反应。我们的研究结果表明,气管黏膜下腺的收缩主要由胆碱能神经通过毒蕈碱受体介导,部分由肾上腺素能神经通过α受体介导,并且5-羟色胺在节后神经增强对FS的收缩反应。