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鸡Remak神经节中神经节传递的肾上腺素能调节的证据。

Evidence for adrenergic modulation of ganglionic transmission in the ganglia of the nerve of Remak of the chicken.

作者信息

Ishizuka N, Komori S, Ohashi H

出版信息

J Auton Nerv Syst. 1982 Sep;6(2):185-98. doi: 10.1016/0165-1838(82)90050-9.

Abstract

Adrenergic depression of ganglionic transmission in non-cholinergic, non-adrenergic (NCNA) excitatory nerves was investigated in the isolated chicken rectum with its associated nerve of Remak. Preganglionic stimulation of the NCNA nerves produced contraction of the rectum, an excitatory junction potential and discharges in the postganglionic axons. Preceding stimulation of descending fibers in the nerve of Remak suppressed these responses. These inhibitory effects were almost eliminated in reserpinized preparations, and were significantly reduced by pretreatment with guanethidine and phentolamine, but not with propranolol. Exogenously-applied adrenaline and noradrenaline mimicked the inhibitory effect of nerve stimulation on the discharge in the postganglionic axons. These results indicated that the nerve of Remak contained descending adrenergic fibers, stimulation of which caused suppression of ganglionic transmission in the NCNA excitatory pathways to the rectum, by the activation of alpha-adrenoceptors on the pre- or postganglionic NCNA neuron.

摘要

利用分离的鸡直肠及其相关的雷马克神经,研究了非胆碱能、非肾上腺素能(NCNA)兴奋性神经节传递的肾上腺素能抑制作用。对NCNA神经的节前刺激可引起直肠收缩、兴奋性接头电位以及节后轴突放电。预先刺激雷马克神经中的下行纤维可抑制这些反应。在利血平化的标本中,这些抑制作用几乎消失,并且通过胍乙啶和酚妥拉明预处理可显著降低,但普萘洛尔预处理则无此作用。外源性应用肾上腺素和去甲肾上腺素可模拟神经刺激对节后轴突放电的抑制作用。这些结果表明,雷马克神经含有下行肾上腺素能纤维,刺激这些纤维可通过激活节前或节后NCNA神经元上的α-肾上腺素能受体,抑制NCNA兴奋性通路向直肠的神经节传递。

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