Koss M C, Hey J A
Department of Pharmacology, University of Oklahoma Health Sciences Center, Oklahoma City 73190.
Eur J Pharmacol. 1988 Apr 13;148(3):397-403. doi: 10.1016/0014-2999(88)90118-5.
Experiments were designed to determine the neural site of action for clonidine inhibition of sympathetic-cholinergic electrodermal responses (EDR) in anesthetized cats. Administration of clonidine (0.3-3.0 micrograms i.a.) directly to the stellate ganglion did not significantly decrease the amplitude of responses evoked by submaximal hypothalamic stimulation but did inhibit hypothalamic-evoked EDR when administered intrathecally at the C6 to T2 spinal levels. Administration of clonidine to the ganglion, however, did depress EDR evoked by the ganglionic stimulant, 1,1-dimethyl-4-phenylpiperazinium iodide (DMPP, 10 micrograms i.a.). Intravenous clonidine (1-30 micrograms) also reduced EDR amplitude evoked by single pulse stimulation of both the pre- and postganglionic sympathetic nerves with responses elicited from both sites depressed to an equal extent. Yohimbine (0.5 mg/kg i.v.) uniformly antagonized clonidine's depression of EDR regardless of the site or mode of activation. These results indicate that clonidine depresses centrally evoked sudomotor responses by activation of alpha 2-adrenoceptors in the spinal cord and to a limited extent by direct action at the neuroeffector junction. Although a possible DMPP-clonidine interaction appears to take place at the level of the sympathetic ganglion, it is unlikely that ganglionic blockade contributes significantly to clonidine inhibition of EDR evoked by electrical activation of the nervous system.
实验旨在确定可乐定抑制麻醉猫交感胆碱能皮肤电反应(EDR)的神经作用部位。向星状神经节直接注射可乐定(0.3 - 3.0微克,动脉内注射),并未显著降低下丘脑次最大刺激诱发反应的幅度,但在C6至T2脊髓水平鞘内注射时,却能抑制下丘脑诱发的EDR。然而,向神经节注射可乐定确实能抑制神经节兴奋剂碘化1,1 - 二甲基 - 4 - 苯基哌嗪(DMPP,10微克,动脉内注射)诱发的EDR。静脉注射可乐定(1 - 30微克)也能降低节前和节后交感神经单脉冲刺激诱发的EDR幅度,且两个部位诱发的反应降低程度相同。育亨宾(0.5毫克/千克,静脉注射)能一致地拮抗可乐定对EDR的抑制作用,无论激活部位或方式如何。这些结果表明,可乐定通过激活脊髓中的α2 - 肾上腺素能受体以及在一定程度上通过直接作用于神经效应器接头来抑制中枢诱发的汗腺运动反应。虽然可乐定与DMPP之间可能在交感神经节水平发生相互作用,但神经节阻断对可乐定抑制神经系统电激活诱发的EDR作用不大。