Riekkinen P, Riekkinen M, Sirviö J
Department of Neurology, University of Kuopio, Finland.
J Pharmacol Exp Ther. 1993 Dec;267(3):1484-92.
The present study was designed to elucidate the role of the amygdala as a site of action of muscarinic and nicotinic receptor active drugs in modulating avoidance (passive avoidance) and spatial navigation (water maze) performance. Quisqualic acid lesioning of the nucleus basalis decreased choline acetyltransferase activity in the amygdala and dorsolateral frontal cortex, but not in the hippocampus. Single or combined amygdala and nucleus basalis lesions did not impair water maze navigation. Combined amygdala and nucleus basalis lesioning did not impair passive avoidance performance any more severely than did either of the lesions alone. Scopolamine (a muscarinic antagonist) and mecamylamine (a nicotinic antagonist) induced a dose-dependent impairment of both passive avoidance and water maze performance. The effects of the cholinergic antagonists on passive avoidance performance were smaller in amygdala-lesioned rats than in the controls. Amygdala lesions did not modulate the effect of the cholinergic antagonists in impairing water-maze performance. Nicotine, a nicotinic agonist, and arecoline, a muscarinic agonist, restored passive avoidance performance in nucleus basalis-lesioned but not in nucleus basalis+amygdala-lesioned rats. Nicotine and arecoline did not improve water maze navigation in nucleus basalis-lesioned or nucleus basalis+amygdala-lesioned rats. The present results suggest that the nucleus basalis cholinergic projection may modulate passive avoidance performance via amygdaloid muscarinic and nicotinic receptors.
本研究旨在阐明杏仁核作为毒蕈碱和烟碱受体活性药物作用位点在调节回避(被动回避)和空间导航(水迷宫)行为表现中的作用。基底核的quisqualic酸损伤降低了杏仁核和背外侧额叶皮质中的胆碱乙酰转移酶活性,但海马体中的该活性未受影响。单独或联合损伤杏仁核和基底核均未损害水迷宫导航能力。联合损伤杏仁核和基底核并不比单独损伤其中任何一个更严重地损害被动回避行为表现。东莨菪碱(一种毒蕈碱拮抗剂)和美加明(一种烟碱拮抗剂)均剂量依赖性地损害被动回避和水迷宫行为表现。胆碱能拮抗剂对被动回避行为表现的影响在杏仁核损伤大鼠中比在对照组中更小。杏仁核损伤并未调节胆碱能拮抗剂对水迷宫行为表现的损害作用。烟碱,一种烟碱激动剂,和槟榔碱,一种毒蕈碱激动剂,可恢复基底核损伤大鼠的被动回避行为表现,但不能恢复基底核+杏仁核损伤大鼠的该行为表现。烟碱和槟榔碱不能改善基底核损伤或基底核+杏仁核损伤大鼠的水迷宫导航能力。目前的结果表明,基底核胆碱能投射可能通过杏仁核毒蕈碱和烟碱受体调节被动回避行为表现。