Gronier B, Debonnel G
Department of Psychiatry, McGill University, Montreal, Québec, Canada.
Naunyn Schmiedebergs Arch Pharmacol. 1996 Mar;353(4):382-90. doi: 10.1007/BF00261434.
Previous studies from our laboratory have demonstrated that low doses of selective sigma (sigma) ligands potentiate the response of pyramidal neurones to N-methyl-D-aspartate (NMDA) in the CA3 region of the rat dorsal hippocampus. It has also been found that the neuropeptide cholecystokinin (CCK) is involved in the effects induced by sigma ligands on colonic motility. The present experiments were undertaken to determine if this interaction is also present in the rat dorsal hippocampus. Using microiontophoresis and in vivo extracellular recordings of rat CA3 dorsal hippocampus pyramidal neurones, we assessed the effects of CCKA and CCKB receptor antagonists on the potentiation of the NMDA response, induced by the intravenous administration of low doses of the sigma ligands 1,3-di(2-tolyl)guanidine (DTG), (+)-pentazocine and JO-1784. The potentiation of the NMDA response induced by these sigma ligands was abolished by the selective CCKA receptor antagonist SR 27897, but not by the CCKB antagonist Cl-988. CCK-8S, applied with a low current, insufficient to induce by itself an increase of the firing activity, markedly potentiated the response of NMDA without affecting significantly that of quisqualate. SR 27897, but not Cl-988, significantly reduced the potentiation of the NMDA response by CCK-8S. These results suggest the existence of a functional interaction between CCK and sigma receptor-mediated effects in the dorsal hippocampus.
我们实验室之前的研究表明,低剂量的选择性σ(西格玛)配体可增强大鼠背侧海马体CA3区锥体神经元对N-甲基-D-天冬氨酸(NMDA)的反应。还发现神经肽胆囊收缩素(CCK)参与了σ配体对结肠运动的诱导作用。本实验旨在确定这种相互作用在大鼠背侧海马体中是否也存在。通过对大鼠CA3背侧海马体锥体神经元进行微离子电泳和体内细胞外记录,我们评估了CCKA和CCKB受体拮抗剂对静脉注射低剂量σ配体1,3-二(2-甲苯基)胍(DTG)、(+)-喷他佐辛和JO-1784诱导的NMDA反应增强作用的影响。这些σ配体诱导的NMDA反应增强作用被选择性CCKA受体拮抗剂SR 27897消除,但未被CCKB拮抗剂Cl-988消除。以低电流施加CCK-8S,其本身不足以诱导放电活动增加,可显著增强NMDA反应,而对quisqualate反应无显著影响。SR 27897而非Cl-988可显著降低CCK-8S对NMDA反应的增强作用。这些结果表明,在背侧海马体中CCK与σ受体介导的效应之间存在功能相互作用。