MU-OPIOD AND DELTA-OPIOID RECEPTORS MEDIATE OPPOSITE MODULATIONS BY MORPHINE OF THE SPINAL RELEASE OF CHOLECYSTOKININ-LIKE MATERIAL

被引:21
|
作者
BENOLIEL, JJ [1 ]
COLLIN, E [1 ]
MAUBORGNE, A [1 ]
BOURGOIN, S [1 ]
LEGRAND, JC [1 ]
HAMON, M [1 ]
CESSELIN, F [1 ]
机构
[1] UNIV PARIS 06,SERV BIOCHIM MED,F-75634 PARIS 13,FRANCE
关键词
CHOLECYSTOKININ; IN VITRO RELEASE; SPINAL CORD; MORPHINE; MU-OPIOID RECEPTOR; DELTA-OPIOID RECEPTOR; KAPPA-OPIOID RECEPTOR;
D O I
10.1016/0006-8993(94)90375-1
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The possible modulations by morphine and various opioids of the spinal release of cholecystokinin-like material (CCKLM) evoked by 30 mM K+ was studied in vitro, using slices of the dorsal part of the rat lumbar enlargement superfused with an artificial cerebrospinal fluid. Addition of the mu agonist, DAGO (0.1-10 mu M), to the perfusing fluid produced a concentration-dependent decrease in the peptide release, which could be prevented by the preferential mu antagonist, naloxone. Complex modulations were induced by the delta agonist, DTLET, as this drug inhibited CCKLM release when added at 10 nM-3 mu M to the perfusing fluid, but enhanced it at 10 mu M. Both effects were preventable by the delta antagonists naltrindole and ICI 154129, suggesting that delta receptors. possibly of different subtypes, mediated the inhibition and stimulation by DTLET. Morphine also exerted a biphasic effect, as the alkaloid decreased CCKLM release at 0.01-0.1 mu M and enhanced it at 10 mu M. Morphine-induced inhibition was preventable by naloxone, whereas its stimulatory effect could be blocked by naltrindole and ICI 154129. Although inactive on its own on CCKLM release, the selective kappa 1 agonist U 50488H (1 mu M) prevented the inhibitory effects of both DAGO (10 mu M) and morphine (0.1 mu M), suggesting the existence of interactions between kappa 1 and mu receptors within the dorsal zone of the rat spinal cord. These data indicate that low concentrations of morphine exert an inhibitory influence on spinal CCKergic neurons that depends on the stimulation of mu opioid receptors. The excitatory influence of 10 mu M morphine likely results from the simultaneous stimulation of mu, delta and kappa receptors, as the inhibitory effect of mu receptor stimulation can be masked by that of kappa 1 receptors, allowing only the expression of a delta-dependent excitatory effect similar to that induced by 10 mu M DTLET.
引用
收藏
页码:81 / 91
页数:11
相关论文
共 50 条