Opioid antagonists in the periaqueductal gray inhibit morphine and beta-endorphin analgesia elicited from the amygdala of rats

被引:61
作者
Pavlovic, ZW [1 ]
Cooper, ML [1 ]
Bodnar, RJ [1 ]
机构
[1] CUNY QUEENS COLL,DEPT PSYCHOL,NEUROPSYCHOL DOCTORAL SUB PROGRAM,FLUSHING,NY 11367
关键词
analgesia; morphine; beta-endorphin; amygdala; periaqueductal gray; mu opioid receptor; delta(2) opioid receptor;
D O I
10.1016/S0006-8993(96)00880-3
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In addition to brainstem sites of action, analgesia can be elicited following amygdala microinjections of morphine and mu-selective opioid agonists. The present study examined whether opioid analgesia elicited by either morphine or beta-endorphin in the amygdala could be altered by either the general opioid antagonist, naltrexone, the mu-selective antagonist, beta-funaltrexamine (BFNA) or the delta(2) antagonist, naltrindole isothiocyanate (Ntii) in the periaqueductal gray (FAG). Both morphine (2.5-5 mu g) and beta-endorphin (2.5-5 mu g) microinjected into either the base-lateral or central nuclei of the amygdala significantly increased tail-flick latencies and jump thresholds in rats. The increases were far more pronounced on the jump test than on the tail-flick test. Placements dorsal and medial to the amygdala were ineffective. Naltrexone (1-5 mu g) in the FAG significantly reduced both morphine (tail-flick: 70-75%; jump: 60-81%) and beta-endorphin (tail-flick: 100%; jump: 93%) analgesia elicited from the amygdala, indicating that an opioid synapse in the FAG was integral for the full expression of analgesia elicited from the amygdala by both agonists. Both BFNA (68%) and Ntii (100%) in the FAG significantly reduced morphine, but not beta-endorphin analgesia in the amygdala on the tail-flick test. Ntii in the FAG was more effective in reducing morphine (60%) and beta-endorphin (79%) analgesia in the amygdala on the jump test than BFNA (15-24%). Opioid agonist-induced analgesia in the amygdala was unaffected by opioid antagonists administered into control misplacements in the lateral mesencephalon, and the small hyperalgesia elicited by opioid antagonists in the FAG could not account for the reductions in opioid agonist effects in the amygdala. These data indicate that FAG delta(2), and to a lesser degree, mu opioid receptors are necessary for the full expression of morphine and beta-endorphin analgesia elicited from the amygdala.
引用
收藏
页码:13 / 26
页数:14
相关论文
共 90 条
[1]   ENDOGENOUS OPIOIDS - BIOLOGY AND FUNCTION [J].
AKIL, H ;
WATSON, SJ ;
YOUNG, E ;
LEWIS, ME ;
KHACHATURIAN, H ;
WALKER, JM .
ANNUAL REVIEW OF NEUROSCIENCE, 1984, 7 :223-255
[2]   THE ANTINOCICEPTIVE EFFECTS OF SCH-32615, A NEUTRAL ENDOPEPTIDASE (ENKEPHALINASE) INHIBITOR, MICROINJECTED INTO THE PERIAQUEDUCTAL, VENTRAL MEDULLA AND AMYGDALA [J].
ALRODHAN, N ;
CHIPKIN, R ;
YAKSH, TL .
BRAIN RESEARCH, 1990, 520 (1-2) :123-130
[3]   ENDOGENOUS PAIN CONTROL-SYSTEMS - BRAIN-STEM SPINAL PATHWAYS AND ENDORPHIN CIRCUITRY [J].
BASBAUM, AI ;
FIELDS, HL .
ANNUAL REVIEW OF NEUROSCIENCE, 1984, 7 :309-338
[4]   THE ORGANIZATION OF AFFERENT-PROJECTIONS TO THE MIDBRAIN PERIAQUEDUCTAL GRAY OF THE RAT [J].
BEITZ, AJ .
NEUROSCIENCE, 1982, 7 (01) :133-159
[5]   NEURONS CONTAINING BETA-ENDORPHIN IN RAT-BRAIN EXIST SEPARATELY FROM THOSE CONTAINING ENKEPHALIN - IMMUNOCYTOCHEMICAL STUDIES [J].
BLOOM, F ;
BATTENBERG, E ;
ROSSIER, J ;
LING, N ;
GUILLEMIN, R .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1978, 75 (03) :1591-1595
[6]   SYNERGISTIC ANALGESIC INTERACTIONS BETWEEN THE PERIAQUEDUCTAL GRAY AND THE LOCUS-CERULEUS [J].
BODNAR, R ;
PAUL, D ;
PASTERNAK, GW .
BRAIN RESEARCH, 1991, 558 (02) :224-230
[8]   ROLE OF MU-1-OPIATE RECEPTORS IN SUPRASPINAL OPIATE ANALGESIA - A MICROINJECTION STUDY [J].
BODNAR, RJ ;
WILLIAMS, CL ;
LEE, SJ ;
PASTERNAK, GW .
BRAIN RESEARCH, 1988, 447 (01) :25-34
[9]  
CASSELL MD, 1986, J COMP NEUROL, V246, P278
[10]  
D'amour FE, 1941, J PHARMACOL EXP THER, V72, P74