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吗啡耐受-依赖和戒断大鼠的脑和脊髓5-羟色胺2型受体

Brain and spinal cord 5-HT2 receptors of morphine-tolerant-dependent and -abstinent rats.

作者信息

Gulati A, Bhargava H N

机构信息

Department of Pharmacodynamics, University of Illinois, Chicago 60612.

出版信息

Eur J Pharmacol. 1989 Aug 22;167(2):185-92. doi: 10.1016/0014-2999(89)90578-5.

Abstract

The effects of morphine tolerance-dependence and abstinence on 5-HT2 receptors in brain and spinal cord of the rat were determined. Tolerance to and physical dependence on morphine was induced in male Sprague-Dawley rats by implanting six morphine pellets (each containing 75 mg of morphine free base) during a seven day period. Two groups of rats were used for binding studies. In one group the pellets were left intact and in the other they were removed. The rats were killed and spinal cords and brains were excised and dissected into six regions (amygdala, hippocampus, hypothalamus, striatum, midbrain and pons + medulla). 5-HT2 receptors were characterized by using [3H]spiperone as the ligand and unlabelled ketanserin to determine the non-specific binding. In morphine and placebo abstinent rats the binding of [3H]spiperone to 5-HT2 receptors in brain regions and spinal cord did not differ. The Bmax values of [3H]spiperone to bind to membranes prepared from non-abstinent morphine-dependent rats were increased in amygdala (78.0%), midbrain (65.0%) and pons + medulla (92.0%). The Kd values were unaffected. It is concluded that in morphine-tolerant-dependent rats 5-HT2 receptors are up-regulated in amygdala, midbrain and pons + medulla, but in morphine-abstinent rats they are unaffected.

摘要

测定了吗啡耐受-依赖和戒断对大鼠脑和脊髓中5-羟色胺2(5-HT2)受体的影响。通过在7天内植入6粒吗啡丸(每粒含75mg游离碱吗啡),诱导雄性斯普拉-道来(Sprague-Dawley)大鼠对吗啡产生耐受和身体依赖。两组大鼠用于结合研究。一组大鼠的药丸保持完整,另一组则取出药丸。处死大鼠后,切除脊髓和脑,并将其解剖为六个区域(杏仁核、海马体、下丘脑、纹状体、中脑和脑桥+延髓)。以[3H]螺哌隆作为配体,并用未标记的酮色林测定非特异性结合,对5-HT2受体进行表征。在吗啡和安慰剂戒断的大鼠中,[3H]螺哌隆与脑区和脊髓中5-HT2受体的结合没有差异。与未戒断的吗啡依赖大鼠制备的膜结合的[3H]螺哌隆的最大结合容量(Bmax)值在杏仁核(78.0%)、中脑(65.0%)和脑桥+延髓(92.0%)中增加。解离常数(Kd)值未受影响。得出的结论是,在吗啡耐受-依赖的大鼠中,杏仁核、中脑和脑桥+延髓中的5-HT2受体上调,但在吗啡戒断的大鼠中,它们未受影响。

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