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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Cannabinoid receptor activation in the basolateral amygdala blocks the effects of stress on the conditioning and extinction of inhibitory avoidance.
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Cannabinoid receptor activation in the basolateral amygdala blocks the effects of stress on the conditioning and extinction of inhibitory avoidance.

机译:基底外侧杏仁核中的大麻素受体激活阻断了应激对抑制性回避的抑制和消退的作用。

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摘要

Despite the efficacy of behavior therapy for human anxiety disorders, extinction-like treatments require repeated cue exposures and are vulnerable to reversal by a number of environmental factors, particularly stress. The endocannabinoid system has recently emerged as important in the regulation of extinction learning and in the regulation of the hypothalamic-pituitary-adrenal axis. Here, we aimed to examine the involvement of the cannabinoid CB(1) receptor in the basolateral amygdala (BLA) in inhibitory avoidance (IA) conditioning and extinction and to test whether cannabinoid activation would reverse the effects of stress on these memory processes. The synthetic full agonist of the CB(1)/CB(2) receptor WIN55,212-2 [R-(+)-(2,3-dihydro-5-methyl-3-[(4-morpholinyl)methyl]pyrol[1,2,3-de]-1,4- benzoxazin-6-yl)(1-naphthalenyl) methanone monomethanesulfonate] (5 microg/0.5 microl) microinjected into the BLA had no effect on IA conditioning or extinction by itself. However, microinjecting WIN55,212-2 into the BLA before exposing the rats to a stressor reversed the enhancing effects of the stressor on IA conditioning and its impairing effects on IA extinction. Importantly, WIN55,212-2 microinjected into the BLA reduced stress-induced elevations in corticosterone levels. Control experiments demonstrated the following: (1) the effects of WIN55,212-2 could not be attributed to sensorimotor deficits, because these parameters seemed unchanged by WIN55,212-2 microinjected into the BLA; and (2) the CB(1) receptor in the BLA is crucially involved in the extinction of IA, because the CB(1) receptor antagonist AM251 [N-1-(2,4-dichlorophenyl)-5-(4-iodophenyl)-4-methyl-N-1-piperidinyl-1H-pyrazole-3 -carboxamide] (6 ng/0.5 microl) microinjected into the BLA significantly blocked extinction. Together, our findings may support a wide therapeutic application for cannabinoids in the treatment of conditions associated with the inappropriate retention of aversive memories and stress-related disorders.
机译:尽管行为疗法对人类焦虑症有效,但类似灭绝的疗法仍需要反复暴露线索,并且容易受到许多环境因素(尤其是压力)的逆转。内源性大麻素系统最近在消光学习的调节和下丘脑-垂体-肾上腺轴的调节中起着重要的作用。在这里,我们旨在检查大麻素CB(1)受体参与基底外侧杏仁核(BLA)抑制回避(IA)的条件和消光作用,并测试大麻素活化是否会逆转压力对这些记忆过程的影响。 CB(1)/ CB(2)受体WIN55,212-2 [R-(+)-(2,3-dihydro-5-methyl-3-[(4-morpholinyl)methyl] pyrol的合成的完全激动剂显微注射到BLA中的[1,2,3-de] -1,4-苯并恶嗪-6-基)(1-萘甲酮)甲酮甲磺酸盐(5微克/0.5微升)对IA调节或自身灭绝没有影响。但是,在将大鼠暴露于应激源之前,将WIN55,212-2微注射到BLA中可以逆转应激源对IA调节的增强作用及其对IA消光的削弱作用。重要的是,微注射到BLA中的WIN55,212-2可减少应激引起的皮质酮水平升高。对照实验表明:(1)WIN55,212-2的作用不能归因于感觉运动缺陷,因为通过微注射到BLA中的WIN55,212-2,这些参数似乎没有改变; (2)BLA中的CB(1)受体与IA的灭绝息息相关,因为CB(1)受体拮抗剂AM251 [N-1-(2,4-二氯苯基)-5-(4-碘苯基) )微注射到BLA中的)-4-甲基-N-1-哌啶基-1H-吡唑3-羧酰胺](6 ng / 0.5 microl)显着阻止了灭绝。总之,我们的发现可能支持大麻素在与厌恶记忆力和压力相关疾病的不适当保留相关的疾病的治疗中的广泛治疗应用。

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