首页> 外文期刊>Behavioural Brain Research: An International Journal >Involvement of nitric oxide in phencyclidine-induced place aversion and preference in mice.
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Involvement of nitric oxide in phencyclidine-induced place aversion and preference in mice.

机译:一氧化氮参与苯环利定诱发的小鼠厌恶和偏好。

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摘要

The present study investigated the involvement of nitric oxide (NO) in phencyclidine (PCP)-induced place aversion and preference in the place conditioning paradigm. PCP-induced place aversion in naive mice was dose-dependently attenuated by administration of N(G)-nitro-L-arginine methyl ester (L-NAME), a NO synthase (NOS) inhibitor, during the conditioning. The NOS activity and dopamine (DA) turnover in the hippocampus in mice showing PCP-induced place aversion were decreased, such changes being restored by administration of L-NAME during the conditioning. On the other hand, PCP-induced place preference in mice pretreated with PCP for 28 days was not attenuated by administration of L-NAME during the conditioning. Although NOS activity was not changed, the DA turnover in the cerebral cortex was increased in mice showing PCP-induced place preference. In mice pretreated with L-NAME and PCP for 28 days before the place conditioning paradigm, PCP neither induced place preference, nor changed the NOS activity or DA turnover. These results suggest that NO is involved in the acquisition of PCP-induced aversive effects, and in the development of PCP-induced preferred effects. Further, the functional change of the DAergic neuronal system mediated by NO in the hippocampus and cerebral cortex may be necessary for the expression of aversive effects and development of preferred effects, respectively, induced by PCP.
机译:本研究调查了一氧化氮(NO)参与苯环利定(PCP)诱导的场所厌恶和在场所条件范式中的偏好。在调节过程中,通过施用一氧化氮合酶(NOS)抑制剂N(G)-硝基-L-精氨酸甲酯(L-NAME)可以剂量依赖性地减弱PCP诱导的幼稚小鼠的位置厌恶。显示PCP诱导的位置反感的小鼠海马的NOS活性和多巴胺(DA)转换降低,在调节过程中通过施用L-NAME可恢复这种变化。另一方面,用PCP预处理28天的小鼠在调节过程中未通过L-NAME的给药而减弱了PCP诱导的位置偏好。尽管NOS活性没有改变,但在显示PCP诱导的位置偏爱的小鼠中,大脑皮层的DA转换增加了。在位置条件范式之前的28天中,用L-NAME和PCP预处理的小鼠中,PCP既不诱导位置偏爱,也不改变NOS活性或DA转换。这些结果表明,NO参与了PCP诱导的厌恶效应的获得以及PCP诱导的优选效应的发展。另外,由NO在海马和大脑皮层中介导的DA能神经元系统的功能改变可能分别对于PCP诱导的厌恶作用的表达和优选作用的发展是必需的。

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