首页> 外文期刊>Behavioural Brain Research: An International Journal >Behavioral effects of psychostimulants in mutant mice with cell-type specific deletion of CB2 cannabinoid receptors in dopamine neurons
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Behavioral effects of psychostimulants in mutant mice with cell-type specific deletion of CB2 cannabinoid receptors in dopamine neurons

机译:多巴胺神经元CB2大麻素受体细胞型特异性缺失突变小鼠在突变小鼠中的行为效应

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Activation of the endocannabinoid system modulate dopaminergic pathways that are involved in the effects of psychostimulants including amphetamine, cocaine, nicotine and other drugs of abuse. Genetic deletion or pharmacological activation of CB2 cannabinoid receptor is involved in the modulation of the effects of psychostimulants and their rewarding properties. Here we report on the behavioral effects of psychostimulants in DAT-Cnr2 conditional knockout (cKO) mice with selective deletion of type 2 cannabinoid receptors in dopamine neurons. There was enhanced psychostimulant induced hyperactivity in DAT-Cnr2 cKO mice, but the psychostimulant-induced sensitization was absent in DAT-Cnr2 cKO compared to the WT mice. Intriguingly, lower doses of amphetamine reduced locomotor activity of the DAT-Cnr2 cKO mice. While cocaine, amphetamine and methamphetamine produced robust conditioned place preference (CPP) in both DAT-Cnr2 cKO and WT mice, nicotine at the dose used induced CPP only in the WT but not in the DAT-Cn2 cKO mice. However, pre-treatment with the CB2R selective agonist JWH133, blocked cocaine and nicotine induced CPP in the WT mice. The deletion of CB2Rs in dopamine neurons modified the levels of tyrosine hydroxylase, and reduced the expression of dopamine transporter gene expression in DAT-Cnr2 cKO midbrain region. Taken together, our data suggest that CB2Rs play a role in the modulation of dopamine-related effects of psychostimulants and could be exploited as therapeutic target in psychostimulant addiction and other psychiatric disorders associated with dopamine dysregulation.
机译:活化的内胆碱系统调节多巴胺能途径,这些途径涉及心理疗法的影响,包括含有安非他明,可卡因,尼古丁和其他滥用药物。 CB2大麻素受体的遗传缺失或药理学活化参与调节精神刺激剂的影响及其有益性。在这里,我们报告了在多巴胺神经元中选择性缺失的Dat-CNR2条件淘汰(CKO)小鼠在Dat-CNR2条件淘汰(CKO)小鼠中的行为效应。在DAT-CNR2 CKO小鼠中有增强的精神疗递诱导的多动,但与WT小鼠相比,DAT-CNR2 CKO中不存在精神诱导的敏化。有趣的,较低剂量的Amphetamine降低了DAT-CNR2 CKO小鼠的运动活性。虽然可卡因,amphetamine和甲基苯丙胺在DAT-CNR2 CKO和WT小鼠中产生稳健的条件偏好(CPP),但在剂量的尼古丁仅在WT中诱导CPP但不在DAT-CN2 CKO小鼠中。然而,用CB2R选择性激动剂JWH133预处理,封闭的可卡因和尼古丁在WT小鼠中诱导CPP。在多巴胺神经元中缺失CB2RS改性酪氨酸羟化酶的水平,并降低了DAT-CNR2 CKO中脑区域中多巴胺转运蛋白表达的表达。我们的数据表明,CB2RS在调节心脏疗递子的调节中发挥作用,并且可以作为治疗靶标在精神疗法成瘾和与多巴胺失调相关的其他精神病疾病中。

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