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首页> 外文期刊>Psychopharmacology >Behavioral effects of dopamine receptor inactivation in the caudate-putamen of preweanling rats: Role of the D2 receptor
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Behavioral effects of dopamine receptor inactivation in the caudate-putamen of preweanling rats: Role of the D2 receptor

机译:多巴胺受体失活在断奶前大鼠尾状壳中的行为效应:D2受体的作用

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Rationale: Inactivating dopamine (DA) receptors in the caudate-putamen (CPu) attenuates basal and DA agonist-induced behaviors of adult rats while paradoxically increasing the locomotor activity of preweanling rats. Objective: The purpose of this study was to determine (a) whether D1 or D2 receptor inactivation is responsible for the elevated locomotion shown by preweanling rats and (b) whether DA receptor inactivation produces a general state in which any locomotor-activating drug will cause a potentiated behavioral response. Methods: Dimethyl sulfoxide (DMSO) or N-ethoxycarbonyl-2-ethoxy-1,2- dihydroquinoline (EEDQ) was bilaterally infused into the CPu on postnatal day (PD) 17. In experiment 1, DA receptors were selectively protected from EEDQ-induced alkylation by pretreating rats with D1 and/or D2 antagonists. On PD 18, rats received bilateral microinjections of the DA agonist R(-)-propylnorapomorphine into the dorsal CPu, and locomotor activity was measured for 40 min. In subsequent experiments, the locomotion of DMSO- and EEDQ-pretreated rats was assessed after intraCPu infusions of the selective DA agonists SKF82958 and quinpirole, the partial agonist terguride, or after systemic administration of nonDAergic compounds. Results: Experiment 1 showed that EEDQ's ability to enhance the locomotor activity of preweanling rats was primarily due to the inactivation of D2 receptors. Consistent with this finding, only drugs that directly or indirectly stimulated D2 receptors produced a potentiated locomotor response in EEDQ-treated rats. Conclusions: These results show that DA receptor inactivation causes dramatically different behavioral effects in preweanling and adult rats, thus providing additional evidence that the D2 receptor system is not functionally mature by the end of the preweanling period.
机译:原理:尾状-丘脑(CPu)中的多巴胺(DA)受体失活可减弱成年大鼠的基础和DA激动剂诱导的行为,同时自相矛盾地增加断奶前大鼠的运动能力。目的:本研究的目的是确定(a)D1或D2受体失活是造成断奶前大鼠运动增加的原因,以及(b)DA受体失活是否产生任何运动激活药物都会引起的一般状态增强的行为反应。方法:在出生后第17天,将二甲基亚砜(DMSO)或N-乙氧基羰基-2-乙氧基-1,2-二氢喹啉(EEDQ)双边注入CPu中。在实验1中,选择性保护DA受体免受EEDQ-通过用D1和/或D2拮抗剂预处理大鼠来诱导烷基化。在PD 18上,大鼠接受了DA激动剂R(-)-丙基诺拉吗啡的双侧显微注射到背侧CPu中,并测量了40分钟的运动能力。在随后的实验中,在CPu内选择性DA激动剂SKF82958和喹吡罗(部分激动剂特固瑞特)的CPu输注之后,或在系统给药非DAergic化合物后,对DMSO和EEDQ预处理的大鼠的运动进行了评估。结果:实验1表明EEDQ增强断奶前大鼠运动能力的能力主要归因于D2受体的失活。与此发现一致,只有直接或间接刺激D2受体的药物才能在EEDQ治疗的大鼠中产生增强的运动反应。结论:这些结果表明,DA受体的失活在断奶前和成年大鼠中引起了截然不同的行为效应,从而提供了另外的证据,表明在断奶前期D2受体系统功能尚未成熟。

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