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DOPAMINE RECEPTOR INACTIVATION IN THE CAUDATE-PUTAMEN DIFFERENTIALLY AFFECTS THE BEHAVIOR OF PREWEANLING AND ADULT RATS

机译:凯特 - 腐败中的多巴胺受体灭活差异地影响了屈服和成年大鼠的行为

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摘要

The irreversible receptor antagonist N-ethoxycarbonyl-2-ethoxy-1,2-dihydroquinoline (EEDQ) has been used to study the ontogeny of dopamine (DA) receptor functioning in the young and adult rat. Most notably, systemic administration of EEDQ blocks the DA agonist-induced behaviors of adult rats, while leaving the behavior of preweanling rats unaffected. The purpose of the present study was to: (a) determine whether the age-dependent actions of EEDQ involve receptors located in the dorsal caudate-putamen (CPu) and (b) confirm that EEDQ's behavioral effects result from the inactivation of DA receptors rather than some other receptor type. In Experiment 1, EEDQ or DMSO were bilaterally infused into the CPu on PD 17 or PD 84. After 24 h, rats were given bilateral microinjections of the full DA agonist R(–)-propylnorapomorphine (NPA) or vehicle into the dorsal CPu and behavior was assessed for 40 min. In Experiment 2, preweanling rats were treated as just described, except that DA receptors were protected from EEDQ-induced alkylation by administering systemic injections of D1 () and D2 (sulpiride) receptor antagonists. As predicted, microinjecting EEDQ into the dorsal CPu attenuated the NPA-induced locomotor activity and stereotypy of adult rats. In contrast, rats given bilateral EEDQ infusions on PD 17 exhibited a potentiated locomotor response when treated with NPA. Experiment 2 showed that DA receptor inactivation was responsible for NPA's actions. A likely explanation for these results is that EEDQ inactivates a sizable percentage of DA receptors on PD 17, but leaves the remaining receptors in a supersensitive state. This receptor supersensitivity, which probably involves alterations in G protein coupling, could account for NPA-induced locomotor potentiation. Either adult rats do not show a similar EEDQ-induced change in receptor dynamics or DA receptor inactivation was more complete in older animals and effectively eliminated the expression of DA agonist-induced behaviors.
机译:不可逆受体拮抗剂N-乙氧基羰基-2-乙氧基-1,2-二氢喹啉(EEDQ)已用于研究幼年和成年大鼠中多巴胺(DA)受体功能的存在。最值得注意的是,全身给药EEDQ可以阻断DA激动剂诱导的成年大鼠行为,而使断奶前大鼠的行为不受影响。本研究的目的是:(a)确定EEDQ的年龄依赖性作用是否涉及位于背尾状丘脑(CPu)中的受体,以及(b)确认EEDQ的行为效应是DA受体失活所致。比其他一些受体类型在实验1中,将EEDQ或DMSO双向注入PD 17或PD 84上的CPu中。24小时后,将大鼠全部DA激动剂R(-)-丙基norapomorphine(NPA)或赋形剂双边注射到背侧CPu和评估行为40分钟。在实验2中,对断奶前的大鼠进行了如上所述的处理,只是通过全身性注射D1()和D2(舒必利)受体拮抗剂来保护DA受体免受EEDQ诱导的烷基化。如预期的那样,将EEDQ显微注射到背侧CPu可以减弱NPA诱导的成年大鼠的自发活动和定型。相反,当用NPA治疗时,在PD 17上接受双侧EEDQ输注的大鼠表现出增强的运动反应。实验2表明,DA受体的失活是NPA作用的原因。这些结果的可能解释是EEDQ使PD 17上相当大比例的DA受体失活,但其余受体处于超敏感状态。这种受体超敏性可能涉及G蛋白偶联的改变,可以解释NPA诱导的运动增强。在成年大鼠中,成年大鼠均未表现出类似的EEDQ诱导的受体动力学变化,或者DA受体失活更加完全,并有效消除了DA激动剂诱导的行为的表达。

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