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N-甲基-D-天冬氨酸(NMDA)拮抗剂AP-5增强伏隔核内环境诱导的可卡因条件性运动。

NMDA antagonist AP-5 increase environmentally induced cocaine-conditioned locomotion within the nucleus accumbens.

作者信息

Rodríguez-Borrero Enrique, Bernardo Colón Alexandra, Burgos-Mártir Melissa A, Alvarez Carillo José E, del Campo Yaniré Estrada, Abella-Ramírez Cynthia, Maldonado-Vlaar Carmen S

机构信息

University of Puerto Rico, Río Piedras Campus, Biology Department, San Juan, Puerto Rico.

出版信息

Pharmacol Biochem Behav. 2006 Sep;85(1):178-84. doi: 10.1016/j.pbb.2006.07.034. Epub 2006 Sep 11.

Abstract

An environment previously associated with cocaine use can elicit cravings, even in the absence of the drug, which may be due to the formation of strong associations between the environment and the drug. These associations can result from motor learning and reinforcing effects of cocaine, and may be mediated in part by ionotropic glutamate receptors in the nucleus accumbens (N.Acc.). To determine whether NMDA receptor activity in the N.Acc. affects the expression of conditioned locomotion, rats were trained using an environment-elicited cocaine-conditioning paradigm. Rats trained to pair a cocaine injection with an environment showed an increased locomotor activity when tested in the drug-paired environment, whereas rats injected with cocaine in their home cages did not exhibit greater locomotion. Significantly greater locomotor activity occurred in trained animals that received an infusion of AP-5, a NMDA receptor antagonist, into the N.Acc. These results suggest that animals trained to associate environmental cues with cocaine become conditioned to this environment. Furthermore, our finding demonstrates that NMDA receptor activation within the N.Acc. modulates cocaine-induced conditioning.

摘要

先前与可卡因使用相关的环境即使在没有药物的情况下也能引发渴望,这可能是由于环境与药物之间形成了强烈的关联。这些关联可能源于可卡因的运动学习和强化作用,并且可能部分由伏隔核(N.Acc.)中的离子型谷氨酸受体介导。为了确定N.Acc.中NMDA受体活性是否影响条件性运动的表达,使用环境诱发的可卡因条件化范式对大鼠进行训练。经过训练将可卡因注射与环境配对的大鼠在药物配对环境中进行测试时表现出运动活动增加,而在其家笼中注射可卡因的大鼠则没有表现出更大的运动。在接受向N.Acc.注入NMDA受体拮抗剂AP-5的训练动物中出现了明显更大的运动活动。这些结果表明,经过训练将环境线索与可卡因联系起来的动物会对这种环境产生条件反射。此外,我们的发现表明,N.Acc.内的NMDA受体激活调节可卡因诱导的条件化。

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