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单次注射吗啡会导致大鼠尾状核壳核多巴胺能神经末梢产生持久的反应低下。

A single exposure to morphine induces long-lasting hyporeactivity of rat caudate putamen dopaminergic nerve terminals.

作者信息

Pereira Frederico C, Santos Sandra D, Ribeiro Carlos F, Ali Syed F, Macedo Tice R

机构信息

Instituto de Farmacologia e Terapêutica, Medical School, University of Coimbra, Coimbra, Portugal.

出版信息

Ann N Y Acad Sci. 2004 Oct;1025:414-23. doi: 10.1196/annals.1316.051.

Abstract

The long-lasting effects of exposure to drugs of abuse on the brain is a central theme in drug addiction research. This study was designed to evaluate whether enduring neurochemical adaptations within caudate putamen can be evoked by a single injection of a high dose of morphine. Rats were pretreated once with 10 mg/kg morphine. Seven days later the effect of another injection of 10 mg/kg morphine on total levels of dopamine (DA), 3,4-dihydroxyphenylacetic acid (DOPAC), and homovanilic acid (HVA) in caudate putamen was assessed in half the pretreated animals. An irreversible mu-opioid receptor antagonist, cloccinamox (C-CAM; 0.1 mg/kg), significantly antagonized the elevation of the HVA/DA ratio, but not the elevation of the DOPAC/DA ratio induced by morphine in the caudate putamen from drug-naive animals. Pretreatment with morphine blunted changes in the HVA/DA ratio induced by another morphine challenge, but it had no effect on the DOPAC/DA ratio within the caudate putamen. Therefore, a single dose of 10 mg/kg morphine hampered nigrostriatal DA release and extraneuronal metabolism, mu-opioid receptor mediated, on another 10 mg/kg morphine challenge. This confirms that the first exposure to morphine does not go without long-lasting neurochemical adaptations.

摘要

滥用药物对大脑的长期影响是药物成瘾研究的核心主题。本研究旨在评估单次注射高剂量吗啡是否能引起尾状核壳核内持久的神经化学适应性变化。大鼠预先单次注射10mg/kg吗啡。7天后,在一半的预处理动物中评估再次注射10mg/kg吗啡对尾状核壳核中多巴胺(DA)、3,4-二羟基苯乙酸(DOPAC)和高香草酸(HVA)总水平的影响。一种不可逆的μ-阿片受体拮抗剂氯西那莫(C-CAM;0.1mg/kg)显著拮抗了未接触过药物的动物尾状核壳核中吗啡诱导的HVA/DA比值升高,但对DOPAC/DA比值升高无拮抗作用。吗啡预处理减弱了另一次吗啡激发诱导的HVA/DA比值变化,但对尾状核壳核内的DOPAC/DA比值无影响。因此,单次注射10mg/kg吗啡阻碍了黑质纹状体DA释放和μ-阿片受体介导的神经外代谢,对另一次10mg/kg吗啡激发产生影响。这证实了首次接触吗啡并非没有持久的神经化学适应性变化。

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