首页> 外文期刊>Behavioural Brain Research: An International Journal >Oxytocin directly administered into the nucleus accumbens core or subthalamic nucleus attenuates methamphetamine-induced conditioned place preference
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Oxytocin directly administered into the nucleus accumbens core or subthalamic nucleus attenuates methamphetamine-induced conditioned place preference

机译:将催产素直接施用到伏隔核核心或丘脑下核中会减弱甲基苯丙胺诱导的条件性位置偏爱

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Accumulating evidence indicates that the neuropeptide oxytocin (OXY) may modulate reward-related behavioural responses to methamphetamine (METH) administration. Limited research has examined the effect of OXY on METH-induced conditioned place preference (CPP) and little is known about the neural mechanisms involved. A Fos immunohistochemistry study recently demonstrated that peripheral OXY administration reduced METH-induced Fos expression within the nucleus accumbens (NAc) core and subthalamic nucleus (STh) in rats. The current study aimed to (i) investigate the effect of systemically administered OXY on METH-induced CPP, (ii) determine the effectiveness of a single-trial CPP procedure with METH, in order to (iii) evaluate whether pretreatment with OXY injected directly into the NAc core or the STh attenuates METH-induced CPP. Results showed that male Sprague Dawley rats learned to associate unique compartmental cues with METH (1. mg/kg, i.p.) such that they spent more time in the METH-paired compartment and less time in the saline-paired compartment. Pretreatment with systemic OXY (0.6. mg, i.p.), or OXY (0.6. ng, i.c.) microinjected into the NAc core or the STh prior to METH administration attenuated the formation of a CPP to METH. This provides further evidence that OXY acts within either the NAc core or the STh to reduce the rewarding effects of METH administration.
机译:越来越多的证据表明,神经肽催产素(OXY)可能调节对甲基苯丙胺(METH)给药的奖励相关行为反应。有限的研究已经研究了OXY对METH诱导的条件性位置偏爱(CPP)的影响,并且对涉及的神经机制知之甚少。最近进行的一项Fos免疫组织化学研究表明,外围OXY给药可降低大鼠伏隔核(NAc)核心和丘脑底核(STh)中METH诱导的Fos表达。当前的研究旨在(i)研究全身给药的OXY对METH诱导的CPP的影响,(ii)确定METH的单次CPP程序的有效性,以便(iii)评价是否直接注射OXY进行预处理进入NAc核心或STh会减弱METH诱导的CPP。结果表明,雄性Sprague Dawley大鼠学会了将独特的区隔提示与METH(1.mg/kg,i.p.)关联,从而使它们在与METH配对的隔室中花费更多的时间,而在与盐配对的隔室中花费的时间更少。在进行METH给药之前,先将微细化的NAXY核心或STh中的全身性OXY(0.6。ng,i.p.)或OXY(0.6。ng,i.c.)进行预处理,从而可以将CPP形成为METH。这提供了进一步的证据,证明OXY在NAc核心或STh中起作用,以减少METH管理的奖励作用。

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