Excitation of lateral habenula neurons as a neural mechanism underlying ethanol‐induced conditioned taste aversion

Shashank Tandon, K. Keefe, S. Taha
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引用次数: 23

Abstract

The lateral habenula (LHb) has been implicated in regulation of drug‐seeking behaviours through aversion‐mediated learning. In this study, we recorded neuronal activity in the LHb of rats during an operant task before and after ethanol‐induced conditioned taste aversion (CTA) to saccharin. Ethanol‐induced CTA caused significantly higher baseline firing rates in LHb neurons, as well as elevated firing rates in response to cue presentation, lever press and saccharin taste. In a separate cohort of rats, we found that bilateral LHb lesions blocked ethanol‐induced CTA. Our results strongly suggest that excitation of LHb neurons is required for ethanol‐induced CTA, and point towards a mechanism through which LHb firing may regulate voluntary ethanol consumption.
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侧缰状神经元的兴奋作为乙醇诱导的条件性味觉厌恶的神经机制
侧链(LHb)通过厌恶介导的学习参与了药物寻找行为的调节。在这项研究中,我们记录了大鼠在乙醇诱导的对糖精的条件性味觉厌恶(CTA)之前和之后的操作任务中LHb的神经元活动。乙醇诱导的CTA显著提高了LHb神经元的基线放电率,同时对提示、杠杆按压和糖精味道的反应也提高了放电率。在另一组大鼠中,我们发现双侧LHb病变阻断了乙醇诱导的CTA。我们的研究结果强烈表明,LHb神经元的兴奋是乙醇诱导的CTA所必需的,并指出LHb放电可能调节自愿乙醇消耗的机制。
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