首页> 美国卫生研究院文献>The Journal of Neuroscience >Ethanol Experience Enhances Glutamatergic Ventral Hippocampal Inputs to D1 Receptor-Expressing Medium Spiny Neurons in the Nucleus Accumbens Shell
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Ethanol Experience Enhances Glutamatergic Ventral Hippocampal Inputs to D1 Receptor-Expressing Medium Spiny Neurons in the Nucleus Accumbens Shell

机译:乙醇经验增强了伏谷核腹海马输入到伏隔核壳中的D1受体表达中棘神经元。

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摘要

A growing number of studies implicate alterations in glutamatergic signaling within the reward circuitry of the brain during alcohol abuse and dependence. A key integrator of glutamatergic signaling in the reward circuit is the nucleus accumbens, more specifically, the dopamine D1 receptor-expressing medium spiny neurons (D1-MSNs) within this region, which have been implicated in the formation of dependence to many drugs of abuse including alcohol. D1-MSNs receive glutamatergic input from several brain regions; however, it is not currently known how individual inputs onto D1-MSNs are altered by alcohol experience. Here, we investigate input-specific adaptations in glutamatergic transmission in response to varying levels of alcohol experience. Virally mediated expression of Channelrhodopsin in ventral hippocampal (vHipp) glutamate neurons of male mice allowed for selective activation of vHipp to D1-MSN synapses. Therefore, we were able to compare synaptic adaptations in response to low and high alcohol experience in vitro and in vivo. Alcohol experience enhanced glutamatergic activity and abolished LTD at vHipp to D1-MSN synapses. Following chronic alcohol experience, GluA2-lacking AMPARs, which are Ca permeable, were inserted into vHipp to D1-MSN synapses. These findings support the reversal of alcohol-induced insertion of Ca-permeable AMPARs and the enhancement of glutamatergic activity at vHipp to D1-MSNs as potential targets for intervention during early exposure to alcohol.>SIGNIFICANCE STATEMENT Given the roles of the nucleus accumbens (NAc) in integrating cortical and allocortical information and in reward learning, it is vital to understand how inputs to this region are altered by drugs of abuse such as alcohol. The strength of excitatory inputs from the ventral hippocampus (vHipp) to the NAc has been positively associated with reward-related behaviors, but it is unclear whether or how ethanol affects these inputs. Here we show that vHipp–NAc synapses indeed are altered by ethanol exposure, with vHipp glutamatergic input to the NAc being enhanced following chronic ethanol experience. This work provides insight into ethanol-induced alterations of vHipp–NAc synapses and suggests that, similarly to drugs such as cocaine, the strengthening of these synapses promotes reward behavior.
机译:越来越多的研究表明,在酗酒和依赖期间,大脑的奖赏回路中的谷氨酸能信号发生改变。奖励回路中谷氨酸能信号传导的关键整合者是伏隔核,更具体地说是该区域内表达多巴胺D1受体的中棘神经元(D1-MSNs),这与形成对许多滥用药物的依赖性有关包括酒精。 D1-MSN从几个大脑区域接收谷氨酸能输入;但是,目前尚不知道如何通过饮酒来改变对D1-MSN的单独输入。在这里,我们研究了对谷氨酸能传递的输入特定适应性,以适应不同程度的酒精经历。病毒介导的视紫红质蛋白在雄性小鼠腹侧海马(vHipp)谷氨酸神经元中的表达介导了vHipp对D1-MSN突触的选择性激活。因此,我们能够在体外和体内比较对低酒精和高酒精体验的突触适应。酒精会增强谷氨酸能活性,并在vHipp取消D1-MSN突触的LTD。在长期饮酒后,将Ca渗透性的,缺乏GluA2的AMPARs插入vHipp中与D1-MSN突触。这些发现支持逆转酒精诱导的Ca渗透性AMPAR的插入,并增强vHipp至D1-MSNs的谷氨酸能活性,将其作为早期暴露于酒精期间进行干预的潜在目标。>重要声明在整合皮层和分配信息以及奖励学习中,伏隔核(NAc)至关重要,要了解滥用酒精和酒精等滥用药物如何改变该区域的输入。从腹侧海马(vHipp)到NAc的兴奋性输入的强度与奖励相关行为呈正相关,但尚不清楚乙醇是否或如何影响这些输入。在这里,我们显示vHipp-NAc突触确实因暴露于乙醇而发生了改变,而在长期的乙醇经历后,向NAc的vHipp谷氨酸能输入得到了增强。这项工作深入了解了乙醇诱导的vHipp-NAc突触的变化,并表明,与可卡因等药物类似,加强这些突触可促进奖励行为。

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