Suppr超能文献

多巴胺能调制在操作性奖励学习和强迫性摄食行为诱导中的意义在海兔中。

Implication of dopaminergic modulation in operant reward learning and the induction of compulsive-like feeding behavior in Aplysia.

机构信息

Institut de Neurosciences Cognitives et Intégratives d'Aquitaine-INCIA, Université de Bordeaux, UMR 5287, F-33000 Bordeaux, France.

出版信息

Learn Mem. 2013 May 16;20(6):318-27. doi: 10.1101/lm.029140.112.

Abstract

Feeding in Aplysia provides an amenable model system for analyzing the neuronal substrates of motivated behavior and its adaptability by associative reward learning and neuromodulation. Among such learning processes, appetitive operant conditioning that leads to a compulsive-like expression of feeding actions is known to be associated with changes in the membrane properties and electrical coupling of essential action-initiating B63 neurons in the buccal central pattern generator (CPG). Moreover, the food-reward signal for this learning is conveyed in the esophageal nerve (En), an input nerve rich in dopamine-containing fibers. Here, to investigate whether dopamine (DA) is involved in this learning-induced plasticity, we used an in vitro analog of operant conditioning in which electrical stimulation of En substituted the contingent reinforcement of biting movements in vivo. Our data indicate that contingent En stimulation does, indeed, replicate the operant learning-induced changes in CPG output and the underlying membrane and synaptic properties of B63. Significantly, moreover, this network and cellular plasticity was blocked when the input nerve was stimulated in the presence of the DA receptor antagonist cis-flupenthixol. These results therefore suggest that En-derived dopaminergic modulation of CPG circuitry contributes to the operant reward-dependent emergence of a compulsive-like expression of Aplysia's feeding behavior.

摘要

在海兔中进行摄食行为为分析动机行为的神经基质以及通过联想奖励学习和神经调制来分析其适应性提供了一个合适的模型系统。在这些学习过程中,导致摄食行为强制性表达的食欲操作性条件作用与口腔中央模式发生器 (CPG) 中必需的起始 B63 神经元的膜特性和电耦合变化有关。此外,这种学习的食物奖励信号是通过富含多巴胺纤维的食管神经 (En) 传递的。在这里,为了研究多巴胺 (DA) 是否参与这种学习诱导的可塑性,我们使用了操作性条件作用的体外模拟,其中 En 的电刺激替代了体内对咬合运动的条件强化。我们的数据表明,En 的条件刺激确实复制了 CPG 输出以及 B63 的基础膜和突触特性的操作性学习诱导的变化。此外,当存在 DA 受体拮抗剂 cis-flupenthixol 时,刺激输入神经会阻断这种网络和细胞可塑性。因此,这些结果表明,En 衍生的多巴胺能调制 CPG 电路有助于海兔摄食行为的强制性表达的操作性奖励依赖性出现。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验