首页> 美国卫生研究院文献>Neuropsychopharmacology >The Role of the Nucleus Accumbens Shell in the Mediation of the Reinforcing Properties of a Safety Signal in Free-Operant Avoidance: Dopamine-Dependent Inhibitory Effects of d-amphetamine
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The Role of the Nucleus Accumbens Shell in the Mediation of the Reinforcing Properties of a Safety Signal in Free-Operant Avoidance: Dopamine-Dependent Inhibitory Effects of d-amphetamine

机译:伏隔核壳在自由操作规避中的安全信号的增强特性的介导中的作用:d-苯丙胺依赖多巴胺的抑制作用

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摘要

Safety signals (SSs) have been shown to reinforce instrumental avoidance behavior due to their ability to signal the absence of an aversive event; however, little is known of their neural mediation. This study investigated whether infusions of d-amphetamine in the nucleus accumbens (Nac), previously shown to potentiate responding for appetitive conditioned reinforcers (CRfs), also regulate avoidance responding for a SS. Rats were trained on a free-operant task in which lever-press responses avoided shock and were reinforced with an auditory SS. Rats were then cannulated in the Nac core (NacC) or shell (NacS) and infused with d-amphetamine and, in separate NacS groups, other drugs, before extinction sessions with the SS present or absent following responding. Selective effects of d-amphetamine were found in the NacS, but not in the NacC, when the SS was present in the session. A significant increase in response rate during the presentation of the SS reflected a disruption of its fear-inhibiting properties. In parallel, a decrease in avoidance response rate reflected the reduced influence of the SS as a CRf. Inactivation of the NacS reduced avoidance responding only when the SS was present in the session, whereas the D1–D2 DA receptor antagonist α-flupenthixol reduced responding both before and during the SS regardless of the presence of the SS. Atomoxetine (ATO), a selective noradrenaline reuptake inhibitor, had no effect on responding. These results indicate a role for the NacS in the mediation of the conditioned reinforcing properties of a SS. These effects appear to be modulated by dopaminergic mechanisms but seem distinct from those previously reported with food-related CRfs.
机译:安全信号(SS)由于能够发出不厌恶事件的信号,因此能够增强仪器的回避行为。然而,关于它们的神经介导知之甚少。这项研究调查了在伏隔核(Nac)中注入d-苯异丙胺是否以前也能增强对有条件的条件性增强剂(CRfs)的反应,是否还规避了对SS的反应。对大鼠进行了一项自由操作的训练,该操作中的压杆反应可避免电击,并通过听觉SS进行强化。然后将大鼠在Nac核心(NacC)或外壳(NacS)中插管并注入d-苯异丙胺,以及在单独的NacS组中输注其他药物,然后在有或没有SS的灭绝反应后缓解。当会话中存在SS时,在NacS中发现了d-苯异丙胺的选择性作用,但在NacC中未发现。出现SS期间反应率的显着提高反映了其抑制恐惧的特性受到破坏。同时,回避响应率的降低反映了SS作为CRf的影响降低。 NacS的失活仅在会话中存在SS时才减少回避反应,而D1-D2 DA受体拮抗剂α-氟喷他索无论在SS之前还是在SS期间均会降低响应。选择性去甲肾上腺素再摄取抑制剂Atomoxetine(ATO)对反应没有影响。这些结果表明NacS在介导SS的条件增强特性中的作用。这些作用似乎受到多巴胺能机制的调节,但似乎与先前与食物相关的CRfs报道的作用不同。

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