首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Electrical and pharmacological manipulations of the nucleus accumbens core impair synaptic plasticity in the dentate gyrus of the rat.
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Electrical and pharmacological manipulations of the nucleus accumbens core impair synaptic plasticity in the dentate gyrus of the rat.

机译:伏伏核核心的电和药理处理会损害大鼠齿状回中的突触可塑性。

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摘要

The interest on the physiology of the nucleus accumbens (NAcc) has grown in recent years given its relationship to addictive behaviours, and the possibility to treat them by interacting with NAcc function. We have shown that the prior stimulation of the core region blocks induction of long-term potentiation (LTP) at the dentate gyrus in anaesthetized rats, while the shell facilitated it. In the present study we have confirmed and expanded those results testing the effects of core and shell stimulation in freely moving rats, as well as the effect of blocking D1 receptors in the NAcc. Our results show that shell stimulation had no effect on baseline recordings of the field excitatory postsynaptic potential (fEPSP) or the population spike amplitude (PSA) for 24 h. Core stimulation did not modify baseline-fEPSP, but significantly depressed PSA up to 8 h. LTP maintenance was not modified; neither by core nor shell stimulation after its induction, but LTP induction was impaired (both in the fEPSP and PSA) by core stimulation 15 min before induction. Shell stimulation showed a slight facilitating effect. Previous, topical application of a dopaminergic-receptor antagonist (SCH23390) into the NAcc produced a significantly depressed baseline fEPSP and PSA, as well as LTP measured in both components of the evoked potentials. Our results confirm a dual role of stimulation of NAcc sub-regions on hippocampal baseline synaptic transmission, and LTP induction when activated before induction. In contrast, stimulation of the NAcc had no influence on an already ongoing dentate gyrus LTP. A role for dopaminergic innervation to the NAcc, modifying susceptibility for synaptic plasticity outside the NAcc is also suggested by our results.
机译:近年来,由于伏隔核(NAcc)与成瘾行为的关系以及通过与NAcc功能相互作用来治疗伏隔核的生理学,人们对此越来越感兴趣。我们已经表明,在麻醉的大鼠中,对核心区域的先前刺激会阻止在齿状回的长期增强(LTP)的诱导,而通过壳来促进它。在本研究中,我们已经证实并扩展了测试自由移动大鼠的核和壳刺激作用以及阻断NAcc中D1受体作用的结果。我们的研究结果表明,在24小时内,壳刺激对野外兴奋性突触后电位(fEPSP)或种群尖峰幅度(PSA)的基线记录没有影响。核心刺激并未改变基线fEPSP,但在长达8小时的时间内PSA明显降低。 LTP维护未修改;诱导后既不通过核也不通过壳刺激,但是在诱导前15分钟,通过核刺激来削弱LTP诱导(在fEPSP和PSA中)。壳刺激显示出轻微的促进作用。以前,在NAcc中局部应用多巴胺能受体拮抗剂(SCH23390)会显着降低基线fEPSP和PSA,以及在诱发电位的两个分量中测得的LTP。我们的结果证实了在诱导之前激活NAcc亚区对海马基线突触传递和LTP诱导具有双重作用。相反,NAcc的刺激对已经进行的齿状回LTP没有影响。我们的结果还表明,多巴胺能神经支配的作用,改变了对NAcc外突触可塑性的敏感性。

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