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γ-氨基丁酸能的隔区-海马通路在脑刺激奖赏中的作用。

Involvement of the GABAergic septo-hippocampal pathway in brain stimulation reward.

作者信息

Vega-Flores Germán, Gruart Agnès, Delgado-García José M

机构信息

Division of Neurosciences, Pablo de Olavide University, Seville, Spain.

出版信息

PLoS One. 2014 Nov 21;9(11):e113787. doi: 10.1371/journal.pone.0113787. eCollection 2014.

Abstract

The hippocampus is a structure related to several cognitive processes, but not very much is known about its putative involvement in positive reinforcement. In its turn, the septum has been related to instrumental brain stimulation reward (BSR) by its electrical stimulation with trains of pulses. Although the anatomical relationships of the septo-hippocampal pathway are well established, the functional relationship between these structures during rewarding behaviors remains poorly understood. To explore hippocampal mechanisms involved in BSR, CA3-evoked field excitatory and inhibitory postsynaptic potentials (fEPSPs, fIPSPs) were recorded in the CA1 area during BSR in alert behaving mice. The synaptic efficiency was determined from changes in fEPSP and fIPSP amplitudes across the learning of a BSR task. The successive BSR sessions evoked a progressive increase of the performance in inverse relationship with a decrease in the amplitude of fEPSPs, but not of fIPSPs. Additionally, we evaluated CA1 local field potentials (LFPs) during a preference task, comparing 8-, 20-, and 100-Hz trains of septal BSR. We corroborate a clear preference for BSR at 100 Hz (in comparison with BSR at 20 Hz or 8 Hz), in parallel with an increase in the spectral power of the low theta band, and a decrease in the gamma. These results were replicated by intrahippocampal injections of a GABAB antagonist. Thus, the GABAergic septo-hippocampal pathway seems to carry information involved in the encoding of reward properties, where GABAB receptors seem to play a key role. With regard to the dorsal hippocampus, fEPSPs evoked at the CA3-CA1 synapse seem to reflect the BSR learning process, while hippocampal rhythmic activities are more related to reward properties.

摘要

海马体是一个与多种认知过程相关的结构,但对于其在正性强化中的假定作用,人们了解得并不多。而隔膜则因其脉冲串电刺激与工具性脑刺激奖赏(BSR)有关。尽管隔海马通路的解剖学关系已得到充分证实,但在奖赏行为期间这些结构之间的功能关系仍知之甚少。为了探究参与BSR的海马机制,在清醒行为小鼠进行BSR期间,在CA1区域记录了CA3诱发的场兴奋性和抑制性突触后电位(fEPSP、fIPSP)。通过在BSR任务学习过程中fEPSP和fIPSP幅度的变化来确定突触效率。连续的BSR实验引起了性能的逐步提高,这与fEPSP幅度的降低呈反比关系,但与fIPSP幅度无关。此外,我们在偏好任务期间评估了CA1局部场电位(LFP),比较了8Hz、20Hz和100Hz的隔膜BSR脉冲串。我们证实了对100Hz的BSR有明显偏好(与20Hz或8Hz的BSR相比),同时低θ频段的频谱功率增加,γ频段的频谱功率降低。通过海马内注射GABAB拮抗剂可重复这些结果。因此,GABA能隔海马通路似乎携带了参与奖赏特性编码的信息,其中GABAB受体似乎起着关键作用。关于背侧海马体,在CA3-CA1突触处诱发的fEPSP似乎反映了BSR学习过程,而海马节律性活动与奖赏特性的关系更为密切。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1e3/4263242/cd5196654fce/pone.0113787.g001.jpg

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