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环境丰富化和社会隔离调节海马体CA2区的抑制性突触传递和可塑性。

Environmental enrichment and social isolation modulate inhibitory transmission and plasticity in hippocampal area CA2.

作者信息

Loisy Maïthé, Farah Amel, Fafouri Assia, Fanton Aurélien, Ahmadi Mahboubeh, Therreau Ludivine, Chevaleyre Vivien, Piskorowski Rebecca A

机构信息

Université Paris Cité, Institute of Psychiatry and Neuroscience of Paris (IPNP), INSERM U1266, Paris, France.

GHU Paris Psychiatrie et Neurosciences, Hôpital Sainte Anne, Paris, France.

出版信息

Hippocampus. 2023 Mar;33(3):197-207. doi: 10.1002/hipo.23478. Epub 2022 Nov 14.

Abstract

Environmental factors are well-accepted to play a complex and interdependent role with genetic factors in learning and memory. The goal of this study was to examine how environmental conditions altered synaptic plasticity in hippocampal area CA2. To do this, we housed adult mice for 3 weeks in an enriched environment (EE) consisting of a larger cage with running wheel, and regularly changed toys, tunnels and treats. We then performed whole-cell or extracellular field recordings in hippocampal area CA2 and compared the synaptic plasticity from EE-housed mice with slices from littermate controls housed in standard environment (SE). We found that the inhibitory transmission recruited by CA3 input stimulation in CA2 was significantly less plastic in EE conditions as compared to SE following an electrical tetanus. We demonstrate that delta-opioid receptor (DOR) mediated plasticity is reduced in EE conditions by direct application of DOR agonist. We show that in EE conditions the overall levels of GABA transmission is reduced in CA2 cells by analyzing inhibition of ErbB4 receptor, spontaneous inhibitory currents and paired-pulse ratio. Furthermore, we report that the effect of EE of synaptic plasticity can be rapidly reversed by social isolation. These results demonstrate how the neurons in hippocampal area CA2 are sensitive to environment and may lead to promising therapeutic targets.

摘要

环境因素在学习和记忆中与遗传因素相互作用,发挥着复杂且相互依存的作用,这一点已被广泛认可。本研究的目的是探究环境条件如何改变海马体CA2区的突触可塑性。为此,我们将成年小鼠饲养在丰富环境(EE)中3周,该环境由一个带有跑轮的较大笼子组成,并定期更换玩具、隧道和食物。然后,我们在海马体CA2区进行全细胞或细胞外场记录,并将来自丰富环境饲养小鼠的切片与来自饲养在标准环境(SE)中的同窝对照小鼠的切片的突触可塑性进行比较。我们发现,在电强直刺激后,与标准环境相比,丰富环境条件下CA3输入刺激在CA2区募集的抑制性传递的可塑性显著降低。我们通过直接应用δ-阿片受体(DOR)激动剂证明,在丰富环境条件下DOR介导的可塑性降低。通过分析ErbB4受体的抑制、自发抑制性电流和配对脉冲比率,我们表明在丰富环境条件下,CA2细胞中GABA传递的总体水平降低。此外,我们报告社会隔离可迅速逆转丰富环境对突触可塑性的影响。这些结果表明海马体CA2区的神经元对环境敏感,并可能带来有前景的治疗靶点。

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