Neuroscience Program, University of Illinois, Urbana-Champaign, USA.
Neuroscience Program, University of Illinois, Urbana-Champaign, USA; Department of Molecular and Integrative Physiology, University of Illinois, Urbana-Champaign, USA; Department of Pharmacology, University of Illinois, Urbana-Champaign, USA; Beckman Institute for Advanced Science, University of Illinois, Urbana-Champaign, USA.
Neuropharmacology. 2018 Oct;141:158-166. doi: 10.1016/j.neuropharm.2018.08.037. Epub 2018 Aug 28.
Recent studies in rats suggest that high frequency stimulation (HFS) in the ventral hippocampus induces long-term depression (LTD) in the deep layer of the medial prefrontal cortex (mPFC), but only after the prefrontal GABA system has sufficiently developed during early-to mid-adolescence. It is not clear whether this LTD is specific to the hippocampus-mPFC circuit or is instead an intrinsitc regulatory mechanism for the developed mPFC neuro-network. The potential mechanisms underlying this HFS-induced LTD are also largely unknown. In the current study, naïve male Sprague Dawley rats were sacrificed during peri-adolescence or young adulthood for in vitro extracellular recording to determine if HFS delivered in the prelimbic cortex (PLC) would induce LTD in an age-dependent manner and if dopamine receptors are involved in the expression of this LTD. We found four trains of stimulation at 50 Hz induced an LTD in the PFC of adult, but not peri-adolescent, rats. This LTD required intact GABA receptor functioning and could also be blocked by dopamine D or D receptor antagonists. Bath application of selective D or D receptor agonists produced a significant facilitation or suppression in the field potential, respectively, and these effects were only observed in the adult PLC. Furthermore, neither D nor D stimualtion prior to HFS was able to facilitate LTD in the peri-adolescent PLC. Together, these results suggest dopamine receptor functionality in the PLC increases during adolescent development and it plays an important role in this late-maturating form of plasticity.
最近在大鼠中的研究表明,腹侧海马体中的高频刺激(HFS)会在中青春期早期到中期前额叶皮层(mPFC)的深层诱导长时程抑郁(LTD),但前提是前额叶 GABA 系统已经充分发育。目前尚不清楚这种 LTD 是否特定于海马体-mPFC 回路,或者是否是发育中的 mPFC 神经网络的内在调节机制。这种 HFS 诱导的 LTD 的潜在机制也在很大程度上未知。在当前的研究中,在青春期或成年早期,将天真的雄性 Sprague Dawley 大鼠处死,进行体外细胞外记录,以确定 PLC 中的 HFS 是否会以年龄依赖性的方式诱导 LTD,以及多巴胺受体是否参与这种 LTD 的表达。我们发现,在成年大鼠中,50Hz 的 4 次刺激可诱导 PFC 产生 LTD,但在青春期大鼠中则不能。这种 LTD 需要完整的 GABA 受体功能,并且可以被多巴胺 D 或 D 受体拮抗剂阻断。多巴胺 D 或 D 受体选择性激动剂的浴应用分别产生了场电位的显著易化或抑制,并且这些效应仅在成年 PLC 中观察到。此外,HFS 之前的 D 或 D 刺激均不能促进青春期 PLC 中的 LTD。综上所述,这些结果表明,多巴胺受体在 PLC 中的功能在青春期发育过程中增加,并且在这种后期成熟的可塑性中发挥重要作用。