Castro-Alamancos Manuel A, Favero Morgana
Department of Neurobiology and Anatomy, Drexel University College of Medicine, Philadelphia, Pennsylvania.
J Neurophysiol. 2015 Jun 1;113(10):3816-26. doi: 10.1152/jn.00090.2015. Epub 2015 Apr 15.
During behavioral quiescence the neocortex generates spontaneous slow oscillations that consist of Up and Down states. Up states are short epochs of persistent activity, but their underlying source is unclear. In neocortex slices of adult mice, we monitored several cellular and network variables during the transition between a traditional buffer, which does not cause Up states, and a lower-divalent cation buffer, which leads to the generation of Up states. We found that the resting membrane potential and input resistance of cortical cells did not change with the development of Up states. The synaptic efficacy of excitatory postsynaptic potentials mediated by non-NMDA receptors was slightly reduced, but this is unlikely to facilitate the generation of Up states. On the other hand, we identified two variables that are associated with the generation of Up states: an enhancement of the intrinsic firing excitability of cortical cells and an enhancement of NMDA-mediated responses evoked by electrical or optogenetic stimulation. The fact that blocking NMDA receptors abolishes Up states indicates that the enhancement in intrinsic firing excitability alone is insufficient to generate Up states. NMDA receptors have a crucial role in the generation of Up states in neocortex slices.
在行为静止期间,新皮层会产生由上行和下行状态组成的自发慢振荡。上行状态是持续活动的短暂时期,但其潜在来源尚不清楚。在成年小鼠的新皮层切片中,我们在不引起上行状态的传统缓冲液和导致上行状态产生的低二价阳离子缓冲液之间的转换过程中,监测了几个细胞和网络变量。我们发现,随着上行状态的发展,皮层细胞的静息膜电位和输入电阻没有变化。由非NMDA受体介导的兴奋性突触后电位的突触效能略有降低,但这不太可能促进上行状态的产生。另一方面,我们确定了两个与上行状态产生相关的变量:皮层细胞内在放电兴奋性的增强以及电刺激或光遗传学刺激诱发的NMDA介导反应的增强。阻断NMDA受体会消除上行状态,这一事实表明,仅内在放电兴奋性的增强不足以产生上行状态。NMDA受体在新皮层切片上行状态的产生中起关键作用。