Lemtiri-Chlieh Fouad, Levine Eric S
Department of Neuroscience, University of Connecticut Health Center, Farmington, CT 06030, USA.
J Neurophysiol. 2007 Nov;98(5):2517-24. doi: 10.1152/jn.00817.2007. Epub 2007 Sep 19.
In layer 2/3 of neocortex, brief trains of action potentials in pyramidal neurons (PNs) induce the mobilization of endogenous cannabinoids (eCBs), resulting in a depression of GABA release from the terminals of inhibitory interneurons (INs). This depolarization-induced suppression of inhibition (DSI) is mediated by activation of the type 1 cannabinoid receptor (CB1) on presynaptic terminals of a subset of INs. However, it is not clear whether CB1 receptors are also expressed at synapses between INs, and whether INs can release eCBs in response to depolarization. In the present studies, brain slices containing somatosensory cortex were prepared from 14- to 21-day-old CD-1 mice. Whole cell recordings were obtained from layer 2/3 PNs and from INs classified as regular spiking nonpyramidal, irregular spiking, or fast spiking. For all three classes of INs, the cannabinoid agonist WIN55,212-2 suppressed inhibitory synaptic activity, similar to the effect seen in PNs. In addition, trains of action potentials in PNs resulted in significant DSI. In INs, however, DSI was not seen in any cell type, even with prolonged high-frequency spike trains that produced calcium increases comparable to that seen with DSI induction in PNs. In addition, blocking eCB reuptake with AM404, which enhanced DSI in PNs, failed to unmask any DSI in INs. Thus the lack of DSI in INs does not appear to be due to an insufficient increase in intracellular calcium or enhanced reuptake. These results suggest that layer 2/3 INs receive CB1-expressing inhibitory inputs, but that eCBs are not released by these INs.
在新皮层的第2/3层,锥体神经元(PNs)中短暂的动作电位串可诱导内源性大麻素(eCBs)的释放,导致抑制性中间神经元(INs)末梢的γ-氨基丁酸(GABA)释放减少。这种去极化诱导的抑制作用(DSI)是由一部分INs突触前末梢上的1型大麻素受体(CB1)激活介导的。然而,目前尚不清楚CB1受体是否也表达于INs之间的突触,以及INs是否能响应去极化而释放eCBs。在本研究中,从14至21日龄的CD-1小鼠制备了包含体感皮层的脑片。从第2/3层PNs以及分类为规则发放非锥体、不规则发放或快速发放的INs中进行全细胞记录。对于所有这三类INs,大麻素激动剂WIN55,212-2均可抑制抑制性突触活动,这与在PNs中观察到的效应相似。此外,PNs中的动作电位串可导致显著的DSI。然而,在INs中,任何细胞类型均未观察到DSI,即使给予长时间的高频尖峰串,其产生的钙增加与PNs中诱导DSI时相当。此外,用AM404阻断eCB再摄取(这增强了PNs中的DSI)未能在INs中揭示任何DSI。因此,INs中缺乏DSI似乎并非由于细胞内钙增加不足或再摄取增强所致。这些结果表明,第2/3层INs接受表达CB1的抑制性输入,但这些INs不会释放eCBs。