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新生小鼠桶状皮质中的功能性γ-氨基丁酸能突触连接

Functional GABAergic synaptic connection in neonatal mouse barrel cortex.

作者信息

Agmon A, Hollrigel G, O'Dowd D K

机构信息

Department of Anatomy, University of California, Irvine 92717, USA.

出版信息

J Neurosci. 1996 Aug 1;16(15):4684-95. doi: 10.1523/JNEUROSCI.16-15-04684.1996.

Abstract

Intracortical inhibition is crucial to proper functioning of the mature neocortex, yet, paradoxically, is reported to be rare or absent in the neonatal animal. We reexamined this issue by recording whole-cell postsynaptic currents (PSCs) of barrel cortex neurons in thalamocortical brain slices from neonatal mice. Monosynaptic, excitatory thalamocortical responses were elicited in layers V/VI neurons as early as postnatal day 0 (P0, the first 24 hr after birth) and in presumptive layer IV as early as P2. At very low stimulation frequencies, the monosynaptic response was invariably followed by a prolonged (up to 1 sec) synaptic barrage, which fatigued at stimulus repetition rates of 2/min or higher. This barrage consisted of postsynaptic responses to spiking activity in neighboring cortical cells, because (1) it could also be evoked by intracortical stimulation in coronal slices and (2) it was abolished by antagonists to NMDA receptors (NMDARs), even when NMDARs on the recorded cell were under a voltage-dependent block. Some of the larger polysynaptic events changed polarity at a negative reversal potential and were blocked by GABAA receptor (GABAAR) antagonists, with a concurrent enhancement of the extracellular field potential, indicating that they were GABAAR- mediated, CI-dependent inhibitory PSCs (IPSCs). We conclude that a network of functional intracortical GABAAR-mediated synaptic connections exists from the earliest postnatal ages, although it gives rise to responses that differ from mature IPSCs in reversal potential and latency.

摘要

皮质内抑制对于成熟新皮质的正常功能至关重要,然而,矛盾的是,据报道在新生动物中这种抑制很少见或不存在。我们通过记录新生小鼠丘脑皮质脑片桶状皮质神经元的全细胞突触后电流(PSC)重新审视了这个问题。早在出生后第0天(P0,出生后的头24小时),V/VI层神经元就可引发单突触兴奋性丘脑皮质反应,早在P2时,在假定的IV层也可引发。在非常低的刺激频率下,单突触反应总是会跟随一个持续时间较长(长达1秒)的突触爆发,当刺激重复频率为2次/分钟或更高时,该爆发会疲劳。这个爆发由对相邻皮质细胞中动作电位活动的突触后反应组成,因为(1)它也可以由冠状切片中的皮质内刺激诱发,并且(2)即使记录细胞上的NMDA受体处于电压依赖性阻断状态,它也会被NMDA受体(NMDAR)拮抗剂消除。一些较大的多突触事件在负反转电位时改变极性,并被GABAA受体(GABAAR)拮抗剂阻断,同时细胞外场电位增强,表明它们是GABAAR介导的、Cl-依赖性抑制性PSC(IPSC)。我们得出结论,从出生后最早的年龄起就存在功能性皮质内GABAAR介导的突触连接网络,尽管它产生的反应在反转电位和潜伏期方面与成熟的IPSC不同。

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