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大鼠初级体感皮层中皮质丘脑投射神经元的反复轴突侧支有助于兴奋性和抑制性反馈回路。

Recurrent axon collaterals of corticothalamic projection neurons in rat primary somatosensory cortex contribute to excitatory and inhibitory feedback-loops.

作者信息

Staiger J F, Zilles K, Freund T F

机构信息

Institute for Experimental Medicine, Hungarian Academy of Science, Budapest, Hungary.

出版信息

Anat Embryol (Berl). 1996 Dec;194(6):533-43. doi: 10.1007/BF00187467.

Abstract

Intrinsic circuitry within the primary somatosensory cortex of the rat was examined in a combined light and electron microscope study. Corticothalamic projection neurons were retrogradely labeled by applying Phaseolus vulgaris leucoagglutinin (PHA-L) into the ventro-posteromedial thalamic nucleus (VPM). Most labeled neurons were pyramidal cells of layer VI. Postsynaptic targets of recurrent axon collaterals originating from these neurons were assessed in layers IV and V. Single labeled cells, complete with recurrent collaterals, could be isolated in "barrels" in which no anterograde transport had taken place. These findings were confirmed by first eliminating thalamocortical projections from the VPM with kainic acid and then applying PHA-L into the same nucleus. This procedure led to selective retrograde accumulation of tracer in layer VI pyramidal cells. Reconstructed portions of labeled axonal trees reached layer IV, bringing numerous boutons to layers IV, V and VI. The boutons had characteristic drumstick-like shapes. In order to identify postsynaptic targets, 4 sections of axons stemming from 3 neurons were reembedded and serially sectioned for electron microscopy. The ultrastructure of 72 asymmetric synapses, all belonging to identified collaterals, was analysed. Of the 72 terminals, 44 (59.5%) ended on dendritic spines and 30 on shafts of dendrites (40.5%). Perikarya were not among the targets. In a subset of the sample, the nature of the target neurons was examined by postembedding immunohistochemistry for gamma-amino butyric acid (GABA) after staining for PHA-L. A total of 42 labeled terminals was found in layers IV and V; 23 (55%) were located on GABA-negative spines and 19 (45%) on dendritic shafts. Only 6 (32%) of the shafts were GABA-positive. The remaining ones were either clearly GABA-negative, or labeled only at background levels (n = 13; 68%). The results show that most synapses of corticothalamic projection neurons found in layers IV and V terminate on spines and shafts of GABA-negative dendrites. This finding suggests that such recurrent collaterals are involved in both excitatory and inhibitory feedback mechanisms.

摘要

在一项结合了光学显微镜和电子显微镜的研究中,对大鼠初级体感皮层内的内在神经回路进行了检查。通过将菜豆白细胞凝集素(PHA-L)注入腹后内侧丘脑核(VPM),对皮质丘脑投射神经元进行逆行标记。大多数标记神经元是VI层的锥体细胞。对源自这些神经元的回返轴突侧支的突触后靶点在IV层和V层进行了评估。在没有发生顺行运输的“桶状结构”中,可以分离出带有回返侧支的单个标记细胞。通过先用 kainic 酸消除来自VPM的丘脑皮质投射,然后将PHA-L注入同一核中,证实了这些发现。该程序导致示踪剂在VI层锥体细胞中选择性逆行积累。标记轴突树的重建部分到达IV层,为IV层、V层和VI层带来了大量的轴突终扣。这些终扣具有特征性的鼓槌状形状。为了识别突触后靶点,对来自3个神经元的轴突的4个切片进行重新包埋并进行连续切片用于电子显微镜检查。分析了72个不对称突触的超微结构,所有这些突触都属于已识别的侧支。在这72个终末中,44个(59.5%)终止于树突棘,30个终止于树突干(40.5%)。胞体不在靶点之中。在样本的一个子集中,在对PHA-L进行染色后,通过包埋后免疫组织化学检测γ-氨基丁酸(GABA)来检查靶点神经元的性质。在IV层和V层共发现42个标记终末;23个(55%)位于GABA阴性的棘上,19个(45%)位于树突干上。树突干中只有6个(32%)是GABA阳性的。其余的要么明显是GABA阴性,要么仅在背景水平标记(n = 13;68%)。结果表明,在IV层和V层发现的皮质丘脑投射神经元的大多数突触终止于GABA阴性树突的棘和干上。这一发现表明,这种回返侧支参与了兴奋性和抑制性反馈机制。

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