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丘脑皮质轴突与板下神经元之间突触相互作用的超微结构证据。

Ultrastructural evidence for synaptic interactions between thalamocortical axons and subplate neurons.

作者信息

Herrmann K, Antonini A, Shatz C J

机构信息

Department of Molecular and Cell Biology, University of California at Berkeley 94720.

出版信息

Eur J Neurosci. 1994 Nov 1;6(11):1729-42. doi: 10.1111/j.1460-9568.1994.tb00565.x.

Abstract

Thalamic axons are known to accumulate in the subplate for a protracted period prior to invading the cortical plate and contacting their ultimate targets, the neurons of layer 4. We have examined the synaptic contacts made by visual and somatosensory thalamic axons during the transition period in which axons begin to leave the subplate and invade the cortical plate in the ferret. We first determined when geniculocortical axons leave the subplate and begin to grow into layer 4 of the visual cortex by injecting 1,1'-dioctadecyl-3,3,3',3'-tetramethyl indocarbocyanine (Dil) into the lateral geniculate nucleus (LGN). By birth most LGN axons are still confined to the subplate. Over the next 10 days LGN axons grow into layer 4, but many axons retain axonal branches within the subplate. To establish whether thalamic axons make synaptic contacts within the subplate, the anterograde tracer PHA-L was injected into thalamic nuclei of neonatal ferrets between postnatal day 3 and 12 to label thalamic axons at the electron microscope level. The analysis of the PHA-L injections confirmed the Dil data regarding the timing of ingrowth of thalamic axons into the cortical plate. At the electron microscope level, PHA-L-labelled axons were found to form synaptic contacts in the subplate. The thalamic axon terminals were presynaptic primarily to dendritic shafts and dendritic spines. Between postnatal days 12 and 20 labelled synapses were also observed within layer 4 of the cortex. The ultrastructural appearance of the synapses did not differ significantly in the subplate and cortical plate, with regard to type of postsynaptic profiles, length of postsynaptic density or presynaptic terminal size. These observations provide direct evidence that thalamocortical axons make synaptic contacts with subplate neurons, the only cell type within the subplate possessing mature dendrites and dendritic spines; they also suggest that functional interactions between thalamic axons and subplate neurons could play a role in the establishment of appropriate thalamocortical connections.

摘要

已知丘脑轴突在侵入皮质板并接触其最终靶标(第4层神经元)之前,会在亚板中长时间聚集。我们研究了雪貂在轴突开始离开亚板并侵入皮质板的过渡时期,视觉和体感丘脑轴突所形成的突触联系。我们首先通过将1,1'-二辛基-3,3,3',3'-四甲基吲哚羰花青(Dil)注入外侧膝状体核(LGN),来确定膝状体皮质轴突何时离开亚板并开始生长到视觉皮质的第4层。出生时,大多数LGN轴突仍局限于亚板。在接下来的10天里,LGN轴突生长到第4层,但许多轴突在亚板内保留有轴突分支。为了确定丘脑轴突是否在亚板内形成突触联系,在出生后第3天至12天之间,将顺行示踪剂PHA-L注入新生雪貂的丘脑核,以便在电子显微镜水平标记丘脑轴突。对PHA-L注射的分析证实了Dil数据中关于丘脑轴突长入皮质板的时间。在电子显微镜水平上,发现PHA-L标记的轴突在亚板中形成突触联系。丘脑轴突终末主要位于树突干和树突棘的突触前。在出生后第12天至20天之间,在皮质的第4层也观察到标记的突触。就突触后轮廓类型、突触后致密物长度或突触前终末大小而言,亚板和皮质板中突触的超微结构外观没有显著差异。这些观察提供了直接证据,表明丘脑皮质轴突与亚板神经元形成突触联系,亚板内唯一具有成熟树突和树突棘的细胞类型;它们还表明,丘脑轴突与亚板神经元之间的功能相互作用可能在建立适当的丘脑皮质连接中起作用。

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