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在发育中的哺乳动物大脑新皮层的最外层,兴奋性神经元和抑制性神经元都会短暂地形成簇。

Both excitatory and inhibitory neurons transiently form clusters at the outermost region of the developing mammalian cerebral neocortex.

机构信息

Department of Anatomy, Keio University School of Medicine, Tokyo, Japan.

Inserm, Stem Cell and Brain Research Institute U1208, Université de Lyon, Université Claude Bernard Lyon 1, Bron, France.

出版信息

J Comp Neurol. 2019 Jul 1;527(10):1577-1597. doi: 10.1002/cne.24634. Epub 2019 Feb 5.

DOI:10.1002/cne.24634
PMID:30636008
Abstract

During development of the mammalian cerebral neocortex, postmitotic excitatory neurons migrate toward the outermost region of the neocortex. We previously reported that this outermost region is composed of densely packed relatively immature neurons; we named this region, which is observed during the late stage of mouse neocortical development, the "primitive cortical zone (PCZ)." Here, we report that postmigratory immature neurons spend about 1-1.5 days in the PCZ. An electron microscopic analysis showed that the neurons in the PCZ tend to be in direct contact with each other, mostly in a radial direction, forming "primitive neuronal clusters" with a height of 3-7 cells and a width of 1-2 cells. A time-course analysis of fluorescently labeled neurons revealed that the neurons took their positions within the primitive clusters in an inside-out manner. The neurons initially participated in the superficial part of the clusters, gradually shifted their relative positions downward, and then left the clusters at the bottom of this structure. GABAergic inhibitory interneurons were also found within the primitive clusters in the developing mouse neocortex, suggesting that some clusters are composed of both excitatory neurons and inhibitory interneurons. Similar clusters were also observed in the outermost region of embryonic day (E) 78 cynomolgus monkey occipital cortex and 23 gestational week (GW) human neocortices. In the primate neocortices, including human, the presumptive primitive clusters seemed to expand in the radial direction more than that observed in mice, which might contribute to the functional integrity of the primate neocortex.

摘要

在哺乳动物大脑新皮层的发育过程中,有丝分裂后的兴奋性神经元向新皮层的最外层迁移。我们之前曾报道过,最外层是由密集排列的相对不成熟的神经元组成的;我们将这个在小鼠新皮层发育后期观察到的区域命名为“原始皮质区(PCZ)”。在这里,我们报告说,迁移后的未成熟神经元在 PCZ 中大约需要 1-1.5 天的时间。电子显微镜分析显示,PCZ 中的神经元倾向于彼此直接接触,主要呈放射状,形成高度为 3-7 个细胞、宽度为 1-2 个细胞的“原始神经元簇”。对荧光标记神经元的时间进程分析表明,神经元以从内到外的方式在原始簇中定位。神经元最初参与簇的浅层部分,逐渐向下移动其相对位置,然后从该结构的底部离开簇。在发育中的小鼠新皮层的原始簇中也发现了 GABA 能抑制性中间神经元,表明一些簇由兴奋性神经元和抑制性中间神经元组成。在食蟹猴胚胎期(E)78 天的枕叶皮质和 23 个孕龄周(GW)人类新皮层的最外层区域也观察到了类似的簇。在灵长类新皮层中,包括人类,假定的原始簇似乎在径向方向上比在小鼠中扩张得更多,这可能有助于灵长类新皮层的功能完整性。

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