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内嗅皮质内侧的结构发育与背腹侧成熟

Structural development and dorsoventral maturation of the medial entorhinal cortex.

作者信息

Ray Saikat, Brecht Michael

机构信息

Bernstein Center for Computational Neuroscience, Humboldt University of Berlin, Berlin, Germany.

出版信息

Elife. 2016 Apr 2;5:e13343. doi: 10.7554/eLife.13343.

Abstract

We investigated the structural development of superficial-layers of medial entorhinal cortex and parasubiculum in rats. The grid-layout and cholinergic-innervation of calbindin-positive pyramidal-cells in layer-2 emerged around birth while reelin-positive stellate-cells were scattered throughout development. Layer-3 and parasubiculum neurons had a transient calbindin-expression, which declined with age. Early postnatally, layer-2 pyramidal but not stellate-cells co-localized with doublecortin - a marker of immature neurons - suggesting delayed functional-maturation of pyramidal-cells. Three observations indicated a dorsal-to-ventral maturation of entorhinal cortex and parasubiculum: (i) calbindin-expression in layer-3 neurons decreased progressively from dorsal-to-ventral, (ii) doublecortin in layer-2 calbindin-positive-patches disappeared dorsally before ventrally, and (iii) wolframin-expression emerged earlier in dorsal than ventral parasubiculum. The early appearance of calbindin-pyramidal-grid-organization in layer-2 suggests that this pattern is instructed by genetic information rather than experience. Superficial-layer-microcircuits mature earlier in dorsal entorhinal cortex, where small spatial-scales are represented. Maturation of ventral-entorhinal-microcircuits - representing larger spatial-scales - follows later around the onset of exploratory behavior.

摘要

我们研究了大鼠内侧内嗅皮层和副海马体浅层的结构发育。出生前后,第2层中钙结合蛋白阳性锥体细胞的网格布局和胆碱能神经支配开始出现,而Reelin阳性星状细胞在整个发育过程中呈分散分布。第3层和副海马体神经元有短暂的钙结合蛋白表达,随年龄增长而下降。出生后早期,第2层锥体细胞而非星状细胞与双皮质素(未成熟神经元的标志物)共定位,提示锥体细胞功能成熟延迟。三项观察结果表明内嗅皮层和副海马体从背侧到腹侧逐渐成熟:(i)第3层神经元中的钙结合蛋白表达从背侧到腹侧逐渐减少;(ii)第2层钙结合蛋白阳性斑块中的双皮质素在背侧比腹侧更早消失;(iii)沃尔弗拉姆蛋白在背侧副海马体中的表达早于腹侧。第2层中钙结合蛋白阳性锥体细胞网格组织的早期出现表明,这种模式是由遗传信息而非经验决定的。浅层微回路在背侧内嗅皮层成熟较早,这里代表较小的空间尺度。代表较大空间尺度的腹侧内嗅微回路在探索行为开始时较晚成熟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0fe/4876644/7780c75a1eaa/elife-13343-fig1.jpg

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