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Newborn granule cells in the ageing dentate gyrus

机译:衰老的齿状回中的新生颗粒细胞

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摘要

The dentate gyrus of the hippocampus generates neurons throughout life, but adult neurogenesis exhibits a marked age-dependent decline. Although the decrease in the rate of neurogenesis has been extensively documented in the ageing hippocampus, the specific characteristics of dentate granule cells born in such a continuously changing environment have received little attention. We have used retroviral labelling of neural progenitor cells of the adult mouse dentate gyrus to study morphological properties of neurons born at different ages. Dendritic spine density was measured to estimate glutamatergic afferent connectivity. Fully mature neurons born at the age of 2 months display ∼2.3 spines μm−1 and maintain their overall morphology and spine density in 1-year-old mice. Surprisingly, granule cells born in 10-month-old mice, at which time the rate of neurogenesis has decreased by ∼40-fold, reach a density of dendritic spines similar to that of neurons born in young adulthood. Therefore, in spite of the sharp decline in cell proliferation, differentiation and overall neuronal number, the ageing hippocampus presents a suitable environment for new surviving neurons to reach a high level of complexity, comparable to that of all other dentate granule cells.
机译:海马的齿状回在整个生命中产生神经元,但是成年神经发生表现出明显的年龄依赖性下降。尽管在衰老的海马中已广泛记录了神经发生速率的降低,但是在这种不断变化的环境中出生的齿状颗粒细胞的特定特征却鲜为人知。我们已经使用成年小鼠齿状回的神经祖细胞的逆转录病毒标记来研究不同年龄出生的神经元的形态学特性。测量树突棘密度以估计谷氨酸能传入连接。 2个月大时出生的完全成熟的神经元显示约2.3根μm -1 棘,并在1岁的小鼠中保持其整体形态和脊柱密度。出乎意料的是,在10个月大的小鼠中出生的颗粒细胞,此时神经发生率已降低了约40倍,达到了与成年后出生的神经元相似的树突棘密度。因此,尽管细胞增殖,分化和神经元总数急剧下降,但海马衰老为新的存活神经元提供了一个合适的环境,使其可以达到与所有其他齿状颗粒细胞相当的高度复杂性。

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