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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Differential 24 h responsiveness of Prox1-expressing precursor cells in adult hippocampal neurogenesis to physical activity, environmental enrichment, and kainic acid-induced seizures.
【24h】

Differential 24 h responsiveness of Prox1-expressing precursor cells in adult hippocampal neurogenesis to physical activity, environmental enrichment, and kainic acid-induced seizures.

机译:成年海马神经发生中Prox1表达前体细胞对体力活动,环境富集和海藻酸诱导的癫痫发作的24小时反应性差异。

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摘要

Regulation of adult hippocampal neurogenesis in mice responds to behavioral stimuli, including physical activity (RUN) and the exposure to enriched environments (ENR). If studied after days or weeks, these stimuli and the pathological stimulus of kainic acid-induced seizures (KA) show differential effects on different developmental stages of adult neurogenesis. The question thus arose, whether such differential effects would also be apparent under very acute conditions. To further refine our method for identifying key restriction points in adult neurogenesis we here used the first expression of granule cell-specific transcription factor prospero-related homeobox 1 (Prox1) to identify lineage-determined progenitor cells in a nestin-green fluorescent protein (GFP) reporter gene mouse and labeled proliferating precursor cells with bromodeoxyuridine (BrdU). Twenty-four hours after the stimulus adult neurogenesis showed a very similar response to the three paradigms, in that cell proliferation increased. Detailed analysis, however, revealed the following new results: (1) KA, but not RUN and ENR stimulated the division of radial glia-like type-1 cells, (2) KA led to the disappearance of proliferative undetermined progenitor cells (type-2a), (3) only RUN increased proliferation of type-2a cells, (4) ENR and KA, in contrast, acted on lineage-determined progenitor cells (type-2b and type-3) even under acute conditions, and (5) only in the case of KA the short-term stimulus resulted in measurably increased survival of newborn neurons 4 weeks later. These results confirm and specify the idea that in the course of neuronal development in the adult hippocampus, precursor cells acutely sense and distinguish various forms of "activity" differentially and translate these stimuli into defined responses based on their stage of development.
机译:小鼠成年海马神经发生的调节对行为刺激作出反应,包括身体活动(RUN)和暴露于丰富的环境(ENR)。如果在几天或几周后进行研究,这些刺激和海藻酸诱导的癫痫发作(KA)的病理刺激对成人神经发生的不同发育阶段显示出不同的作用。因此产生了这样的问题,即这种差异作用在非常严重的条件下是否也会显现出来。为了进一步完善我们确定成人神经发生关键限制点的方法,我们在这里使用了颗粒细胞特异性转录因子prospero相关同源异型盒1(Prox1)的首次表达来鉴定巢蛋白绿色荧光蛋白(GFP)中谱系确定的祖细胞。 )报告基因小鼠和带有溴脱氧尿苷(BrdU)的标记增殖前体细胞。刺激后24小时,成年神经发生对三种范例的反应非常相似,这是因为细胞增殖增加了。但是,详细的分析显示了以下新结果:(1)KA,但不刺激RUN和ENR刺激放射状胶质样1型细胞的分裂,(2)KA导致未定增殖性祖细胞(- 2a),(3)仅RUN增加2a型细胞的增殖,(4)ENR和KA甚至在急性条件下也作用于谱系决定的祖细胞(2b和3型),和(5仅在KA的情况下,短期刺激可在4周后显着提高新生神经元的存活率。这些结果证实并指明了这样一种想法,即在成年海马的神经元发育过程中,前体细胞能敏锐地感知和区分各种形式的“活性”,并根据它们的发育阶段将这些刺激转化为确定的反应。

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