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Tbr2-expressing intermediate progenitor cells in the adult mouse hippocampus are unipotent neuronal precursors with limited amplification capacity under homeostasis 被引量:2
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作者 Daniel A. Berg , Ki-Jun Yoon +5 位作者 Brett Will Alex Y. Xiao Nam-Shik Kim Kimberly M. Christian Hongjun Song Guo-li Ming 《Frontiers in Biology》 CAS CSCD 2015年第3期262-271,共10页
Neurogenesis persists in two locations of the adult mammalian brain, the subventricular zone of the lateral ventricles and the subgranular zone of the dentate gyrus in the hippocampus. In the adult subgranular zone, r... Neurogenesis persists in two locations of the adult mammalian brain, the subventricular zone of the lateral ventricles and the subgranular zone of the dentate gyrus in the hippocampus. In the adult subgranular zone, radial glial- like cells (RGLs) are multipotent stem cells that can give rise to both astrocytes and neurons. In the process of generating neurons, RGLs divide asymmetrically to give rise to one RGL and one intermediate progenitor cell (IPC). IPCs are considered to be a population of transit amplifying cells that proliferate and eventually give rise to mature granule neurons. The properties of individual IPCs at the clonai level are not well understood. Furthermore, it is not clear whether IPCs can generate astrocytes or revert back to RGLs, besides generating neurons. Here we developed a genetic marking strategy for clonal analysis and lineage-tracing of individual Tbr2-expressing IPCs in the adult hippocampus in vivo using Tbr2-CreERT2 mice. Using this technique we identified Tbr2-CreERT2 labeled IPCs as unipotent neuronal precursors that do not generate astrocytes or RGLs under homeostasis. Additionally, we showed that these labeled IPCs rapidly generate immature neurons in a synchronous manner and do not undergo a significant amount of amplification under homeostasis, in animals subjected to an enriched environment/running, or in animals with different age. In summary, our study suggests that Tbr2-expressing IPCs in the adult mouse hippocampus are unipotent precursors and rapidly give rise to immature neurons without major amplification. 展开更多
关键词 adult neurogenesis tbr2 clonal analysis lineage tracing enriched environment
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莫诺苷对大鼠脑缺血再灌注皮层Wnt信号通路转录因子表达的影响 被引量:11
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作者 艾厚喜 孙芳玲 +2 位作者 侯虹丽 张丽 王文 《中国康复理论与实践》 CSCD 北大核心 2015年第1期1-4,共4页
目的研究莫诺苷对脑缺血再灌注7 d患侧皮层Wnt信号通路相关转录因子神经发生素2(Ngn2)、Pax6、Tbr2表达的影响。方法健康成年雄性Sprague-Dawley大鼠随机分为假手术组,模型组,莫诺苷小、中、大剂量组,每组3只。线栓法制备大鼠大脑中动... 目的研究莫诺苷对脑缺血再灌注7 d患侧皮层Wnt信号通路相关转录因子神经发生素2(Ngn2)、Pax6、Tbr2表达的影响。方法健康成年雄性Sprague-Dawley大鼠随机分为假手术组,模型组,莫诺苷小、中、大剂量组,每组3只。线栓法制备大鼠大脑中动脉阻塞模型,造模后3 h予莫诺苷30 mg/kg、90 mg/kg、270 mg/kg每天1次灌胃。Western blotting法分析术后7 d皮层Ngn2、Pax6、Tbr2的表达。结果与假手术组相比,模型组皮层Ngn2表达升高(P<0.05);与模型组相比,莫诺苷中、高剂量组Ngn2表达明显升高(P<0.01)。模型组皮层Pax6的表达与假手术组无显著性差异,莫诺苷中、高剂量组Pax6表达升高(P<0.05)。各组间Tbr2的表达无显著性差异。结论莫诺苷能增加脑缺血再灌注后皮层Ngn2、Pax6的表达,提示有促进神经发生的作用。 展开更多
关键词 莫诺苷 脑缺血再灌注 转录因子 WNT信号通路 神经发生素2 PAX6 tbr2 大鼠
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