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Heterogeneous Expression of SDF1 Retains Actively Proliferating Neural Progenitors in the Capillary Compartment of the Niche

机译:SDF1的异质表达保留了利基的毛细管室中的积极增殖神经祖细胞

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摘要

Summary: The vascular compartment of the adult brain ventricular-subventricular zone (V-SVZ) is a critical regulator of neural stem cell and progenitor function. Blood enters the V-SVZ via arteries and arterioles to capillaries that then connect with venules and veins to return blood to the heart. We found that stromal cell-derived factor 1 (SDF1) is expressed by a subpopulation of V-SVZ vessels, the capillaries, and that actively proliferating neural stem cells (NSCs) and progenitors are preferentially associated with these SDF1-positive vessels. In contrast, slowly dividing or quiescent NSCs are most prevalent near SDF1-negative vessels. By conditional knockout, we found that loss of SDF1 signaling in NSCs stimulates lineage progression and NSC displacement from the vessel niche. With aging, SDF1/CXCR4 signaling is dysregulated, coincident with reduced proliferation and increased displacement of dividing cells from the vasculature. Our findings demonstrate SDF1-based vascular heterogeneity in the niche and suggest that reduced SDF1 signaling contributes to age-related declines in adult neurogenesis. : The vascular compartment of the adult neurogenic niche is a major regulatory hub for neural stem cells. Here, Kokovay and colleagues show that the chemokine SDF1 is expressed by a subset of the blood vessels within the niche associated with proliferating progenitors. Knockdown of the SDF1 receptor leads to aberrant lineage progression. Keywords: neural stem cells, SDF1, CXCL14, CXCR4, blood vessels, vasculature, niche
机译:发明内容:成人脑室内脑室区(V-SVZ)的血管室是神经干细胞和祖函数的关键调节因子。血液通过动脉和动脉进入V-SVZ,然后与毛细血管进入毛细血管,然后用Visules和静脉连接以将血液返回到心脏上。我们发现,基质细胞衍生因子1(SDF1)由V-SVZ血管,毛细血管的亚群表达,并且主动增殖神经干细胞(NSCs)和祖细胞优先与这些SDF1阳性血管相关。相反,慢慢划分或静态NSC在SDF1阴性容器附近最普遍。通过条件淘汰,我们发现NSCs中SDF1信号传导的损失刺激了血管利基的血管进展和NSC位移。随着衰老的情况下,SDF1 / CXCR4信号传导具有失调的,与降低的增殖和增加分割细胞从脉管系统的移位的重合重合。我们的研究结果表明了基于ICHE的SDF1的血管异质性,并表明SDF1信号传导减少有助于成年神经发生的年龄相关的下降。 :成年神经源性利基的血管室是神经干细胞的主要调节枢纽。在这里,Kokovay和同事表明,趋化因子SDF1由与增殖祖细胞相关的利基内的血管的子集表达。 SDF1受体的敲低导致异常的谱系进展。关键词:神经干细胞,SDF1,CXCL14,CXCR4,血管,脉管系统,利基

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