Whitman Mary C, Fan Wen, Rela Lorena, Rodriguez-Gil Diego J, Greer Charles A
Yale University School of Medicine, Department of Neurobiology, New Haven, Connecticut 06511, USA.
J Comp Neurol. 2009 Sep 10;516(2):94-104. doi: 10.1002/cne.22093.
In adult mice, new neurons born in the subventricular zone (SVZ), lining the lateral ventricles, migrate tangentially into the olfactory bulb along a well-delineated path, the rostral migratory stream (RMS). Neuroblasts in the RMS migrate tangentially in chains, without a recognized migratory scaffold. Here we quantitatively examine the distribution of, and relationships between, cells within the RMS, throughout its rostral-caudal extent. We show that there is a higher density of blood vessels in the RMS than in other brain regions, including areas with equal cell density, and that the orientation of blood vessels parallels the RMS throughout the caudal to rostral path. Of particular interest, migratory neuroblast chains are longitudinally aligned along blood vessels within the RMS, with over 80% of vessel length in rostral areas of the RMS apposed by neuroblasts. Electron micrographs show direct contact between endothelial cells and neuroblasts, although intervening astrocytic processes are often present. Within the RMS, astrocytes arborize extensively, extending long processes that are parallel to blood vessels and the direction of neuroblast migration. Thus, the astrocytic processes establish a longitudinal alignment within the RMS, rather than a more typical stellate shape. This complementary alignment suggests that blood vessels and astrocytes may cooperatively establish a scaffold for migrating neuroblasts, as well as provide and regulate migratory cues.
在成年小鼠中,侧脑室壁下室管膜区(SVZ)产生的新神经元沿着一条明确的路径——吻侧迁移流(RMS),切向迁移至嗅球。RMS中的神经母细胞呈链状切向迁移,没有公认的迁移支架。在这里,我们定量研究了RMS中细胞在其吻尾全长范围内的分布及相互关系。我们发现,RMS中的血管密度高于其他脑区,包括细胞密度相同的区域,并且血管的走向在从尾到吻的路径上与RMS平行。特别有趣的是,迁移的神经母细胞链沿着RMS内的血管纵向排列,在RMS吻侧区域超过80%的血管长度与神经母细胞相邻。电子显微镜照片显示内皮细胞与神经母细胞直接接触,不过其间常常存在星形胶质细胞突起。在RMS内,星形胶质细胞广泛分支,伸出与血管及神经母细胞迁移方向平行的长突起。因此,星形胶质细胞突起在RMS内形成纵向排列,而非更典型的星状形态。这种互补排列表明,血管和星形胶质细胞可能协同为迁移的神经母细胞建立一个支架,并提供和调节迁移线索。