Bovetti Serena, Hsieh Yi-Chun, Bovolin Patrizia, Perroteau Isabelle, Kazunori Toida, Puche Adam C
Department of Human and Animal Biology, University of Torino, 10123 Torino, Italy.
J Neurosci. 2007 May 30;27(22):5976-80. doi: 10.1523/JNEUROSCI.0678-07.2007.
New cells are continuously added to the rodent olfactory bulb (OB), throughout development and in adults. These cells migrate tangentially from the subventricular zone along the rostral migratory stream to the OB, where they migrate radically from the center to periphery of the OB. Although different modalities of radial migration have been described in other brain regions, the mechanisms governing radial migration in the OB are still mostly unknown. Here, we identify a new modality of migration in which neuronal precursors migrate along blood vessels toward their destination. Our results show that half of the radially migrating cells associate with the vasculature in the granule cell layer of the OB, and in vivo time-lapse imaging demonstrates that they use blood vessels as a scaffold for their migration through an interaction with the extracellular matrix and perivascular astrocyte end feet. The present data provide evidence that a new modality of migration, vasophilic migration, is occurring in the adult brain and reveals a novel role of brain vasculature.
在整个发育过程以及成年期,新细胞持续添加到啮齿动物的嗅球(OB)中。这些细胞从脑室下区沿吻侧迁移流切向迁移至OB,在OB中它们从中心向OB的外周进行放射状迁移。尽管在其他脑区已描述了不同形式的放射状迁移,但OB中调控放射状迁移的机制仍大多未知。在此,我们确定了一种新的迁移形式,即神经元前体细胞沿着血管向其目的地迁移。我们的结果表明,一半的放射状迁移细胞与OB颗粒细胞层中的脉管系统相关联,并且体内延时成像显示,它们通过与细胞外基质和血管周围星形胶质细胞终足的相互作用,将血管用作其迁移的支架。目前的数据提供了证据,表明一种新的迁移形式——嗜血管迁移,正在成年大脑中发生,并揭示了脑脉管系统的一种新作用。