Zhang Rui Lan, LeTourneau Yvonne, Gregg Sara R, Wang Ying, Toh Yier, Robin Adam M, Zhang Zheng Gang, Chopp Michael
Neurology Department, Henry Ford Health Sciences Center, Detroit, Michigan 48202, USA.
J Neurosci. 2007 Mar 21;27(12):3157-62. doi: 10.1523/JNEUROSCI.4969-06.2007.
Ischemic stroke induces neurogenesis in the subventricular zone (SVZ), and newly generated neurons in the SVZ migrate toward the ischemic boundary. However, the characteristics of migrating SVZ cells have not been investigated after stroke. Using time-lapse imaging in both SVZ cells and organotypic brain slice cultures, we measured the dynamics of SVZ cell division and migration of adult rats subjected to stroke. In normal brain slices, SVZ cells primarily migrated dorsally and ventrally along the lateral ventricular surface. However, in stroke brain slices, SVZ cells migrated laterally toward the striatal ischemic boundary. Cultured stroke-derived SVZ cells exhibited a significant (p < 0.01) increase in the migration distance (212 +/- 21 microm) compared with the nonstroke-derived SVZ cells (97 +/- 12 microm). Migrating stroke-derived SVZ cells spent significantly (p = 0.01) less time in cytokinesis (0.63 +/- 0.04 h) compared with the time (1.09 +/- 0.09 h) for nonstroke-derived SVZ cells. Newborn cells with a single leading process exhibited fast migration (7.2 +/- 0.8 microm/h), and cells with multiple processes showed stationary migration (3.6 +/- 0.8 microm/h). Stroke SVZ daughter cells further divided during their migration. The morphology of doublecortin (DCX)-positive cells in fixed brain sections resembled those observed in cultured newborn cells, and the DCX-positive cells proliferated in the ischemic striatum. Collectively, the present study suggests that stroke promotes cytokinesis of migrating neuroblasts, and these cells migrate toward the ischemic striatum with distinct migratory behaviors and retain the capacity for cell division during migration.
缺血性中风可诱导脑室下区(SVZ)发生神经发生,SVZ中新生成的神经元会向缺血边界迁移。然而,中风后SVZ迁移细胞的特征尚未得到研究。通过对SVZ细胞和脑片培养物进行延时成像,我们测量了成年中风大鼠SVZ细胞分裂和迁移的动态过程。在正常脑片中,SVZ细胞主要沿侧脑室表面背侧和腹侧迁移。然而,在中风脑片中,SVZ细胞向外侧迁移至纹状体缺血边界。与非中风来源的SVZ细胞(97±12微米)相比,培养的中风来源的SVZ细胞迁移距离显著增加(212±21微米,p<0.01)。与非中风来源的SVZ细胞的胞质分裂时间(1.09±0.09小时)相比,迁移的中风来源的SVZ细胞在胞质分裂上花费的时间显著减少(0.63±0.04小时,p = 0.01)。具有单个领先突起的新生细胞表现出快速迁移(7.2±0.8微米/小时),而具有多个突起的细胞则表现出静止迁移(3.6±0.8微米/小时)。中风SVZ子代细胞在迁移过程中进一步分裂。固定脑切片中双皮质素(DCX)阳性细胞的形态与培养的新生细胞中观察到的相似,且DCX阳性细胞在缺血纹状体中增殖。总体而言,本研究表明中风促进迁移神经母细胞的胞质分裂,这些细胞以不同的迁移行为向缺血纹状体迁移,并在迁移过程中保留细胞分裂能力。