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Proliferation and migration of ependymal cells in the brain of adult rats after permanent focal cerebral ischemia

  • Pengbo Zhang
  • , Yong Liu
  • , Jie Li
  • , Fen Qiu
  • , Xinlin Chen
  • , Qianyan Kang
  • , Tusheng Song
  • , Yihua Qian
  • , Rongliang Xue
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

Abstract

Objective: Ependymal cells are thought to be the primary source of neural stem cells in the adult central nervous system. The purpose of this study is to examine spatial and temporal profiles of ependymal cell proliferation and migration after focal cerebral ischemia. Methods: Eighty male Sprague Dawley rats underwent permanent middle cerebral artery occlusion after injection of 10 μL of 0.2% Dil into the lateral ventricle. Rats were sacrificed and brain sections were acquired for pathological evaluation and laser confocal imaging at day 1,3,7,11,14, 21 and 28 after ischemia. Results: The density of Dil-labeled cells in the ischemic ipsilateral subventricular zone was significantly higher than that in the control group and these labeled cells dispersed in the ischemic ipsilateral subventricular zone and/or were located in ependyma from day 1 to 11. In the ischemic ipsilateral cortex, some Dillabeled cells occurred in peri-infarction and infarction of parietal region at day 14 and peaked at day 21 when some Dillabeled cell nodules were found in this region. During postischemic day 14-28, a significant decrease in labeled cell density in the ischemic ipsilateral subventricular zone was coincident with a significant increase in labeled cells density in the cortex (peri-infarction and infarction). Conclusion: The results indicate that ependymal cells proliferate and migrate after focal cerebral ischemia in the adult rat brain.

Original languageEnglish
Pages (from-to)62-66
Number of pages5
JournalAcademic Journal of Xi'an Jiaotong University
Volume16
Issue number1
StatePublished - May 2004

Keywords

  • Ependymal cells
  • Focal cerebral ischemia
  • Neural stem cells
  • Neurogenesis
  • Subventricular zone

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