Hypoxic-ischemic injury stimulates subventricular zone proliferation and neurogenesis in the neonatal rat

被引:127
作者
Ong, J
Plane, JM
Parent, JM
Silverstein, FS
机构
[1] Univ Michigan, Dept Pediat, Ann Arbor, MI 48109 USA
[2] Univ Michigan, Dept Neurol, Ann Arbor, MI 48109 USA
关键词
D O I
10.1203/01.PDR.0000179381.86809.02
中图分类号
R72 [儿科学];
学科分类号
100202 ;
摘要
Neurogenesis persists throughout life in the rodent subventricular zone (SVZ) and increases in the adult after brain injury. In this study, postnatal day 7 (P7) rats underwent right carotid artery ligation followed by 8% O-2 exposure for 90 min, a lesioning protocol that resulted in ipsilateral forebrain hypoxic-ischemic (HI) injury. The effects of HI injury on SVZ cell proliferation and neurogenesis were examined 1-3 wk later by morphometric measurement of dorsolateral SVZ size; by immunoassays to detect incorporation of bromodeoxyuridine (BrdU) in proliferating cells; and by immunoassays of doublecortin, a microtubule-associated protein expressed only by immature neurons. For determining the cell phenotypes of newly generated cells, tissue sections were double labeled with antibodies to BrdU and markers of mature neurons (neuronal nuclear protein), astrocytes (glial fibrillary acidic protein), or oligodendroglia (RIP). HI injury resulted in enlargement of the ipsilateral SVZ at P14-28 and a corresponding increase in BrdU cell numbers both in the ipsilateral SVZ and striatum at P21. HI injury also stimulated SVZ neurogenesis, based on increased doublecortin immunostaining in the SVZ ipsilateral to lesioning at P14-28. However, 4 wk after HI injury, in the lesioned striatum, although BrdU/glial fibrillary acidic protein and BrdU/RIP-labeled cells were identified, no BrdU/neuronal nuclear protein double-labeled cells were found. These results suggest that although acute neonatal HI injury stimulates SVZ proliferation and neurogenesis, there is inadequate trophic support for survival of newly generated neurons. Identification of the trophic factors that enhance maturation and survival of immature neurons could provide important clues for improving recovery after neonatal brain injury.
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页码:600 / 606
页数:7
相关论文
共 25 条
[1]   Neuronal replacement from endogenous precursors in the adult brain after stroke [J].
Arvidsson, A ;
Collin, T ;
Kirik, D ;
Kokaia, Z ;
Lindvall, O .
NATURE MEDICINE, 2002, 8 (09) :963-970
[2]   Is it all DNA repair? Methodological considerations for detecting neurogenesis in the adult brain [J].
Cooper-Kuhn, CM ;
Kuhn, HG .
DEVELOPMENTAL BRAIN RESEARCH, 2002, 134 (1-2) :13-21
[3]   Neonatal hypoxia triggers transient apoptosis followed by neurogenesis in the rat CA1 hippocampus [J].
Daval, JL ;
Pourié, G ;
Grojean, S ;
Liévre, V ;
Strazielle, C ;
Blaise, S ;
Vert, P .
PEDIATRIC RESEARCH, 2004, 55 (04) :561-567
[4]   Chronic hypoxia up-regulates fibroblast growth factor ligands in the perinatal brain and induces fibroblast growth factor-responsive radial glial cells in the sub-ependymal zone [J].
Ganat, Y ;
Soni, S ;
Chacon, M ;
Schwartz, ML ;
Vaccarino, FM .
NEUROSCIENCE, 2002, 112 (04) :977-991
[5]   Doublecortin is a microtubule-associated protein and is expressed widely by migrating neurons [J].
Gleeson, JG ;
Lin, PT ;
Flanagan, LA ;
Walsh, CA .
NEURON, 1999, 23 (02) :257-271
[6]   Cerebral cortex lesions decrease the number of bromodeoxyuridine-positive subventricular zone cells in mice [J].
Goings, GE ;
Wibisono, BL ;
Szele, FG .
NEUROSCIENCE LETTERS, 2002, 329 (02) :161-164
[7]   LINEAGE, MIGRATION, AND FATE DETERMINATION OF POSTNATAL SUBVENTRICULAR ZONE CELLS IN THE MAMMALIAN CNS [J].
GOLDMAN, JE .
JOURNAL OF NEURO-ONCOLOGY, 1995, 24 (01) :61-64
[8]   Neurogenesis in dentate subgranular zone and rostral subventricular zone after focal cerebral ischemia in the rat [J].
Jin, KL ;
Minami, M ;
Lan, JQ ;
Mao, XO ;
Batteur, S ;
Simon, RP ;
Greenberg, DA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (08) :4710-4715
[9]   Possible regeneration of rat medial frontal cortex following neonatal frontal lesions [J].
Kolb, B ;
Gibb, R ;
Gorny, G ;
Whishaw, IQ .
BEHAVIOURAL BRAIN RESEARCH, 1998, 91 (1-2) :127-141
[10]  
Kuhn HG, 1997, J NEUROSCI, V17, P5820