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Transient neurogenesis in ischemic cortex from Sox2^(+)astrocytes
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作者 Jia-Lei Yang Hong Fan +10 位作者 Fan-Fan Fu bao-lin guo Ying Huang Li Sun Wen-Ting Wang Jun-Ling Xing Xin-Tian Hu Yu-Qiang Ding Kun Zhang Ying-Zhou Hu Ya-Zhou Wang 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第7期1521-1526,共6页
The adult cortex has long been regarded as non-neurogenic.Whether injury can induce neurogenesis in the adult cortex is still controversial.Here,we report that focal ischemia stimulates a transient wave of local neuro... The adult cortex has long been regarded as non-neurogenic.Whether injury can induce neurogenesis in the adult cortex is still controversial.Here,we report that focal ischemia stimulates a transient wave of local neurogenesis.Using 5′-bromo-2′-deoxyuridine labeling,we demonstrated a rapid generation of doublecortin-positive neuroblasts that died quickly in mouse cerebral cortex following ischemia.Nestin-Cre^(ER)-based cell ablation and fate mapping showed a small contribution of neuroblasts by subventricular zone neural stem cells.Using a mini-photothrombotic ischemia mouse model and retrovirus expressing green fluorescent protein labeling,we observed maturation of locally generated new neurons.Furthermore,fate tracing analyses using PDGFRα-,GFAP-,and Sox2-Cre^(ER) mice showed a transient wave of neuroblast generation in mild ischemic cortex and identified that Sox2-positive astrocytes were the major neurogenic cells in adult cortex.In addition,a similar upregulation of Sox2 and appearance of neuroblasts were observed in the focal ischemic cortex of Macaca mulatta.Our findings demonstrated a transient neurogenic response of Sox2-positive astrocytes in ischemic cortex,which suggests the possibility of inducing neuronal regeneration by amplifying this intrinsic response in the future. 展开更多
关键词 adult ASTROCYTE CORTEX fate-mapping ischemia local neurogenesis neural stem cells SOX2
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XAS Study of Low Dimensional Dilute Magnetic Semiconductors
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作者 bao-lin guo 《功能材料信息》 2016年第4期38-39,共2页
Electrically conducting polymers induce specific cellular responses at the molecular level.One of the crucial limitations of the use of conducting polymers in tissue engineering is their inability to degrade.The incor... Electrically conducting polymers induce specific cellular responses at the molecular level.One of the crucial limitations of the use of conducting polymers in tissue engineering is their inability to degrade.The incorporation of conducting polymers into degradable polymers to obtain materials that are both electroactive and degradable is therefore 展开更多
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