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Activation of the Notch signaling pathway promotes neurovascular repair after traumatic brain injury
by
Qi-shan Ran Yun-hu Yu Xiao-hong Fu Yuan-chao Wen
in
Angiogenesis
/ Biotechnology
/ Brain injuries
/ Care and treatment
/ Cell adhesion & migration
/ Cellular signal transduction
/ Experiments
/ Laboratory animals
/ nerve regeneration; endothelial progenitor cells; traumatic brain injury; Notch signaling pathway; cell migration; invasion; angiogenesis; jetPEI™ system; neural regeneration
/ Notch
/ Pathogens
/ Plasmids
/ Polyclonal antibodies
/ Rodents
/ Traumatic brain injury
/ 信号通路
/ 内皮祖细胞
/ 创伤性脑损伤
/ 激活
/ 组织修复
/ 血管内皮细胞
/ 迁移能力
2015
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Activation of the Notch signaling pathway promotes neurovascular repair after traumatic brain injury
by
Qi-shan Ran Yun-hu Yu Xiao-hong Fu Yuan-chao Wen
in
Angiogenesis
/ Biotechnology
/ Brain injuries
/ Care and treatment
/ Cell adhesion & migration
/ Cellular signal transduction
/ Experiments
/ Laboratory animals
/ nerve regeneration; endothelial progenitor cells; traumatic brain injury; Notch signaling pathway; cell migration; invasion; angiogenesis; jetPEI™ system; neural regeneration
/ Notch
/ Pathogens
/ Plasmids
/ Polyclonal antibodies
/ Rodents
/ Traumatic brain injury
/ 信号通路
/ 内皮祖细胞
/ 创伤性脑损伤
/ 激活
/ 组织修复
/ 血管内皮细胞
/ 迁移能力
2015
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Activation of the Notch signaling pathway promotes neurovascular repair after traumatic brain injury
by
Qi-shan Ran Yun-hu Yu Xiao-hong Fu Yuan-chao Wen
in
Angiogenesis
/ Biotechnology
/ Brain injuries
/ Care and treatment
/ Cell adhesion & migration
/ Cellular signal transduction
/ Experiments
/ Laboratory animals
/ nerve regeneration; endothelial progenitor cells; traumatic brain injury; Notch signaling pathway; cell migration; invasion; angiogenesis; jetPEI™ system; neural regeneration
/ Notch
/ Pathogens
/ Plasmids
/ Polyclonal antibodies
/ Rodents
/ Traumatic brain injury
/ 信号通路
/ 内皮祖细胞
/ 创伤性脑损伤
/ 激活
/ 组织修复
/ 血管内皮细胞
/ 迁移能力
2015
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Activation of the Notch signaling pathway promotes neurovascular repair after traumatic brain injury
Journal Article
Activation of the Notch signaling pathway promotes neurovascular repair after traumatic brain injury
2015
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Overview
The Notch signaling pathway plays a key role in angiogenesis and endothelial cell formation, but it remains unclear whether it is involved in vascular repair by endothelial progenitor cells after traumatic brain injury. Therefore, in the present study, we controlled the Notch signaling pathway using overexpression and knockdown constructs. Activation of the Notch signaling pathway by Notch1 or Jagged1 overexpression enhanced the migration, invasiveness and angiogenic ability of endothelial progenitor cells. Suppression of the Notch signaling pathway with Notch1 or Jagged1 si RNAs reduced the migratory capacity, invasiveness and angiogenic ability of endothelial progenitor cells. Activation of the Notch signaling pathway in vivo in a rat model of mild traumatic brain injury promoted neurovascular repair. These findings suggest that the activation of the Notch signaling pathway promotes blood vessel formation and tissue repair after brain trauma.
Publisher
Medknow Publications and Media Pvt. Ltd,Medknow Publications & Media Pvt. Ltd,Department of Neurosurgery, the First People’s Hospital of ZunYi/the Third Afifliated Hospital of ZunYi Medical College, Zunyi, Guizhou Province, China,Medknow Publications & Media Pvt Ltd,Wolters Kluwer Medknow Publications
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