NEURAL_STEM_CELL

作品数:153被引量:663H指数:13
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相关作者:汤海亮朱剑虹杨泽勇孟琼文铁桥更多>>
相关机构:复旦大学复旦大学上海医学院上海交通大学医学院附属第三人民医院广州中医药大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划广东省自然科学基金安徽省自然科学基金更多>>
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New insights on the role of chondroitin sulfate proteoglycans in neural stem cell–mediated repair in spinal cord injury
《Neural Regeneration Research》2025年第6期1699-1700,共2页Seyed Mojtaba Hosseini Soheila Karimi-Abdolrezaee 
funding support from the Canadian Institutes of Health Research;supported by a Doctoral Studentship from the Wings for Life Foundation。
Extensive neurodegeneration is a hallmark of traumatic spinal cord injury (SCI) that underlies permanent sensorimotor and autonomic impairments (Alizadeh et al.,2019).Following the primary impact,the spinal cord under...
关键词:PEROXIDATION FISCHER INJURY 
The complex roles of m^(6)A modifications in neural stem cell proliferation, differentiation, and self-renewal and implications for memory and neurodegenerative diseases
《Neural Regeneration Research》2025年第6期1582-1598,共17页Yanxi Li Jing Xue Yuejia Ma Ke Ye Xue Zhao Fangliang Ge Feifei Zheng Lulu Liu Xu Gao Dayong Wang Qing Xia 
supported by the Natural Science Foundation of Heilongjiang Province of China,Outstanding Youth Foundation,No.YQ2022H003 (to DW)。
N6-methyladenosine(m^(6)A), the most prevalent and conserved RNA modification in eukaryotic cells, profoundly influences virtually all aspects of mRNA metabolism. mRNA plays crucial roles in neural stem cell genesis a...
关键词:Alzheimer's disease cell self-renewal central nervous system MEMORY MICROGLIA nerve regeneration neurodegenerative diseases NEUROGENESIS RNA methylation 
Induced neural stem cells regulate microglial activation through Akt-mediated upregulation of CXCR4 and Crry in a mouse model of closed head injury
《Neural Regeneration Research》2025年第5期1416-1430,共15页Mou Gao Qin Dong Dan Zou Zhijun Yang Lili Guo Ruxiang Xu 
supported by the National Natural Science Foundation of China,Nos.82271397(to MG),82001293(to MG),82171355(to RX),81971295(to RX),and 81671189(to RX)。
Microglial activation that occurs rapidly after closed head injury may play important and complex roles in neuroinflammation-associated neuronal damage and repair.We previously reported that induced neural stem cells ...
关键词:Akt signaling cerebral edema closed head injury Crry CXCR4 induced neural stem cell MICROGLIA NEUROINFLAMMATION 
Repetitive traumatic brain injury–induced complement C1–related inflammation impairs long-term hippocampal neurogenesis被引量:1
《Neural Regeneration Research》2025年第3期821-835,共15页Jing Wang Bing Zhang Lanfang Li Xiaomei Tang Jinyu Zeng Yige Song Chao Xu Kai Zhao Guoqiang Liu Youming Lu Xinyan Li Kai Shu 
supported by the Fundamental Research Program of Shanxi Province of China,No.20210302124277;the Science Foundation of Shanxi Bethune Hospital,No.2021YJ13(both to JW)。
Repetitive traumatic brain injury impacts adult neurogenesis in the hippocampal dentate gyrus,leading to long-term cognitive impairment.However,the mechanism underlying this neurogenesis impairment remains unknown.In ...
关键词:complement C1 dendrite dentate gyrus hippocampus neural stem cell NEUROGENESIS NEUROINFLAMMATION neurological function neuron traumatic brain injury 
Maintaining moderate levels of hypochlorous acid promotes neural stem cell proliferation and differentiation in the recovery phase of stroke
《Neural Regeneration Research》2025年第3期845-857,共13页Lin-Yan Huang Yi-De Zhang Jie Chen Hai-Di Fan Wan Wang Bin Wang Ju-Yun Ma Peng-Peng Li Hai-Wei Pu Xin-Yian Guo Jian-Gang Shen Su-Hua Qi 
supported by the Natural Science Foundation of Jiangsu Province of China,No.BK20211348(to SHQ);Xuzhou Basic Research Program,No.KC21030(to LYH);Leadership Program of Xuzhou Medical University,No.JBGS202203(to SHQ);Research Grant Council GRF of Hong Kong Special Administrative Region of China,No.17105220(to JGS)。
It has been shown clinically that continuous removal of ischemia/reperfusion-induced reactive oxygen species is not conducive to the recovery of late stroke.Indeed,previous studies have shown that excessive increases ...
关键词:cell differentiation cerebral ischemia/reperfusion injury CHLORINATION hypochlorous acid MICROGLIA neural stem cell NEUROGENESIS nuclear translocation stroke β-catenin 
Human-induced pluripotent stem cell-derived neural stem cell exosomes improve blood-brain barrier function after intracerebral hemorrhage by activating astrocytes via PI3K/AKT/MCP-1 axis
《Neural Regeneration Research》2025年第2期518-532,共15页Conglin Wang Fangyuan Cheng Zhaoli Han Bo Yan Pan Liao Zhenyu Yin Xintong Ge Dai Li Rongrong Zhong Qiang Liu Fanglian Chen Ping Lei 
supported by the National Natural Science Foundation of China,No.8227050826(to PL);Tianjin Science and Technology Bureau Foundation,No.20201194(to PL);Tianjin Graduate Research and Innovation Project,No.2022BKY174(to CW).
Cerebral edema caused by blood-brain barrier injury after intracerebral hemorrhage is an important factor leading to poor prognosis.Human-induced pluripotent stem cell-derived neural stem cell exosomes(hiPSC-NSC-Exos)...
关键词:AKT ASTROCYTE blood-brain barrier cerebral edema EXOSOMES human-induced pluripotent stem cells intracerebral hemorrhage neural stem cells NEUROINFLAMMATION PI3K 
Emerging strategies for nerve repair and regeneration in ischemic stroke:neural stem cell therapy被引量:5
《Neural Regeneration Research》2024年第11期2430-2443,共14页Siji Wang Qianyan He Yang Qu Wenjing Yin Ruoyu Zhao Xuyutian Wang Yi Yang Zhen-Ni Guo 
supported by the National Natural Science Foundation of China,No.81971105(to ZNG);the Science and Technology Department of Jilin Province,No.YDZJ202201ZYTS677(to ZNG);Talent Reserve Program of the First Hospital of Jilin University,No.JDYYCB-2023002(to ZNG);the Norman Bethune Health Science Center of Jilin University,No.2022JBGS03(to YY);Science and Technology Department of Jilin Province,Nos.YDZJ202302CXJD061,20220303002SF(to YY);Jilin Provincial Key Laboratory,No.YDZJ202302CXJD017(to YY).
Ischemic stroke is a major cause of mortality and disability worldwide,with limited treatment options available in clinical practice.The emergence of stem cell therapy has provided new hope to the field of stroke trea...
关键词:bystander effect cell replacement extracellular vesicles ischemic stroke neural stem cells neural stem cell engineering 
Neural stem cell-derived exosomes:a cell-free transplant for potential cure of neurological diseases
《BIOCELL》2024年第10期1405-1418,共14页JIAJUN HUANG WEI WANG WENTONG LIN HENGSEN CAI ZHIHAN ZHU WAQAS AHMED QIANKUN ZHANG JIALE LIU YIFAN ZHANG RONG LI ZHINUO LI AHSAN ALI KHAN DENG LU YONG HU LUKUI CHEN 
Degeneration and death of nerve cells are inevitable with the occurrence and progression of nervous system disorders.Researchers transplanted neural stem cells into relevant areas,trying to solve the difficulty of neu...
关键词:Stem cells EXOSOMES Nervous system diseases Neural regeneration Neural restoration Cell-free therapy 
Quiescent Adult Neural Stem Cells:Developmental Origin and Regulatory Mechanisms
《Neuroscience Bulletin》2024年第9期1353-1363,共11页Han Meng Yu Huan Kun Zhang Xuyang Yi Xinyu Meng Enming Kang Shengxi Wu Wenbing Deng Yazhou Wang 
National Natural Science Foundation of China(31970907 and 82171346).
The existence of neural stem cells(NSCs)in the adult mammalian nervous system,although small in number and restricted to the sub-ventricular zone of the lateral ventricles,the dentate gyrus of the hippocampus,and the ...
关键词:Quiescent Neural stem cell Neuronal regeneration INJURY 
High-frequency repetitive transcranial magnetic stimulation promotes neural stem cell proliferation after ischemic stroke被引量:8
《Neural Regeneration Research》2024年第8期1772-1780,共9页Jing Luo Yuan Feng Zhongqiu Hong Mingyu Yin Haiqing Zheng Liying Zhang Xiquan Hu 
supported by the National Natural Science Foundation of China,Nos.81672261(to XH),81972151(to HZ),82372568(to JL);the Natural Science Foundation of Guangdong Province,Nos.2019A1515011106(to HZ),2023A1515030080(to JL)。
Prolife ration of neural stem cells is crucial for promoting neuronal regeneration and repairing cerebral infarction damage.Transcranial magnetic stimulation(TMS)has recently emerged as a tool for inducing endogenous ...
关键词:AKT/β-catenin signaling brain stimulation Ca2+influx cell proliferation ischemic stroke middle cerebral artery occlusion neural stem cells neurological rehabilitation repetitive transcranial magnetic stimulation 
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