首页|期刊导航|Neural Regeneration Research|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
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
Conglin Wang Fangyuan Cheng Zhaoli Han Bo Yan Pan Liao Zhenyu Yin Xintong Ge Dai Li Rongrong Zhong Qiang Liu Fanglian Chen Ping Lei
Neural Regeneration Research2025,Vol.20Issue(2):P.518-532,15.
Neural Regeneration Research2025,Vol.20Issue(2):P.518-532,15.DOI:10.4103/NRR.NRR-D-23-01889
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
摘要
关键词
AKT/astrocyte/blood-brain barrier/cerebral edema/exosomes/human-induced pluripotent stem cells/intracerebral hemorrhage/neural stem cells/neuroinflammation/PI3K分类
医药卫生引用本文复制引用
Conglin Wang,Fangyuan Cheng,Zhaoli Han,Bo Yan,Pan Liao,Zhenyu Yin,Xintong Ge,Dai Li,Rongrong Zhong,Qiang Liu,Fanglian Chen,Ping Lei..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[J].Neural Regeneration Research,2025,20(2):P.518-532,15.基金项目
supported by the National Natural Science Foundation of China,No.8227050826(to PL) (to PL)
Tianjin Science and Technology Bureau Foundation,No.20201194(to PL) (to PL)
Tianjin Graduate Research and Innovation Project,No.2022BKY174(to CW). (to CW)