首页|期刊导航|Neural Regeneration Research|Inhibiting SHP2 reduces glycolysis, promotes microglial M1 polarization, and alleviates secondary inflammation following spinal cord injury in a mouse model
Inhibiting SHP2 reduces glycolysis, promotes microglial M1 polarization, and alleviates secondary inflammation following spinal cord injury in a mouse model
Xintian Ding Chun Chen Heng Zhao Bin Dai Lei Ye Tao Song Shuai Huang Jia Wang Tao You
Neural Regeneration Research2025,Vol.20Issue(3):P.858-872,15.
Neural Regeneration Research2025,Vol.20Issue(3):P.858-872,15.DOI:10.4103/NRR.NRR-D-23-01925
Inhibiting SHP2 reduces glycolysis, promotes microglial M1 polarization, and alleviates secondary inflammation following spinal cord injury in a mouse model
摘要
关键词
apoptosis/glycolysis/inflammatory response/microglia/neurons/polarization/spinal cord injury/Src homology 2-containing protein tyrosine phosphatase 2分类
医药卫生引用本文复制引用
Xintian Ding,Chun Chen,Heng Zhao,Bin Dai,Lei Ye,Tao Song,Shuai Huang,Jia Wang,Tao You..Inhibiting SHP2 reduces glycolysis, promotes microglial M1 polarization, and alleviates secondary inflammation following spinal cord injury in a mouse model[J].Neural Regeneration Research,2025,20(3):P.858-872,15.基金项目
supported by the Natural Science Research Project of Anhui Province University, No.2023AH040394 (to TY) (to TY)
Hefei Comprehensive National Science Center Leading Medicine and Frontier Technology Research Institute Project, No.2023IHM01073 (to TY) (to TY)
the Natural Science Foundation of Anhui Province, Nos.2308085QH258 (to JW), 2008085MH246 (to TY)。 (to JW)