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Biomedicine & Pharmacotherapy = Biomedecine & Pharmacotherapie|December 15, 2023
Dual targeting agent Thiotert inhibits the progression of glioblastoma by inducing ER stress-dependent autophagyJianhong Dong, Yiming Qian, Wei Zhang, et al.Journal of Neuroinflammation|May 3, 2026
An unrecognized mechanism of neuroprotection by microglial TIA1-mediated stress granules to prevent neuroinflammation and demyelination in experimental autoimmune encephalomyelitis mice through sequestering ApoE mRNAQinjiao Fu, Yanzhu Liu, Fangfang Li, et al.CNS Neuroscience & Therapeutics|April 10, 2023
Inhibition of TANK-binding kinase1 attenuates the astrocyte-mediated neuroinflammatory response through YAP signaling after spinal cord injuryWenbin Zhang, Mengxian Jia, Jiashu Lian, et al.Glia|October 15, 2025
Aldh1L1 Lineage Cells Contribute to the Functional Heterogeneity Within the Cells in Glial Scars After Spinal Cord Injury Through YAP SignalingZhoule Zhu, Xuan Luo, Xiaowu Lin, et al.European Journal of Pharmacology|February 8, 2024
Tenacissoside H repressed the progression of glioblastoma by inhibiting the PI3K/Akt/mTOR signaling pathwayJianhong Dong, Yiming Qian, Wei Zhang, et al.Materials Today. Bio|July 21, 2025
Curcumin-loaded milk-derived sEVs fused with platelet membrane attenuate endothelial senescence and promote spinal cord injury recovery in diabetic miceYaozhi He, Siyuan Zou, Jiawei Wang, et al.Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|July 31, 2026
Endothelial YAP Signaling Promotes Blood-Spinal Cord Barrier Repair in Mice After Spinal Cord InjuryJiawei Wang, Yaozhi He, Yanjiao Wang, et al.Neural Regeneration Research|July 12, 2024
Pharmacological targeting cGAS/STING/NF-κB axis by tryptanthrin induces microglia polarization toward M2 phenotype and promotes functional recovery in a mouse model of spinal cord injuryZiwei Fan, Mengxian Jia, Jian Zhou, et al.Theranostics|March 23, 2021
SARM1 promotes neuroinflammation and inhibits neural regeneration after spinal cord injury through NF-κB signalingHuitao Liu, Jingjing Zhang, Xingxing Xu, et al.Acta Physiologica (Oxford, England)|December 27, 2025
Ependymal Yes-Associated Protein Promotes the Neural Regeneration Through Enhancing the Ependymal Cell-Derived Perilesional Glial Borders in Mice After Spinal Cord InjuryJiashu Lian, Xiaowu Lin, Jiali Shi, et al.Pageof 3