[1] |
Xiang-Long Li, Bin Wang, Fu-Bing Yang, Li-Gang Chen, Jian You.
HOXA11-AS aggravates microglia-induced neuroinflammation after traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(5): 1096-1105.
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[2] |
Rita Caridade Silva, Helena Sofia Domingues, António J. Salgado, Fábio G. Teixeira.
From regenerative strategies to pharmacological approaches: can we fine-tune treatment for Parkinson’s disease?
[J]. Neural Regeneration Research, 2022, 17(5): 933-936.
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[3] |
Rodolfo G. Gatto, Carina Weissmann.
Preliminary examination of early neuroconnectivity features in the R6/1 mouse model of Huntington’s disease by ultra-high field diffusion MRI
[J]. Neural Regeneration Research, 2022, 17(5): 983-986.
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[4] |
Jessica Cornell, Shelbi Salinas, Hou-Yuan Huang, Miou Zhou.
Microglia regulation of synaptic plasticity and learning and memory
[J]. Neural Regeneration Research, 2022, 17(4): 705-716.
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[5] |
Serra Ozgen, Judith Krigman, Ruohan Zhang, Nuo Sun.
Significance of mitochondrial activity in neurogenesis and neurodegenerative diseases
[J]. Neural Regeneration Research, 2022, 17(4): 741-747.
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[6] |
Federica Rey, Sara Ottolenghi, Gian Vincenzo Zuccotti, Michele Samaja, Stephana Carelli.
Mitochondrial dysfunctions in neurodegenerative diseases: role in disease pathogenesis, strategies for analysis and therapeutic prospects
[J]. Neural Regeneration Research, 2022, 17(4): 754-758.
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[7] |
Jing Wang, Xiao-Na Zhang, Jin-Ni Fang, Fei-Fei Hua, Jing-Yang Han, Zeng-Qiang Yuan, An-Mu Xie.
The mechanism behind activation of the Nod-like receptor family protein 3 inflammasome in Parkinson’s disease
[J]. Neural Regeneration Research, 2022, 17(4): 898-904.
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[8] |
Priscila Chiavellini, Martina Canatelli-Mallat, Marianne Lehmann, Rodolfo G. Goya, Gustavo R. Morel.
Therapeutic potential of glial cell line-derived neurotrophic factor and cell reprogramming for hippocampal-related neurological disorders
[J]. Neural Regeneration Research, 2022, 17(3): 469-476.
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[9] |
Kun-Che Chang.
Influence of Sox protein SUMOylation on neural development and regeneration
[J]. Neural Regeneration Research, 2022, 17(3): 477-481.
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[10] |
Leelavathi N. Madhu, Maheedhar Kodali, Ashok K. Shetty.
Promise of metformin for preventing age-related cognitive dysfunction
[J]. Neural Regeneration Research, 2022, 17(3): 503-507.
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[11] |
Teresa de los Reyes, Sergio Casas-Tintó.
Neural functions of small heat shock proteins
[J]. Neural Regeneration Research, 2022, 17(3): 512-515.
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[12] |
Anna Picca, Flora Guerra, Riccardo Calvani, Hélio José Coelho-Junior, Cecilia Bucci, Emanuele Marzetti.
Circulating extracellular vesicles: friends and foes in neurodegeneration
[J]. Neural Regeneration Research, 2022, 17(3): 534-542.
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[13] |
Yaojun Ju, Kin Yip Tam.
Pathological mechanisms and therapeutic strategies for Alzheimer’s disease
[J]. Neural Regeneration Research, 2022, 17(3): 543-549.
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[14] |
Meng-Jun Li, Si-Hong Huang, Chu-Xin Huang, Jun Liu.
Morphometric changes in the cortex following acute mild traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(3): 587-593.
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[15] |
Jing-Jun Zhao, Zheng-Hui Wang, Ying-Jie Zhang, Wen-Jing Wang, Ai-Fang Cheng, Pei-Jing Rong, Chun-Lei Shan.
The mechanisms through which auricular vagus nerve stimulation protects against cerebral ischemia/reperfusion injury
[J]. Neural Regeneration Research, 2022, 17(3): 594-600.
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