[1] |
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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[2] |
Iván Alquisiras-Burgos, Javier Franco-Pérez, Moisés Rubio-Osornio, Penélope Aguilera.
The short form of the SUR1 and its functional implications in the damaged brain
[J]. Neural Regeneration Research, 2022, 17(3): 488-496.
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[3] |
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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[4] |
Samuel Peña-Díaz, Salvador Ventura.
One ring is sufficient to inhibit α-synuclein aggregation
[J]. Neural Regeneration Research, 2022, 17(3): 508-511.
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[5] |
Angela De Iuliis, Ennio Montinaro, Giuseppe Fatati, Mario Plebani, Carlo Colosimo.
Diabetes mellitus and Parkinson’s disease: dangerous liaisons between insulin and dopamine
[J]. Neural Regeneration Research, 2022, 17(3): 523-533.
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[6] |
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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[7] |
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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[8] |
Hui-Min Xie, Xing Su, Feng-Yuan Zhang, Chao-Lun Dai, Rong-Hua Wu, Yan Li, Xiao-Xiao Han, Xing-Mei Feng, Bin Yu, Shun-Xing Zhu, Song-Lin Zhou.
Profile of the RNA in exosomes from astrocytes and microglia using deep sequencing: implications for neurodegeneration mechanisms
[J]. Neural Regeneration Research, 2022, 17(3): 608-617.
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[9] |
Ya-Fei Wen, Xue-Wen Xiao, Lu Zhou, Ya-Ling Jiang, Yuan Zhu, Li-Na Guo, Xin Wang, Hui Liu, Ya-Fang Zhou, Jun-Ling Wang, Xin-Xin Liao, Lu Shen, Bin Jiao.
Mutations in GBA, SNCA, and VPS35 are not associated with Alzheimer’s disease in a Chinese population: a case-control study
[J]. Neural Regeneration Research, 2022, 17(3): 682-689.
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[10] |
Jessica D. Panes, Aline Wendt, Oscar Ramirez-Molina, Patricio A. Castro, Jorge Fuentealba.
Deciphering the role of PGC-1α in neurological disorders: from mitochondrial dysfunction to synaptic failure
[J]. Neural Regeneration Research, 2022, 17(2): 237-245.
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[11] |
Alexis D. Rickman, Addison Hilyard, Bradlee L. Heckmann.
Dying by fire: noncanonical functions of autophagy proteins in neuroinflammation and neurodegeneration
[J]. Neural Regeneration Research, 2022, 17(2): 246-250.
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[12] |
Mohammad Uzair, Turki Abualait, Muhammad Arshad, Woo-Kyoung Yoo, Ali Mir, Reem Fahd Bunyan, Shahid Bashir.
Transcranial magnetic stimulation in animal models of neurodegeneration
[J]. Neural Regeneration Research, 2022, 17(2): 251-265.
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[13] |
Joseph A. Flack, Krishna Deo Sharma, Jennifer Yanhua Xie.
Delving into the recent advancements of spinal cord injury treatment: a review of recent progress
[J]. Neural Regeneration Research, 2022, 17(2): 283-291.
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[14] |
Yu Zhu, Min Yuan, Yue Liu, Fang Yang, Wen-Zhi Chen, Zhen-Zhen Xu, Zheng-Bing Xiang, Ren-Shi Xu.
Association between inflammatory bowel diseases and Parkinson’s disease: systematic review and meta-analysis#br#
[J]. Neural Regeneration Research, 2022, 17(2): 344-353.
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[15] |
Yi-Tong Lin, Qing-Qing Shi, Lei Zhang, Cai-Ping Yue, Zhi-Jun He, Xue-Xia Li, Qian-Jun He, Qiong Liu, Xiu-Bo Du.
Hydrogen-rich water ameliorates neuropathological impairments in a mouse model of Alzheimer’s disease through reducing neuroinflammation and modulating intestinal microbiota
[J]. Neural Regeneration Research, 2022, 17(2): 409-417.
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