[1] |
Victoria Sofia Berenice Wies Mancini, Anabella Ayelen Di Pietro, Laura Andrea Pasquini.
Microglia depletion as a therapeutic strategy: friend or foe in multiple sclerosis models?
[J]. Neural Regeneration Research, 2023, 18(2): 267-272.
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[2] |
Sofia Fernanda Gonçalves Zorzella-Pezavento, Luiza Ayumi Nishiyama Mimura, Marina Bonifácio Denadai, William Danilo Fernandes de Souza, Thais Fernanda de Campos Fraga-Silva, Alexandrina Sartori.
Is there a window of opportunity for the therapeutic use of vitamin D in multiple sclerosis?
[J]. Neural Regeneration Research, 2022, 17(9): 1945-1954.
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[3] |
Tayana Silva de Carvalho.
Calorie restriction or dietary restriction: how far they can protect the brain against neurodegenerative diseases?
[J]. Neural Regeneration Research, 2022, 17(8): 1640-1644.
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[4] |
Muhammad Ali Haidar, Zaynab Shakkour, Mohammad Amine Reslan, Nadine Al-Haj, Perla Chamoun, Karl Habashy, Hasan Kaafarani, Shima Shahjouei, Sarah H. Farran, Abdullah Shaito, Esber S. Saba, Bassam Badran, Mirna Sabra, Firas Kobeissy, Maya Bizri.
SARS-CoV-2 involvement in central nervous system tissue damage
[J]. Neural Regeneration Research, 2022, 17(6): 1228-1239.
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[5] |
Lydia Ayanwuyi, Nataliya Tokarska, Nikki A. McLean, Jayne M. Johnston, Valerie M. K. Verge.
Brief electrical nerve stimulation enhances intrinsic repair capacity of the focally demyelinated central nervous system
[J]. Neural Regeneration Research, 2022, 17(5): 1042-1050.
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[6] |
Xin-Quan Gu, Ying Liu, Jie-Bing Gu, Lin-Fang Li, Ling-Ling Fu, Xue-Mei Han.
Correlations between hippocampal functional connectivity, structural changes, and clinical data in patients with relapsing-remitting multiple sclerosis: a case-control study using multimodal magnetic resonance imaging
[J]. Neural Regeneration Research, 2022, 17(5): 1115-1124.
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[7] |
Simone Patergnani, Giampaolo Morciano, Marianna Carinci, Sara Leo, Paolo Pinton, Alessandro Rimessi.
The “mitochondrial stress responses”: the “Dr. Jekyll and Mr. Hyde” of neuronal disorders
[J]. Neural Regeneration Research, 2022, 17(12): 2563-2575.
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[8] |
Qing Wang, Li-Juan Song, Zhi-Bin Ding, Zhi Chai, Jie-Zhong Yu, Bao-Guo Xiao, Cun-Gen Ma.
Advantages of Rho-associated kinases and their inhibitor fasudil for the treatment of neurodegenerative diseases
[J]. Neural Regeneration Research, 2022, 17(12): 2623-2631.
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[9] |
Hai-Zhen Yu, Bing-Qing Zhu, Lin Zhu, Shuo Li, Li-Mei Wang.
NR4A1 agonist cytosporone B attenuates neuroinflammation in a mouse model of multiple sclerosis
[J]. Neural Regeneration Research, 2022, 17(12): 2765-2770.
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[10] |
Vito Antonio Baldassarro, Agnese Stanzani, Luciana Giardino, Laura Calzà, Luca Lorenzini.
Neuroprotection and neuroregeneration: roles for the white matter
[J]. Neural Regeneration Research, 2022, 17(11): 2376-2380.
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[11] |
Koichi Inoue.
Potential significance of CX3CR1 dynamics in stress resilience against neuronal disorders
[J]. Neural Regeneration Research, 2022, 17(10): 2153-2156.
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[12] |
Sha Sha, Xiao-Na Xing, Tao Wang, Ying Li, Rong-Wei Zhang, Xue-Li Shen, Yun-Peng Cao, Le Qu.
DNA vaccines targeting amyloid-β oligomer ameliorate cognitive deficits of aged APP/PS1/tau triple-transgenic mouse models of Alzheimer’s disease
[J]. Neural Regeneration Research, 2022, 17(10): 2305-2310.
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[13] |
Viviana Nociti , Massimo Santoro.
What do we know about the role of lncRNAs in multiple sclerosis?
[J]. Neural Regeneration Research, 2021, 16(9): 1715-1722.
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[14] |
Tianci Chu, Lisa B.E. Shields, Wenxin Zeng, Yi Ping Zhang, Yuanyi Wang, Gregory N. Barnes, Christopher B. Shields, Jun Cai.
Dynamic glial response and crosstalk in demyelination-remyelination and neurodegeneration processes
[J]. Neural Regeneration Research, 2021, 16(7): 1359-1368.
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[15] |
Riccardo Manca, Micaela Mitolo, Iain D. Wilkinson, David Paling, Basil Sharrack, Annalena Venneri.
A network-based cognitive training induces cognitive improvements and neuroplastic changes in patients with relapsing-remitting multiple sclerosis: #br#
an exploratory case-control study#br#
[J]. Neural Regeneration Research, 2021, 16(6): 1111-1120.
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