[1] |
Chao Ying, Chao Han, Yuan Li, Mingkai Zhang, Shuying Xiao, Lifang Zhao, Hui Zhang, Qian Yu, Jing An, Wei Mao, Yanning Cai.
Plasma circulating cell-free DNA integrity and relative telomere length as diagnostic biomarkers for Parkinson’s disease and multiple system atrophy: a cross-sectional study
[J]. Neural Regeneration Research, 2025, 20(on line): 1-11.
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[2] |
Mengdi Guo, Guozhen Deng, Bin Huang, Zhiyong Lin, Xue Yang, Linglin Dong, Zilin Wang, Yi Guo, Ming Yi, Weiyan Wang, Mei-Ling Jiang, Cun-Jin Zhang.
Effects of Lycium barbarum polysaccharide on the activation of pathogenic CD4+ T cells in a mouse model of multiple sclerosis
[J]. Neural Regeneration Research, 2025, 20(on line): 1-11.
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[3] |
Xiaoyue Lian, Zhenghao Liu, Zuobin Gan, Qingshan Yan, Luyao Tong, Linan Qiu, Yuntao Liu, Jiang-fan Chen, Zhihui Li.
Targeting the glymphatic system to promote α-synuclein
clearance: a novel therapeutic strategy for Parkinson’s
disease
[J]. Neural Regeneration Research, 2025, 20(on line): 1-18.
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[4] |
Yuhan Zhang, Yuan Liang, Yixue Gu.
The dopaminergic system and Alzheimer’s disease
[J]. Neural Regeneration Research, 2025, 20(9): 2495-2512.
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[5] |
Zhimin Long, Chuanhua Ge, Yueyang Zhao, Yuanjie Liu, Qinghua Zeng, Qing Tang, Zhifang Dong, Guiqiong He.
Enhanced autophagic clearance of amyloid-β via histone deacetylase 6-mediated V-ATPase assembly and lysosomal acidification protects against Alzheimer’s disease in vitro and in vivo
[J]. Neural Regeneration Research, 2025, 20(9): 2633-2644.
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[6] |
Kirsty Goncalves, Stefan Przyborski.
Modulation of the Nogo signaling pathway to overcome
amyloid-β-mediated neurite inhibition in human
pluripotent stem cell–derived neurites
[J]. Neural Regeneration Research, 2025, 20(9): 2645-2654.
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[7] |
Biao Xiao, Chaoyang Chu, Zhicheng Lin, Tianyuan Fang, Yuyu Zhou, Chuxia Zhang, Jianghui Shan, Shiyu Chen, Liping Li.
Treadmill exercise in combination with acousto-optic and olfactory stimulation improves cognitive function in APP/PS1 mice through the brain-derived neurotrophic factor- and Cygb-associated signaling pathways
[J]. Neural Regeneration Research, 2025, 20(9): 2706-2726.
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[8] |
Run Song, Shiyi Yin, Jiannan Wu, Junqiang Yan.
Neuronal regulated cell death in aging-related
neurodegenerative diseases: key pathways and
therapeutic potentials
[J]. Neural Regeneration Research, 2025, 20(8): 2245-2263.
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[9] |
You Wu, Lijie Yang, Wanrong Jiang, Xinyuan Zhang, Zhaohui Yao.
Glycolytic dysregulation in Alzheimer’s disease:
unveiling new avenues for understanding pathogenesis
and improving therapy
[J]. Neural Regeneration Research, 2025, 20(8): 2264-2278.
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[10] |
Mahnoor Hayat, Rafay Ali Syed, Hammad Qaiser, Mohammad Uzair, Khalid Al-Regaiey, Roaa Khallaf, Lubna Abdullah Mohammed Albassam, Imdad Kaleem, Xueyi Wang, Ran Wang, Mehwish S. Bhatti, Shahid Bashir.
Decoding molecular mechanisms: brain aging and
Alzheimer’s disease
[J]. Neural Regeneration Research, 2025, 20(8): 2279-2299.
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[11] |
Shengyang Zhou, Ting Li, Wei Zhang, Jian Wu, Hui Hong, Wei Quan, Xinyu Qiao, Chun Cui, Chenmeng Qiao, Weijiang Zhao , Yanqin Shen.
The cGAS-STING-interferon regulatory factor 7 pathway
regulates neuroinflammation in Parkinson’s disease
[J]. Neural Regeneration Research, 2025, 20(8): 2361-2372.
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[12] |
Lifang Zhao, Mingkai Zhang, Qimeng Li, Xuemin Wang, Jie Lu, Ying Han, Yanning Cai.
Storage time affects the level and diagnostic efficacy of
plasma biomarkers for neurodegenerative diseases
[J]. Neural Regeneration Research, 2025, 20(8): 2373-2381.
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[13] |
Mingyu Zhang, Chunyu Xiang, Renrui Niu, Xiaodong He, Wenqi Luo, Wanguo Liu, Rui Gu.
Liposomes as versatile agents for the management of
traumatic and nontraumatic central nervous system
disorders: drug stability, targeting efficiency, and safety
[J]. Neural Regeneration Research, 2025, 20(7): 1883-1899.
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[14] |
Qinchao Hu, Si Wang, Weiqi Zhang, Jing Qu, Guang-Hui Liu.
Unraveling brain aging through the lens of oral microbiota
[J]. Neural Regeneration Research, 2025, 20(7): 1930-1943.
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[15] |
Zhihao Lin, Changzhou Ying, Xiaoli Si, Naijia Xue, Yi Liu, Ran Zheng, Ying Chen, Jiali Pu , Baorong Zhang.
NOX4 exacerbates Parkinson’s disease pathology by promoting neuronal ferroptosis and neuroinflammation
[J]. Neural Regeneration Research, 2025, 20(7): 2038-2052.
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