[1] |
Jia-Lin Zhan, Yan-Ling Huang, Qiao-Wen Liang, Xiao-Sheng Qu, Zi-Mei Dong, Yi Du, Wen-Jing Luo.
Anti-inflammatory effect of miR-125a-5p on experimental optic neuritis by promoting the differentiation of Treg cells
[J]. Neural Regeneration Research, 2023, 18(2): 451-455.
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[2] |
Jian-Song Zhang, Pin-Pin Hou, Shuai Shao, Anatol Manaenko, Zhi-Peng Xiao, Yan Chen, Bing Zhao, Feng Jia, Xiao-Hua Zhang, Qi-Yong Mei, Qin Hu.
microRNA-455-5p alleviates neuroinflammation in cerebral ischemia/reperfusion injury
[J]. Neural Regeneration Research, 2022, 17(on line): 1769-1775.
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[3] |
Aneliya Hanineva, Karen Sophia Park, Joshua J. Wang, Margaret M. DeAngelis, Michael H. Farkas, Sarah X. Zhang.
Emerging roles of circular RNAs in retinal diseases
[J]. Neural Regeneration Research, 2022, 17(9): 1875-1880.
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[4] |
Zai-Li Zhang, Dan Wang, Feng-Shou Chen.
MicroRNA-101a-3p mimic ameliorates spinal cord ischemia/reperfusion injury
[J]. Neural Regeneration Research, 2022, 17(9): 2022-2028.
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[5] |
Jian-Song Zhang, Pin-Pin Hou, Shuai Shao, Anatol Manaenko, Zhi-Peng Xiao, Yan Chen, Bing Zhao, Feng Jia, Xiao-Hua Zhang, Qi-Yong Mei, Qin Hu.
microRNA-455-5p alleviates neuroinflammation in cerebral ischemia/reperfusion injury
[J]. Neural Regeneration Research, 2022, 17(8): 1769-1775.
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[6] |
Bridget Martinez, Philip V. Peplow.
MicroRNA biomarkers in frontotemporal dementia and to distinguish from Alzheimer’s disease and amyotrophic lateral sclerosis
[J]. Neural Regeneration Research, 2022, 17(7): 1412-1422.
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[7] |
Xuanyu Chen, Hedong Li.
Neuronal reprogramming in treating spinal cord injury
[J]. Neural Regeneration Research, 2022, 17(7): 1440-1445.
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[8] |
Xin-Yi Gu, Bo Jin, Zhi-Dan Qi, Xiao-Feng Yin.
MicroRNA is a potential target for therapies to improve the physiological function of skeletal muscle after trauma
[J]. Neural Regeneration Research, 2022, 17(7): 1617-1622.
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[9] |
Bridget Martinez, Philip V. Peplow.
MicroRNA expression in animal models of amyotrophic lateral sclerosis and potential therapeutic approaches
[J]. Neural Regeneration Research, 2022, 17(4): 728-740.
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[10] |
Elisa Cainelli, Luca Vedovelli, Daniele Bottigliengo, Dario Boschiero, Agnese Suppiej.
Social skills and psychopathology are associated with autonomic function in children: a cross-sectional observational study
[J]. Neural Regeneration Research, 2022, 17(4): 920-928.
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[11] |
Wei Tang, Zong-Duo Guo, Wei-Na Chai, Dong-Lin Du, Xiao-Min Yang, Lang Cao, Hong Chen, Chao Zhou, Chong-Jie Cheng, Xiao-Chuan Sun, Zhi-Jian Huang, Jian-Jun Zhong.
Downregulation of miR-491-5p promotes neovascularization after traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(3): 577-586.
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[12] |
Yao-Hua Ma, Wen-Jing Deng, Zhi-Yi Luo, Jing Jing, Peng-Wei Pan, Yao-Bing Yao, Yan-Bo Fang, Jun-Fang Teng.
Inhibition of microRNA-29b suppresses oxidative stress and reduces apoptosis in ischemic stroke
[J]. Neural Regeneration Research, 2022, 17(2): 433-439.
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[13] |
Feng-Shou Chen, Xiang-Yi Tong, Bo Fang, Dan Wang, Xiao-Qian Li, Zai-Li Zhang.
The roles of microRNAs in spinal cord ischemia-reperfusion injury
[J]. Neural Regeneration Research, 2022, 17(12): 2593-2599.
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[14] |
Liang Wen, Ya-Dong Wang, Dong-Feng Shen, Pei-Dong Zheng, Meng-Di Tu, Wen-Dong You, Yuan-Run Zhu, Hao Wang, Jun-Feng Feng, Xiao-Feng Yang.
Exosomes derived from bone marrow mesenchymal stem cells inhibit neuroinflammation after traumatic brain injury
[J]. Neural Regeneration Research, 2022, 17(12): 2717-2724.
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[15] |
Bridget Martinez, Philip V. Peplow.
MicroRNAs as biomarkers in glaucoma and potential therapeutic targets
[J]. Neural Regeneration Research, 2022, 17(11): 2368-2375.
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