[1] |
Stefan Kassumeh, Gregor R. Weber, Matthias Nobl, Siegfried G. Priglinger, Andreas Ohlmann.
The neuroprotective role of Wnt signaling in the retina
[J]. Neural Regeneration Research, 2021, 16(8): 1524-1528.
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[2] |
Wan-Chao Yang, Hong-Ling Cao, Yue-Zhen Wang, Ting-Ting Li, Hong-Yu Hu, Qiang Wan, Wen-Zhi Li.
Inhibition of nitric oxide synthase aggravates brain injury in diabetic rats with traumatic brain injury
[J]. Neural Regeneration Research, 2021, 16(8): 1574-1581.
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[3] |
Yong-Bin Gao, Zhi-Gang Liu, Guo-Dong Lin, Yang Guo, Lei Chen, Bo-Tao Huang, Yao-Bin Yin, Chen Yang, Li-Ying Sun, Yan-Bo Rong, Shanlin Chen.
Safety and efficacy of a nerve matrix membrane as a collagen nerve wrapping: a randomized, single-blind, multicenter clinical trial
[J]. Neural Regeneration Research, 2021, 16(8): 1652-1659.
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[4] |
Ling-Yu Zhang, Qian-Qian Jin, Christian Hölscher, Lin Li.
Glucagon-like peptide-1/glucose-dependent insulinotropic polypeptide dual receptor agonist DA-CH5 is superior to exendin-4 in protecting neurons in the 6-hydroxydopamine rat Parkinson model
[J]. Neural Regeneration Research, 2021, 16(8): 1660-1670.
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[5] |
Meng-Shi Yang, Xiao-Jian Xu, Bin Zhang, Fei Niu, Bai-Yun Liu.
Comparative transcriptomic analysis of rat versus mouse cerebral cortex after traumatic brain injury
[J]. Neural Regeneration Research, 2021, 16(7): 1235-1243.
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[6] |
Shi-Jia Yu, Ming-Jun Yu, Zhong-Qi Bu, Ping-Ping He, Juan Feng.
MicroRNA-670 aggravates cerebral ischemia/reperfusion injury via the Yap pathway
[J]. Neural Regeneration Research, 2021, 16(6): 1024-1030.
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[7] |
Zi-Qi Shao, Shan-Shan Dou, Jun-Ge Zhu, Hui-Qing Wang, Chun-Mei Wang, Bao-Hua Cheng, Bo Bai.
Apelin-13 inhibits apoptosis and excessive autophagy in cerebral ischemia/reperfusion injury
[J]. Neural Regeneration Research, 2021, 16(6): 1044-1051.
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[8] |
Ming-Yu Shi, Cheng-Cheng Ma, Fang-Fang Chen, Xiao-Yu Zhou, Xue Li, Chuan-Xi Tang, Lin Zhang, Dian-Shuai Gao.
Possible role of glial cell line-derived neurotrophic factor for predicting cognitive impairment in Parkinson’s disease: a case-control study
[J]. Neural Regeneration Research, 2021, 16(5): 885-892.
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[9] |
Mariam Rizk, Justin Vu, Zhi Zhang.
Impact of pediatric traumatic brain injury on hippocampal neurogenesis
[J]. Neural Regeneration Research, 2021, 16(5): 926-933.
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[10] |
Igor Iezhitsa, Renu Agarwal.
New solutions for old challenges in glaucoma treatment: is taurine an option to consider?
[J]. Neural Regeneration Research, 2021, 16(5): 967-971.
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[11] |
Magdalini Tsintou, Kyriakos Dalamagkas, Tara L. Moore, Yogesh Rathi, Marek Kubicki, Douglas L. Rosene, Nikos Makris.
The use of hydrogel-delivered extracellular vesicles in recovery of motor function in stroke: a testable experimental hypothesis for clinical translation including behavioral and neuroimaging assessment approaches
[J]. Neural Regeneration Research, 2021, 16(4): 605-613.
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[12] |
Katherine Dai, Daniel P. Radin, Donna Leonardi.
Deciphering the dual role and prognostic potential of PINK1 across cancer types
[J]. Neural Regeneration Research, 2021, 16(4): 659-665.
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[13] |
Hilda Martínez-Coria, Isabel Arrieta-Cruz, María-Esther Cruz, Héctor E. López-Valdés.
Physiopathology of ischemic stroke and its modulation using memantine: evidence from preclinical stroke
[J]. Neural Regeneration Research, 2021, 16(3): 433-439.
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[14] |
Kenneth Maiese.
Targeting the core of neurodegeneration: FoxO, mTOR, and SIRT1
[J]. Neural Regeneration Research, 2021, 16(3): 448-455.
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[15] |
Takao Ishikawa.
Saccharomyces cerevisiae in neuroscience: how unicellular organism helps to better understand prion protein?
[J]. Neural Regeneration Research, 2021, 16(3): 489-495.
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