journal article May 08, 2024

Multifunctional Hierarchical Nanoplatform with Anisotropic Bimodal Mesopores for Effective Neural Circuit Reconstruction after Spinal Cord Injury

ACS Nano Vol. 18 No. 20 pp. 13333-13345 · American Chemical Society (ACS)
View at Publisher Save 10.1021/acsnano.4c03252
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References
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Timothy M. O’Shea, Joshua E. Burda, Michael V. Sofroniew

Journal of Clinical Investigation 10.1172/jci90608
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Xiao Hu, Wei Xu, Yukun Ren et al.

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An anti-inflammatory and neuroprotective biomimetic nanoplatform for repairing spinal cord injury

Xiang Gao, Zhihui Han, Cheng Huang et al.

Bioactive Materials 10.1016/j.bioactmat.2022.05.026
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Recent progress and challenges in the treatment of spinal cord injury

Ting Tian, Sensen Zhang, Maojun Yang

Protein & Cell 10.1093/procel/pwad003
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The diversity and disparity of the glial scar

Katrina L. Adams, Vittorio Gallo

Nature Neuroscience 10.1038/s41593-017-0033-9
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Regulation of axonal regeneration after mammalian spinal cord injury

Binhai Zheng, Mark H. Tuszynski

Nature Reviews Molecular Cell Biology 10.1038/s41580-022-00562-y
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Pathophysiology of the brain extracellular matrix: a new target for remyelination

Lorraine W. Lau, Rowena Cua, Michael B. Keough et al.

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Citations
47
References
Details
Published
May 08, 2024
Vol/Issue
18(20)
Pages
13333-13345
License
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Authors
Funding
National Natural Science Foundation of China Award: 22075049
Fundamental Research Funds for the Central Universities Award: 20720220010
Fudan University Award: 22TQ004
Shanghai Rising-Star Program Award: 20QA1401200
Natural Science Foundation of Shanghai Municipality Award: 22ZR1478900
Cite This Article
Fanqi Kong, Hongyue Yu, Lifei Gao, et al. (2024). Multifunctional Hierarchical Nanoplatform with Anisotropic Bimodal Mesopores for Effective Neural Circuit Reconstruction after Spinal Cord Injury. ACS Nano, 18(20), 13333-13345. https://doi.org/10.1021/acsnano.4c03252
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