Inhibition of miR-145-5p Reduces Spinal Cord Injury-Induced Inflammatory and Oxidative Stress Responses via Affecting Nurr1-TNF-α Signaling Axis
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology,Biochemistry,General Medicine,Biophysics
Link
https://link.springer.com/content/pdf/10.1007/s12013-021-00992-z.pdf
Reference48 articles.
1. Rogers, W. K., & Todd, M. (2016). Acute spinal cord injury. Best Practice & Research: Clinical Anaesthesiology, 30(1), 27–39.
2. Jazayeri, S. B., Beygi, S., Shokraneh, F., Hagen, E. M., & Rahimi-Movaghar, V. (2015). Incidence of traumatic spinal cord injury worldwide: A systematic review. European Spine Journal, 24(5), 905–918.
3. Liu, Y., Li, Q., Zhang, B., Ban, D.-X., & Feng, S.-Q. (2017). Multifunctional biomimetic spinal cord: New approach to repair spinal cord injuries. World Journal of Experimental Medicine, 7(3), 78–83.
4. Orr, M. B., & Gensel, J. C. (2018). Spinal cord injury scarring and inflammation: Therapies targeting glial and inflammatory responses. Neurotherapeutics, 15(3), 541–553.
5. David, S., Greenhalgh, A. D., & Kroner, A. (2015). Macrophage and microglial plasticity in the injured spinal cord. Neuroscience, 307, 311–318.
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