Current multi-scale biomaterials for tissue regeneration following spinal cord injury

Y ang Zhang, Z huan Wu, J feng Wu, T dong Li… - Neurochemistry …, 2024 - Elsevier
Spinal cord injury (SCI) may cause loss of motor and sensory function, autonomic
dysfunction, and thus disrupt the quality of life of patients, leading to severe disability and …

Silk-based biomaterials for promoting spinal cord regeneration: A review

J Sun, M Ru, M Du, L Wang, S Yan, Q Zhang - International Journal of …, 2024 - Elsevier
The management of neurological disorders is profoundly complicated by spinal cord injury
(SCI), which leads to the impairment of motor and sensory functions. A major challenge in …

Carboxymethyl cellulose/quaternized chitosan hydrogel loaded with polydopamine nanoparticles promotes spinal cord injury recovery by anti-ferroptosis and M1/M2 …

T Shi, Y Chen, L Zhou, D Wu, Z Chen, Z Wang… - International Journal of …, 2024 - Elsevier
Spinal cord injury (SCI) represents a catastrophic neurological condition resulting in long-
term loss of motor, autonomic, and sensory functions. Recently, ferroptosis, an iron …

[HTML][HTML] Bioinspired conductive oriented nanofiber felt with efficient ROS clearance and anti-inflammation for inducing M2 macrophage polarization and accelerating …

Q Zhang, J Zheng, L Li, JM Yeh, X Xie, Y Zhao, C Li… - Bioactive Materials, 2025 - Elsevier
Complete spinal cord injury (SCI) causes permanent locomotor, sensory and neurological
dysfunctions. Targeting complex immunopathological microenvironment at SCI sites …

Neuroimplants and Glial Scar: What makes the Brain-Computer Link Work?

M Paveliev, A Melnikova, A Aganov - 2024 - papers.ssrn.com
Neuroimplants are coming as a likely major technological breakthrough of the next decade
with a potential of unprecedented social impact. Apart from attractive and miracle-looking …