[HTML][HTML] Design the molecule structures to achieve functional advantages of hydrogel wound dressings: Advances and strategies

Z Zeng, M Zhu, L Chen, Y Zhang, T Lu, Y Deng… - Composites Part B …, 2022 - Elsevier
The wound healing and management are widely concerned in global military and civil
settings, which lays a huge public medical burden on the medical systems of every states …

Regenerative therapies for spinal cord injury

N Ashammakhi, HJ Kim, A Ehsanipour… - … Engineering Part B …, 2019 - liebertpub.com
Spinal cord injury (SCI) is a serious problem that primarily affects younger and middle-aged
adults at its onset. To date, no effective regenerative treatment has been developed. Over …

The effect of a nanofiber-hydrogel composite on neural tissue repair and regeneration in the contused spinal cord

X Li, C Zhang, AE Haggerty, J Yan, M Lan, M Seu… - Biomaterials, 2020 - Elsevier
An injury to the spinal cord causes long-lasting loss of nervous tissue because endogenous
nervous tissue repair and regeneration at the site of injury is limited. We engineered an …

Current concepts of biomaterial scaffolds and regenerative therapy for spinal cord injury

H Suzuki, Y Imajo, M Funaba, H Ikeda… - International Journal of …, 2023 - mdpi.com
Spinal cord injury (SCI) is a catastrophic condition associated with significant neurological
deficit and social and financial burdens. It is currently being managed symptomatically, with …

Is graphene shortening the path toward spinal cord regeneration?

AF Girão, MC Serrano, A Completo, PAAP Marques - ACS nano, 2022 - ACS Publications
Along with the development of the next generation of biomedical platforms, the inclusion of
graphene-based materials (GBMs) into therapeutics for spinal cord injury (SCI) has potential …

Rapid prototyping fabrication of soft and oriented polyester scaffolds for axonal guidance

B Kaplan, U Merdler, AA Szklanny, I Redenski, S Guo… - Biomaterials, 2020 - Elsevier
Biodegradable polyesters have been extensively used for preparation of nerve guidance
scaffolds, due to their high biocompatibility and defined degradation periods. However …

[HTML][HTML] A study of probable benefit of a bioresorbable polymer scaffold for safety and neurological recovery in patients with complete thoracic spinal cord injury: 6 …

KD Kim, KS Lee, D Coric, JJ Chang, JS Harrop… - … of Neurosurgery: Spine, 2021 - thejns.org
OBJECTIVE The aim of this study was to evaluate whether the investigational Neuro-Spinal
Scaffold (NSS), a highly porous bioresorbable polymer device, demonstrates probable …

Microenvironments‐Modulated Biomaterials Enhance Spinal Cord Injury Therapy

Y Li, Q Zhang, Z Liu, C Fu, J Ding - Advanced Functional …, 2024 - Wiley Online Library
Spinal cord injury (SCI) results from various causes, including sports‐related incidents,
degenerative cervical myelopathy, traffic accidents, and falls. SCI typically leads to sensory …

Composite fibrin/carbon microfiber implants for bridging spinal cord injury: a translational approach in pigs

A Alves-Sampaio, P Del-Cerro… - International Journal of …, 2023 - mdpi.com
Biomaterials may enhance neural repair after spinal cord injury (SCI) and testing their
functionality in large animals is essential to achieve successful clinical translation. This work …

[HTML][HTML] Acute implantation of a bioresorbable polymer scaffold in patients with complete thoracic spinal cord injury: 24-month follow-up from the INSPIRE study

KD Kim, KS Lee, D Coric, JS Harrop, N Theodore… - …, 2022 - journals.lww.com
BACKGROUND: Based on 6-month data from the InVivo Study of Probable Benefit of the
Neuro-Spinal Scaffold for Safety and Neurological Recovery in Patients with Complete …