Hydrogel and Nanomedicine‐Based Multimodal Therapeutic Strategies for Spinal Cord Injury

Author:

Yin Peng1234,Liang Weishi1234,Han Bo1234,Yang Yihan134,Sun Duan134,Qu Xianjun35,Hai Yong134,Luo Dan2ORCID

Affiliation:

1. Department of Orthopedic Surgery Beijing Chaoyang Hospital Capital Medical University Beijing 100020 China

2. Beijing Institute of Nanoenergy and Nanosystems Chinese Academy of Sciences Beijing 101400 China

3. Joint Laboratory for Research & Treatment of Spinal Cord Injury in Spinal Deformity Laboratory for Clinical Medicine Capital Medical University Beijing 100069 China

4. Clinical Center for Spinal Deformity Capital Medical University Beijing 100069 China

5. Department of Pharmacology School of Basic Medical Sciences Capital Medical University Beijing 100069 China

Abstract

AbstractSpinal cord injury (SCI) is a severe neurodegenerative disease caused by mechanical and biological factors, manifesting as a loss of motor and sensory functions. Inhibition of injury expansion and even reversal of injury in the acute damage stage of SCI are important strategies for treating this disease. Hydrogels and nanoparticle (NP)‐based drugs are the most effective, widely studied, and clinically valuable therapeutic strategies in the field of repair and regeneration. Hydrogels are 3D flow structures that fill the pathological gaps in SCI and provide a microenvironment similar to that of the spinal cord extracellular matrix for nerve cell regeneration. NP‐based drugs can easily penetrate the blood‐spinal cord barrier, target SCI lesions, and are noninvasive. Hydrogels and NPs as drug carriers can be loaded with various drugs and biological therapeutic factors for slow release in SCI lesions. They help drugs function more efficiently by exerting anti‐inflammatory, antioxidant, and nerve regeneration effects to promote the recovery of neurological function. In this review, the use of hydrogels and NPs as drug carriers and the role of both in the repair of SCI are discussed to provide a multimodal strategic reference for nerve repair and regeneration after SCI.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

Subject

General Materials Science,General Chemistry

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