A bioactive injectable self-healing anti-inflammatory hydrogel with ultralong extracellular vesicles release synergistically enhances motor functional recovery of spinal cord injury

脊髓损伤 再生(生物学) 细胞外 细胞生物学 再髓鞘化 间充质干细胞 脊髓 化学 中枢神经系统 神经科学 生物 髓鞘
作者
Chenggui Wang,Min Wang,Kaishun Xia,Jingkai Wang,Feng Cheng,Kesi Shi,Liwei Ying,Chao Yu,Haibin Xu,Shining Xiao,Chengzhen Liang,Fangcai Li,Bo Lei,Qixin Chen
出处
期刊:Bioactive Materials [Elsevier BV]
卷期号:6 (8): 2523-2534 被引量:84
标识
DOI:10.1016/j.bioactmat.2021.01.029
摘要

The repair and motor functional recovery after spinal cord injury (SCI) remains a worldwide challenge. The inflammatory microenvironment is one of main obstacles on inhibiting the recovery of SCI. Using mesenchymal stem cells (MSCs) derived extracellular vesicles to replace MSCs transplantation and mimic cell paracrine secretions provides a potential strategy for microenvironment regulation. However, the effective preservation and controlled release of extracellular vesicles in the injured spinal cord tissue are still not satisfied. Herein, we fabricated an injectable adhesive anti-inflammatory F127-polycitrate-polyethyleneimine hydrogel (FE) with sustainable and long term extracellular vesicle release ([email protected]) for improving motor functional recovery after SCI. The orthotopic injection of [email protected] hydrogel could encapsulate extracellular vesicles on the injured spinal cord, thereby synergistically induce efficient integrated regulation through suppressing fibrotic scar formation, reducing inflammatory reaction, promoting remyelination and axonal regeneration. This study showed that combining extracellular vesicles into bioactive multifunctional hydrogel should have great potential in achieving satisfactory locomotor recovery of central nervous system diseases.
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