Literature DB >> 34847433

A DAMP-scavenging, IL-10-releasing hydrogel promotes neural regeneration and motor function recovery after spinal cord injury.

He Shen1, Bai Xu2, Chao Yang3, Weiwei Xue2, Zhifeng You4, Xianming Wu2, Dezun Ma2, Dan Shao3, Kam Leong5, Jianwu Dai6.   

Abstract

Spinal cord injury (SCI) creates an inflammatory microenvironment characterized by damage-associated molecular patterns (DAMPs) and immune cell activation that exacerbate secondary damage and impair neurological recovery. Here we develop an immunoregulatory hydrogel scaffold for treating SCI that scavenges DAMPs and slowly releases the anti-inflammatory cytokine interleukin-10 (IL-10). We created this dual-functional scaffold by modifying a photocrosslinked gelatin hydrogel with the cationic, DAMP-binding polymer poly (amidoamine) and with IL-10, and compared the therapeutic activity of this scaffold with that of gelatin-only, gelatin + poly (amidoamine), and gelatin + IL-10 scaffolds in vitro and in vivo. In vitro, the dual-functional scaffold scavenged anionic DAMPs and exhibited sustained release of IL-10, reduced the proinflammatory responses of macrophages and microglia, and enhanced the neurogenic differentiation of neural stem cells. In a complete transection SCI mouse model, the injected dual-functional scaffold suppressed proinflammatory cytokine production, promoted the M2 macrophage/microglia phenotype, and led to neural regeneration and axon growth without scar formation to a greater extent than the single-function or control scaffolds. This DAMP-scavenging, IL-10-releasing scaffold provides a new strategy for promoting neural regeneration and motor function recovery following severe SCI.
Copyright © 2021 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Complete spinal cord injury; Dual-functional scaffold; Hydrogel; Inflammatory microenvironment; Neuroregeneration

Mesh:

Substances:

Year:  2021        PMID: 34847433     DOI: 10.1016/j.biomaterials.2021.121279

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  8 in total

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Review 4.  Reverse Adverse Immune Microenvironments by Biomaterials Enhance the Repair of Spinal Cord Injury.

Authors:  Hengyi Wang; Yuanliang Xia; Baoqin Li; Yuehong Li; Changfeng Fu
Journal:  Front Bioeng Biotechnol       Date:  2022-05-13

Review 5.  Novel Strategies for Spinal Cord Regeneration.

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Journal:  Int J Mol Sci       Date:  2022-04-20       Impact factor: 6.208

6.  3D printed collagen/silk fibroin scaffolds carrying the secretome of human umbilical mesenchymal stem cells ameliorated neurological dysfunction after spinal cord injury in rats.

Authors:  Chong Chen; Hai-Huan Xu; Xiao-Yin Liu; Yu-Sheng Zhang; Lin Zhong; You-Wei Wang; Lin Xu; Pan Wei; Ya-Xing Chen; Peng Liu; Chen-Ru Hao; Xiao-Li Jia; Nan Hu; Xiao-Yang Wu; Xiao-Song Gu; Li-Qun Chen; Xiao-Hong Li
Journal:  Regen Biomater       Date:  2022-02-24

7.  Study on the Effect of PDA-PLGA Scaffold Loaded With Islet Cells for Skeletal Muscle Transplantation in the Treatment of Diabetes.

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Journal:  Front Bioeng Biotechnol       Date:  2022-06-30

Review 8.  The immune microenvironment and tissue engineering strategies for spinal cord regeneration.

Authors:  Yuan Feng; Yong Peng; Jing Jie; Yumin Yang; Pengxiang Yang
Journal:  Front Cell Neurosci       Date:  2022-08-04       Impact factor: 6.147

  8 in total

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