Disc regeneration by injectable fucoidan-methacrylated dextran hydrogels through mechanical transduction and macrophage immunomodulation

Author:

Li Weifeng123,Zhou Pinghui12ORCID,Yan Bomin12,Qi Meiyao12,Chen Yedan1,Shang Lijun4,Guan Jianzhong12,Zhang Li12,Mao Yingji124ORCID

Affiliation:

1. Department of Orthopaedics and Department of Plastic Surgery, The First Affiliated Hospital of Bengbu Medical College, Bengbu, China

2. Anhui Province Key Laboratory of Tissue Transplantation, Bengbu Medical College, Bengbu, China

3. Department of Orthopedics, Lixin County People’s Hospital, Bozhou, China

4. School of Life Sciences, Bengbu Medical College, Bengbu, China

Abstract

Modulating a favorable inflammatory microenvironment that facilitates the recovery of degenerated discs is a key strategy in the treatment of intervertebral disc (IVD) degeneration (IDD). More interestingly, well-mechanized tissue-engineered scaffolds have been proven in recent years to be capable of sensing mechanical transduction to enhance the proliferation and activation of nucleus pulposus cells (NPC) and have demonstrated an increased potential in the treatment and recovery of degenerative discs. Additionally, existing surgical procedures may not be suitable for IDD treatment, warranting the requirement of new regenerative therapies for the restoration of disc structure and function. In this study, a light-sensitive injectable polysaccharide composite hydrogel with excellent mechanical properties was prepared using dextrose methacrylate (DexMA) and fucoidan with inflammation-modulating properties. Through numerous in vivo experiments, it was shown that the co-culture of this composite hydrogel with interleukin-1β-stimulated NPCs was able to promote cell proliferation whilst preventing inflammation. Additionally, activation of the caveolin1-yes-associated protein (CAV1-YAP) mechanotransduction axis promoted extracellular matrix (ECM) metabolism and thus jointly promoted IVD regeneration. After injection into an IDD rat model, the composite hydrogel inhibited the local inflammatory response by inducing macrophage M2 polarization and gradually reducing the ECM degradation. In this study, we propose a fucoidan-DexMA composite hydrogel, which provides an attractive approach for IVD regeneration.

Funder

Opening Project of Anhui Province Key Laboratory of Tissue Transplantation in Bengbu Medical College

Natural Science Research Project of the Anhui Educational Committee

Scientific Research Foundation of Bengbu Medical College

Domestic Visiting and Training Program for Outstanding Young Backbone Teachers in High Schools

bengbu medical college

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials,Medicine (miscellaneous)

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