Desktop-stereolithography 3D printing of a radially oriented extracellular matrix/mesenchymal stem cell exosome bioink for osteochondral defect regeneration

桌面立体光刻 3D 打印径向定向细胞外基质/间充质干细胞外泌体生物墨水用于骨软骨缺损再生

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作者:Pengfei Chen, Lin Zheng, Yiyun Wang, Min Tao, Ziang Xie, Chen Xia, Chenhui Gu, Jiaxin Chen, Pengcheng Qiu, Sheng Mei, Lei Ning, Yiling Shi, Chen Fang, Shunwu Fan, Xianfeng Lin

Conclusion

This study demonstrated that the 3D printed, radially oriented ECM/GelMA/exosome scaffold could be a promising strategy for early OA treatment.

Methods

We first examined the mitochondria-related proteins in normal and OA human cartilage samples and investigated whether MSC exosomes could enhance mitochondrial biogenesis in vitro. We subsequently designed a bio-scaffold for MSC exosomes delivery and fabricated a 3D printed cartilage extracellular matrix (ECM)/gelatin methacrylate (GelMA)/exosome scaffold with radially oriented channels using desktop-stereolithography technology. Finally, the osteochondral defect repair capacity of the 3D printed scaffold was assessed using a rabbit model.

Results

The ECM/GelMA/exosome scaffold effectively restored chondrocyte mitochondrial dysfunction, enhanced chondrocyte migration, and polarized the synovial macrophage response toward an M2 phenotype. The 3D printed scaffold significantly facilitated the cartilage regeneration in the animal model.

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