3D-printed hydrogel particles containing PRP laden with TDSCs promote tendon repair in a rat model of tendinopathy

含有载有 TDSC 的 PRP 的 3D 打印水凝胶颗粒可促进肌腱病大鼠模型中的肌腱修复

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作者:Congsun Li #, Jie Wang #, Weinan Yang #, Kang Yu, Jianqiao Hong, Xiaoxiao Ji, Minjun Yao, Sihao Li, Jinwei Lu, Yazhou Chen, Shigui Yan, Haobo Wu, Chiyuan Ma, Xiaohua Yu, Guangyao Jiang, An Liu

Abstract

Long-term chronic inflammation after Achilles tendon injury is critical for tendinopathy. Platelet-rich plasma (PRP) injection, which is a common method for treating tendinopathy, has positive effects on tendon repair. In addition, tendon-derived stem cells (TDSCs), which are stem cells located in tendons, play a major role in maintaining tissue homeostasis and postinjury repair. In this study, injectable gelatine methacryloyl (GelMA) microparticles containing PRP laden with TDSCs (PRP-TDSC-GM) were prepared by a projection-based 3D bioprinting technique. Our results showed that PRP-TDSC-GM could promote tendon differentiation in TDSCs and reduce the inflammatory response by downregulating the PI3K-AKT pathway, thus promoting the structural and functional repair of tendons in vivo.

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