Msx1+ stem cells recruited by bioactive tissue engineering graft for bone regeneration

Author:

Zhang Xianzhu,Jiang WeiORCID,Xie Chang,Wu Xinyu,Ren Qian,Wang Fei,Shen XilinORCID,Hong Yi,Wu Hongwei,Liao Youguo,Zhang Yi,Liang Renjie,Sun Wei,Gu Yuqing,Zhang Tao,Chen Yishan,Wei Wei,Zhang Shufang,Zou Weiguo,Ouyang HongweiORCID

Abstract

AbstractCritical-sized bone defects often lead to non-union and full-thickness defects of the calvarium specifically still present reconstructive challenges. In this study, we show that neurotrophic supplements induce robust in vitro expansion of mesenchymal stromal cells, and in situ transplantation of neurotrophic supplements-incorporated 3D-printed hydrogel grafts promote full-thickness regeneration of critical-sized bone defects. Single-cell RNA sequencing analysis reveals that a unique atlas of in situ stem/progenitor cells is generated during the calvarial bone healing in vivo. Notably, we find a local expansion of resident Msx1+ skeletal stem cells after transplantation of the in situ cell culture system. Moreover, the enhanced calvarial bone regeneration is accompanied by an increased endochondral ossification that closely correlates to the Msx1+ skeletal stem cells. Our findings illustrate the time-saving and regenerative efficacy of in situ cell culture systems targeting major cell subpopulations in vivo for rapid bone tissue regeneration.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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