Tenogenic Induction From Induced Pluripotent Stem Cells Unveils the Trajectory Towards Tenocyte Differentiation

The musculoskeletal system is integrated by tendons that are characterized by the expression of scleraxis (Scx), a functionally important transcription factor. Here, we newly developed a tenocyte induction method using induced pluripotent stem cells established from transgenic mice by monitoring flu...

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Veröffentlicht in:Frontiers in cell and developmental biology 2022-03, Vol.10, p.780038-780038
Hauptverfasser: Yoshimoto, Yuki, Uezumi, Akiyoshi, Ikemoto-Uezumi, Madoka, Tanaka, Kaori, Yu, Xinyi, Kurosawa, Tamaki, Yambe, Shinsei, Maehara, Kazumitsu, Ohkawa, Yasuyuki, Sotomaru, Yusuke, Shukunami, Chisa
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Sprache:eng
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Zusammenfassung:The musculoskeletal system is integrated by tendons that are characterized by the expression of scleraxis (Scx), a functionally important transcription factor. Here, we newly developed a tenocyte induction method using induced pluripotent stem cells established from transgenic mice by monitoring fluorescence, which reflects a dynamic differentiation process. Among several developmentally relevant factors, transforming growth factor-beta 2 (TGF-β2) was the most potent inducer for differentiation of tenomodulin-expressing mature tenocytes. Single-cell RNA sequencing (scRNA-seq) revealed 11 distinct clusters, including mature tenocyte population and tenogenic differentiation trajectory, which recapitulated the developmental process. Analysis of the scRNA-seq dataset highlighted the importance of retinoic acid (RA) as a regulatory pathway of tenogenic differentiation. RA signaling was shown to have inhibitory effects on entheseal chondrogenic differentiation as well as TGF-β2-dependent tenogenic/fibrochondrogenic differentiation. The collective findings provide a new opportunity for tendon research and further insight into the mechanistic understanding of the differentiation pathway to a tenogenic fate.
ISSN:2296-634X
2296-634X
DOI:10.3389/fcell.2022.780038