Identification of the tendon/ligament stem cell in mice and humans.

Hu, Lingling; Sun, Jun; Morse, Kyle W; Bok, Seoyeon; Zheng, Yimin; Chan, Un In; Choi, Han; Macfarlane, Eugenie et al. · Cell · 2026

basic_science · Level V

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Abstract

Ligamentum flavum (LF) hypertrophy resulting in spinal cord compression is a key cause of lumbar spinal stenosis (LSS). There are no medical therapies for LSS, in part because the identity of the tendon/ligament stem cell (TLSC) mediating LSS remains unclear. Here, we identify the TLSC present in all tendons and ligaments in humans and mice as Lin-Thy1.2-Sca-1-CD73+CD140α- cells that display self-renewal and give rise to all other tenocyte lineage cells. This TLSC also sits at the apex of their differentiation hierarchy, as determined by in vivo somatic-variant-based lineage tracing. LSS induction led to druggable, calcium signaling-dependent, cell-intrinsic reprogramming of the TLSCs to increase their tenocyte output. Overall, this work identifies the TLSC and establishes dysregulated differentiation of this cell as a mechanism contributing to LSS. This TLSC is anticipated to play a central role in other disorders of tendons and ligaments.