Procr<sup>+</sup> chondroprogenitors sense mechanical stimuli to govern articular cartilage maintenance and regeneration.

Zhu, Qiaoling; Yin, Feng; Qin, Jiachen; Shi, Wanyu; Liu, Yaojia; Zhao, Yuanyuan; Wang, Jianfang; Zhang, Lei et al. · Cell · 2025

basic_science · Level V

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Abstract

Protein C receptor<sup>+</sup> (Procr<sup>+</sup>) cells were identified as stem or progenitor cells in multiple adult tissues. However, whether mechanical stimuli fine-tune their activation and differentiation remain unknown. Here, we found rare Procr<sup>+</sup> cells in the superficial layer of tibial articular cartilage and meniscus, which keep replenishing chondrocytes in postnatal knee joints. Mechanical stimulation by forced running significantly increased the frequency of Procr<sup>+</sup> cells, whereas mechanical unloading by tail suspension showed opposite effects. Osteoarthritis (OA) activated Procr<sup>+</sup> cells to repair cartilage erosion, whereas genetic ablation of Procr<sup>+</sup> cells accelerated OA progression. Pharmacological or genetic inhibition of the mechanosensor Piezo1 significantly blunted cartilage regeneration by Procr<sup>+</sup> cells and exacerbated OA. In contrast, intra-articular administration of a Piezo1 agonist ameliorated OA symptoms. Purified mouse or human Procr<sup>+</sup> superficial cells robustly repair articular cartilage after expansion and in vivo transplantation. Together, we discovered a mechanosensitive chondroprogenitor population indispensable for articular cartilage maintenance and regeneration.

Medical subject headings