Enthesis-related progenitors recruited from the subacromial bursa contribute to rotator cuff healing in rats.

Tanimura, Shuntaro; Tokunaga, Takuya; Kawakami, Junki; Xiao, Tian; Hikaru, Goshogawa; Tsuyama, Tomonori; Karasugi, Tatsuki; Yamagata, Kazuya et al. · J Shoulder Elbow Surg · 2025

basic_science · Level V

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Abstract

Understanding the origin and regulatory mechanisms of enthesis-related progenitor cells expressing Scx and Sox9 may help develop therapeutic approaches to improve endogenous rotator cuff (RC) tendon-to-bone healing capabilities. This study explores the characteristics of Scx<sup>+</sup>/Sox9<sup>+</sup> cells during RC healing. The effects of subacromial bursa (SAB) preservation on Scx<sup>+</sup> and Scx<sup>+</sup>/Sox9<sup>+</sup> progenitor cell recruitment and the histological and biomechanical maturation of postoperative RC tendon-to-bone healing are evaluated in rats. Twelve-week-old wild-type Sprague-Dawley rats (n = 71) and ScxGFP transgenic rats (n = 6) underwent unilateral surgery for supraspinatus tendon repair immediately after transection. Four in vivo models were used: intact, SAB injury-only, SAB-preserved RC repair, and SAB-resected RC repair. Cells isolated from reparative entheses one week postoperative and intact entheses were analyzed via single-cell RNA sequencing (scRNA-seq). Progenitor marker (CD34, PDGFRα, Scx, and Sox9) expression was assessed by immunostaining. The SAB-preserved and SAB-resected RC repair groups were compared through histological and biomechanical analysis three and six weeks postoperative. scRNA-seq identified 17 transcriptionally distinct cell clusters isolated from the intact and SAB-preserved groups. After reclustering the mesenchymal population, four distinct clusters were identified: Pdgfra<sup>+/</sup>Cd34<sup>+</sup> mesenchymal progenitors, tendon progenitors, Scx<sup>+</sup> tendon fibroblasts, and Scx<sup>+</sup>/Sox9<sup>+</sup> enthesis progenitors. Lineage analysis revealed that Scx<sup>+</sup> and Scx<sup>+</sup>/Sox9<sup>+</sup> cells differentiated from Pdgfra<sup>+</sup>/Cd34<sup>+</sup> mesenchymal progenitors. In immunostained intact entheses, PDGFRα<sup>+</sup> and CD34<sup>+</sup> cells were localized on the surface of the supraspinatus tendon, and humeral greater tuberosity in the area assumed to be the SAB layer. In reparative entheses, Scx<sup>+</sup> and Scx<sup>+</sup>/Sox9<sup>+</sup> cells were within the reparative tissue between the bone and supraspinatus tendon, near the SAB, and sparser in the SAB-resected group. The second harmonic generation signal revealed that the SAB-resected group exhibited less collagen fiber orientation and inferior biomechanical properties. At three weeks postoperative, the SAB-preserved RC repair group exhibited higher ultimate load to failure (SAB-preserved: 6.8 ± 1.9 N vs. SAB-resected: 3.3 ± 2.2 N, P = 0.0004) and ultimate stress to failure (SAB-preserved: 1.1 ± 0.4 N/mm<sup>2</sup> vs. SAB-resected: 0.5 ± 0.3 N/mm<sup>2</sup>, P = 0.0001). During the RC repair process, Scx<sup>+</sup> and Scx<sup>+</sup>/Sox9<sup>+</sup> enthesis-related progenitors may be associated with endogenous PDGFRα<sup>+</sup> and CD34<sup>+</sup> mesenchymal stem/progenitors in the SAB near the tendon-bone repair site. SAB preservation positively impacts early histological and mechanical maturation after RC tendon-bone repair. Basic Science Study; In-vivo Animal Model; Microbiology.

Medical subject headings

Anatomy