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March 19, 2026Orthopaedic Journal of Sports Medicine0 citationsOpen Access

Fibulin-7 Promotes Short-term Histological Bone-Tendon Interface Healing in a Murine Rotator Cuff Repair Model

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JLJ LiHCHuabin ChenWZWeikun Zheng

Key Points

  • This study aims to evaluate the role of fibulin-7 in enhancing tendon-bone healing in aging mice.
  • Used 5 young and 5 aged mice for baseline evaluations.
  • Conducted rotator cuff repair in 20 aged mice, dividing them into FBLN7 and control groups.
  • Performed micro–computed tomography, histological analysis, and biomechanical testing on harvested samples.
  • Aged mice showed lower FBLN7 expression at the bone-tendon interface compared to young mice.
  • FBLN7 group displayed improved bone morphology and denser cortical bone.
  • FBLN7 group had significantly higher failure loads and stiffness than controls.
  • Enhanced fibrocartilage formation was observed in the FBLN7 group.
  • Upregulation of osteogenic, chondrogenic, and tenogenic factors was noted at different time points.

Abstract

Background: Aging is associated with degenerative changes in both bone and tendon tissues, leading to impaired healing at the bone-tendon interface (BTI) during rotator cuff repair. The role of fibulin-7 (FBLN7) in enhancing BTI healing in aged populations warrants an investigation because of its potential regenerative properties. Purpose: To determine whether FBLN7 can enhance tendon-bone healing and regeneration in a model of rotator cuff repair in aging mice. Study Design: Controlled laboratory study. Methods: A total of 5 young (8 weeks old) and 5 aged (18 months old) C57BL/6 mice were used for a baseline supraspinatus tendon–humerus evaluation. Another 20 aged mice underwent rotator cuff repair and were allocated to either the FBLN7 (intervention) group (n = 10), receiving a fibrin sealant with FBLN7, or a control group (n = 10), receiving a standard fibrin sealant. Mice were euthanized at 4 (n = 5 per group) and 8 (n = 5 per group) weeks after surgery. The supraspinatus tendon–humerus complexes were harvested for micro–computed tomography, histological analysis, and biomechanical testing. Results: The expression of FBLN7 was significantly lower in aged mice at the BTI compared with young mice ( P < .05). Histological and biomechanical assessments revealed that the FBLN7 group exhibited improved subchondral bone morphology ( P < .05) and denser cortical bone ( P < .05), along with significantly higher failure loads and stiffness ( P < .05), compared with the control group. Additionally, the FBLN7 group demonstrated superior fibrocartilage formation ( P < .05) and the upregulated expression of osteogenic (Runx2; P < .01 at week 4 and P < .05 at week 8), chondrogenic (Sox9; P < .01 at week 4 and P < .05 at week 8), and tenogenic (SCX; P < .05 at week 4) factors. Conclusion: FBLN7 significantly enhanced healing and regeneration at the BTI in aged mice, supporting its potential as a therapeutic intervention to improve rotator cuff repair outcomes. Clinical Relevance: These findings highlight FBLN7’s potential role in clinical sports medicine, suggesting that it could be utilized to promote better recovery and healing in aged patients undergoing rotator cuff repair, addressing a critical challenge in postoperative rehabilitation.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69bb92f2496e729e62980b3ehttps://doi.org/10.1177/23259671251410200
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