High-Dose Statins Preserve Tendon-Bone Interface Healing Without Adversely Affecting Fatty Infiltration in a Rotator Cuff Repair Rat Model

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Purpose: To evaluate the effects of high-dose atorvastatin (hATZ) on histologic and biomechanical tendon-bone interface (TBI) healing and fatty infiltration following rotator cuff (RC) repair in a rat model. Methods: Twenty Sprague-Dawley rats underwent RC repair surgery on both shoulders, after which hATZ was administered orally for 4 weeks postoperatively. The effects of hATZ on TBI healing were assessed macroscopically, histologically, and biomechanically. Fatty infiltration was evaluated using Oil-Red-O staining and immunohistochemical analysis of gene marker expressions. Expression levels of muscle RING-finger protein 1 (MuRF-1) and muscle atrophy F-box protein, markers of muscle atrophy, and peroxisome proliferator-activated receptor γ and CCAAT/enhancer-binding protein α, transcription factors involved in adipogenesis, were assessed by quantitative real-time polymerase chain reaction to evaluate molecular changes related to muscle degeneration. Biomechanical tendon healing was measured using a universal testing machine, and histologic analysis was performed using hematoxylin and eosin and Masson's trichrome staining. Results: At 4 weeks postoperatively, systemic administration of hATZ did not negatively affect TBI healing following RC repair. Fatty infiltration analysis showed no significant difference between the hATZ group (3,322.16 ± 1,117.59 μm2) and the control group (3,946.94 ± 1,843.96 μm2) (P = .415). However, immunohistochemical analysis revealed that hATZ significantly inhibited the expression of MuRF-1 (P < .001), a key regulator of muscle atrophy, while the expression levels of muscle atrophy F-box protein (P = .803), peroxisome proliferator-activated receptor γ (P = .200), and CCAAT/enhancer-binding protein α (P = .909) remained unchanged. Histologic analysis confirmed no significant differences in collagen density (P = .142) or arrangement (P = .164) between the groups, and biomechanical testing showed comparable ultimate strength (P = .398) and load to failure (P = .464). Conclusions: High-dose atorvastatin did not impair histologic and biomechanical healing of the TBI in a rat model of RC repair. It also did not accelerate fatty infiltration of the muscle and led to a significant downregulation of the muscle atrophy–related marker MuRF-1. Clinical Relevance: This study shows that hATZ does not negatively affect TBI healing or muscle recovery following RC repair, supporting its continued use in patients requiring long-term statin therapy. © 2025 Arthroscopy Association of North America

제목
High-Dose Statins Preserve Tendon-Bone Interface Healing Without Adversely Affecting Fatty Infiltration in a Rotator Cuff Repair Rat Model
저자
Yoon, Jong-pil; Park, Sung-jin; Kim, Donghyun; Kim, Junyoung; Cho, Chul-hyun; Lee, Hyun-joo; Chung, Seok-won
DOI
10.1016/j.arthro.2025.07.043
발행일
2025-12
유형
Article
저널명
Arthroscopy - Journal of Arthroscopic and Related Surgery
권
41
호
12
페이지
4995 ~ 5004