Objective: This study aimed to investigate whether acupotomy can regulate the activity of factors related to the TGF-β 1/Smad pathway, thereby reducing the degree of cartilage fibrosis in knee osteoarthritis (KOA) and alleviating cartilage degradation. Methods: A modified Videman’s long-term knee joint immobilization method in the extended position was used to establish the KOA model. Behavioral Lequesne MG scoring was performed before and after the acupotomy intervention. Masson staining was used to observe the morphology and structure of the cartilage using light microscopy and scanning electron microscopy (SEM). Western blotting and real-time quantitative polymerase chain reaction (RT-PCR) were used to detect the protein levels and mRNA expression of Smad3, Smad7, TGF-β 1, collagen type I (Col-I), collagen type II (Col-II), and collagen type III (Col-III) in the cartilage tissue of acupotomy-treated KOA rabbits. Results: The modified Lequesne MG score was significantly higher in the KOA group than that in the control group. Histologically, the cartilage in the KOA group exhibited fissures, matrix dissolution, reduced Col-II content, and obvious fibrosis. TGF-β 1 and Smad3 in the TGF-β 1/SMAD pathway were significantly upregulated, and Smad7 was down-regulated. Acupotomy treatment reduced the protein and mRNA expression levels of Col-I and Col-III, attenuated the loss of Col-II in cartilage extracellular matrix, and effectively delayed cartilage degeneration in KOA rabbits. This process may be achieved by regulating the factors related to the TGF-β 1/SMAD pathway. Conclusion: In the KOA rabbit model, acupotomy alleviated the degree of fibrosis by regulating factors related to the TGF-β 1/Smad pathway, thereby delaying cartilage degeneration. Keywords: cartilage, fibrosis, TGF-β 1/Smad pathway, acupotomy, knee osteoarthritis
Xing et al. (2026) studied this question.