Double membrane platelet-rich fibrin (PRF) – Synovium succeeds in regenerating cartilage defect at the knee: An experimental study on rabbit

This study aims to prove the healing results (regeneration) in cartilage defects using a combination treatment of microfractures and transplantation synovium-platelet rich fibrin (S-PRF). A cartilage defect was made in the trochlear groove of the knee of adult New Zealand white rabbits, and was clas...

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Veröffentlicht in:Heliyon 2023-02, Vol.9 (2), p.e13139-e13139, Article e13139
Hauptverfasser: Taufik S, Ahmad, Dirja, Bayu Tirta, Utomo, Dwikora Novembri, Usman, Muhammad Andry, Sakti, Muhammad, Saleh, Muhammad Ruksal, Hatta, Mochammad, Budu
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Sprache:eng
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Zusammenfassung:This study aims to prove the healing results (regeneration) in cartilage defects using a combination treatment of microfractures and transplantation synovium-platelet rich fibrin (S-PRF). A cartilage defect was made in the trochlear groove of the knee of adult New Zealand white rabbits, and was classified into three treatment groups. The group 1 was cartilage defect without treatment, 2 with microfracture treatment, and 3 with microfracture covered with a synovium-platelet rich fibrin (S-PRF) membrane. Twelve weeks after the intervention, the animals were macroscopically and histologically examined, and evaluated by the International Cartilage Repair Society (ICRS). Additionally, the expression of aggrecan and type 2 collagen was examined by real-time-PCR. The ICSR scores for macroscopic were significantly higher in the microfracture and S-PRF transplant group than in the other groups. Also, the ICSR scores for histology were significantly higher in this group. The expression of aggrecan and type 2 collagen was higher in the group that received complete treatment. Microfractures and transplantation of synovium-platelet rich fibrin (S-PRF) can regenerate knee cartilage defects which have been shown to increase the expression of mRNA aggrecan and mRNA type 2 collagen resulting in excellent repair.
ISSN:2405-8440
2405-8440
DOI:10.1016/j.heliyon.2023.e13139