Literature DB >> 33572124

Effect of Rubus idaeus Extracts in Murine Chondrocytes and Explants.

Morgane Bourmaud1, Mylene Zarka1, Romain Le Cozannet2, Pascale Fança-Berthon2, Eric Hay1, Martine Cohen-Solal1.   

Abstract

Osteoarthritis is characterized by cartilage loss resulting from the activation of chondrocytes associated with a synovial inflammation. Activated chondrocytes promote an increased secretion of matrix proteases and proinflammatory cytokines leading to cartilage breakdown. Since natural products possess anti-inflammatory properties, we investigated the direct effect of Rubus idaeus extracts (RIE) in chondrocyte metabolism and cartilage loss. The effect of RIE in chondrocyte metabolism was analyzed in murine primary chondrocytes and cartilage explants. We also assessed the contribution of RIE in an inflammation environment by culturing mice primary chondrocytes with the supernatant of Raw 264.7 macrophage-like cells primed with RIE. In primary chondrocytes, RIE diminished chondrocyte hypertrophy (Col10), while increasing the expression of catabolic genes (Mmp-3, Mmp-13) and reducing anabolic genes (Col2a1, Acan). In cartilage explants, Rubus idaeus prevented the loss of proteoglycan (14.84 ± 3.07% loss of proteoglycans with IL1 alone vs. 3.03 ± 1.86% with IL1 and 100 µg/mL of RIE), as well as the NITEGE neoepitope expression. RIE alone reduced the expression of Il1 and Il6 in macrophages, without changes in Tnf and Cox2 expression. The secretome of macrophages pre-treated with RIE and transferred to chondrocytes decreases the gene and protein expression of Mmp-3 and Cox2. In conclusion, these data suggest that RIE may protect from chondrocyte catabolism and cartilage loss in inflammatory conditions. Further evaluations are need before considering RIE as a candidate for the treatment for osteoarthritis.

Entities:  

Keywords:  Rubus idaeus; chondrocytes; inflammation; macrophages; osteoarthritis

Mesh:

Substances:

Year:  2021        PMID: 33572124      PMCID: PMC7915036          DOI: 10.3390/biom11020245

Source DB:  PubMed          Journal:  Biomolecules        ISSN: 2218-273X


  26 in total

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  1 in total

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  1 in total

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