Gremlin-1 and BMP-4 Overexpressed in Osteoarthritis Drive an Osteochondral-Remodeling Program in Osteoblasts and Hypertrophic Chondrocytes.
Maria-Luisa Pérez-LozanoLaure SudreSandy van EegherDanièle CitadelleAudrey PigenetMarie-Helène Lafage-ProustPhilippe PastoureauFrédéric De CeuninckFrancis BerenbaumXavier HouardPublished in: International journal of molecular sciences (2022)
Osteoarthritis (OA) is a whole joint disease characterized by an important remodeling of the osteochondral junction. It includes cartilage mineralization due to chondrocyte hypertrophic differentiation and bone sclerosis. Here, we investigated whether gremlin-1 (Grem-1) and its BMP partners could be involved in the remodeling events of the osteochondral junction in OA. We found that Grem-1, BMP-2, and BMP-4 immunostaining was detected in chondrocytes from the deep layer of cartilage and in subchondral bone of knee OA patients, and was positively correlated with cartilage damage. ELISA assays showed that bone released more Grem-1 and BMP-4 than cartilage, which released more BMP-2. In vitro experiments evidenced that compression stimulated the expression and the release of Grem-1 and BMP-4 by osteoblasts. Grem-1 was also overexpressed during the prehypertrophic to hypertrophic differentiation of murine articular chondrocytes. Recombinant Grem-1 stimulated Mmp-3 and Mmp-13 expression in murine chondrocytes and osteoblasts, whereas recombinant BMP-4 stimulated the expression of genes associated with angiogenesis (Angptl4 and osteoclastogenesis (Rankl and Ccl2). In conclusion, Grem-1 and BMP-4, whose expression at the osteochondral junction increased with OA progression, may favor the pathological remodeling of the osteochondral junction by inducing a catabolic and tissue remodeling program in hypertrophic chondrocytes and osteoblasts.
Keyphrases
- bone regeneration
- mesenchymal stem cells
- poor prognosis
- extracellular matrix
- knee osteoarthritis
- bone mineral density
- rheumatoid arthritis
- binding protein
- end stage renal disease
- oxidative stress
- ejection fraction
- bone marrow
- endothelial cells
- long non coding rna
- chronic kidney disease
- soft tissue
- immune response
- hepatitis c virus
- body composition
- peritoneal dialysis
- liver injury
- mass spectrometry
- single molecule
- human immunodeficiency virus
- drug induced
- toll like receptor
- prognostic factors
- cell migration
- patient reported