- S100B regulates inflammatory response during osteoarthritis via fibroblast growth factor receptor 1 signaling.
S100B regulates inflammatory response during osteoarthritis via fibroblast growth factor receptor 1 signaling.
The present study aimed to investigate the role of S100B in the inflammation process during osteoarthritis (OA). OA cartilage samples were collected for S100B expression analysis. S100B expression levels were significantly increased in patients with OA compared with the Controls (1.28ยฑ0.66ย vs.ย 0.42ยฑ0.31; P=0.01) and were determined to be correlated with TNFโฮฑ (r=0.42; P=0.04) and ILโ1ฮฒ (r=0.73; P=0.001) expression levels. Orthopedic casting tape was used to immobilize the right knee at 180ห extension of adult female New Zealand white rabbits for 4ย weeks to establish an OA model. Cartilage specimens from the medial femoral condyle of these rabbits were used for histological confirmation and immunohistochemical analyses, whereas synovial fluid was used in ELISA assays for tumor necrosis factor (TNF)โฮฑ and interleukin (IL)โ1ฮฒ expression levels. Human synovial fibroblasts from the knee synovial tissues of normal patients with traumatic injury were transfected with S100B overexpression and knockdown plasmids and subjected to lipopolysaccharide (LPS) stimulation; subsequently, TNFโฮฑ and ILโ1ฮฒ expression levels in conditioned medium were determined by ELISA; S100B overexpression and knockdown significantly increased and decreased the TNFโฮฑ and ILโ1ฮฒ expression levels, respectively. Increased TNFโฮฑ (573.3ยฑ15.4 vs. 102.6ยฑ8.7ย pg) and ILโ1ฮฒ (378.6ยฑ7.2 vs. 170.1ยฑ5.8ย pg) expression levels were detected in OA model rabbits compared with the Control rabbits. Additionally, S100B, fibroblast growth factor (FGF)โ1 and FGF receptor (FGFR)โ1 mRNA and protein expression levels were increased in OA model rabbits compared with the Control group. FGFR1 knockdown significantly decreased TNFโฮฑ and ILโ1ฮฒ expression levels in LPSโstimulated S100Bโoverexpressing human synovial fibroblasts. S100B is involved in FGFR1 signalingโmediated inflammatory response during OA, which may be considered as a potential therapeutic target.