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Cell Commun Signal ; 17(1): 134, 2019 10 22.
Article in English | MEDLINE | ID: mdl-31640732

ABSTRACT

BACKGROUND: Osteoarthritis (OA) is one of the most prevalent joint disease, and there are still no effective therapeutic agents or clinical methods for the cure of this disease to date. The degradation of cartilage extracellular matrix (ECM) is a major cause of OA. METHOD: IL-1ß was used to induce chondrogenic degradation. Q-PCR and Western blotting were used to detect mRNA and protein level, respectively. ELISA was used to detect the secreted TNF-α and IL-6 level. Immunofluorescence was used to detect the protein level of Aggrecan, Collagen II and ki67. TUNEL and flow cytometry were used to examine cell apoptosis of chondrocytes. ChIP and luciferase assay were used to study molecular gene regulation. Osteoarthritic animal model and Safranin-O staining were used to determine the in vivo OA phenotype. RESULTS: The expression of ADAM8 was up-regulated in osteoarthritic chondrocytes. Knockdown of ADAM8 suppressed the OA phenotype in the in vitro OA cell model. ADAM8 regulated OA progression through the activation of EGFR/ERK/NF-κB signaling pathway. Inhibition of Notch signaling suppressed OA phenotype in the in vitro OA cell model. Notch signaling regulated the gene expression of ADAM8 directly via Hes1. Notch1-ADAM8 positive feedback loop promoted the progression of OA in vivo. CONCLUSION: Notch1-ADAM8 feed-back loop regulates the degradation of chondrogenic extracellular matrix and osteoarthritis progression.


Subject(s)
ADAM Proteins/metabolism , Chondrocytes/pathology , Disease Progression , Extracellular Matrix/metabolism , Feedback, Physiological , Membrane Proteins/metabolism , Osteoarthritis/metabolism , Osteoarthritis/pathology , Receptor, Notch1/metabolism , ADAM Proteins/deficiency , ADAM Proteins/genetics , Animals , Cell Line , ErbB Receptors/metabolism , Extracellular Signal-Regulated MAP Kinases/metabolism , Gene Knockdown Techniques , Membrane Proteins/deficiency , Membrane Proteins/genetics , NF-kappa B/metabolism , Phenotype , Rats , Rats, Sprague-Dawley , Signal Transduction , Up-Regulation
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