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◆ Inflammation and Regeneration2026-08-08· Organoid

A human rheumatoid arthritis bone–cartilage interface organoid recapitulates bone, cartilage, and immune interactions

Mary Adams, Christopher Grieg, Waldemar Gonsiorek, Charlene Wetterstrand, J. Patrick O’Connor, Jessica Cottrell

原始摘要(英文原文)· Original abstract
Rheumatoid arthritis (RA) is a chronic autoimmune disease characterized by synovial inflammation, cartilage degradation, and bone erosion. Fibroblast-like synoviocytes (FLS) play a central role in perpetuating joint damage, yet current therapies inadequately address FLS-driven pathology. Existing preclinical models, including murine collagen-induced arthritis and conventional in vitro cultures, lack the complexity to fully recapitulate human disease mechanisms. Here, we describe the development of a three-dimensional (3D) RA bone–cartilage interface (BCI) organoid that integrates primary human mesenchymal stem cell-derived osteoblasts, peripheral blood mononuclear cell-derived osteoclasts and lymphocytes, immortalized human chondrocyte spheroids, and the RA synovial fibroblast cell line SW982. Exposure to TNF-α, IL-1β, and TGF-β induced pro-inflammatory cytokines, matrix-degrading enzymes, and increased fibrotic gene expression, accompanied by histological and microCT evidence of bone dysregulation. Therapeutic testing showed that methotrexate, etanercept, and tofacitinib reduced cytokine production and pro-inflammatory gene expression but had limited impact on profibrotic gene expression. This modular, human-derived RA BCI organoid reproduced key features of RA pathogenesis that can enable direct assessment of therapeutic mechanisms at the bone–cartilage–synovial interface. The RA BCI organoid provides a physiologically relevant, scalable platform for preclinical drug discovery and for identifying combination strategies that address both the inflammatory and fibrotic components of RA pathology.
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A human rheumatoid arthritis bone–cartilage interface organoid recapitulates bone, cartilage, and immune interactions — 科研速览 Science Skim