Lab on a Chip · 2021 · 80 citations · 27 references
Rheumatoid arthritis is characterised by a progressive, intermittent inflammation at the synovial membrane, which ultimately leads to the destruction of the synovial joint. The synovial membrane as the joint capsule's inner layer is lined with fibroblast-like synoviocytes that are the key player supporting persistent arthritis leading to bone erosion and cartilage destruction. While microfluidic models that model molecular aspects of bone erosion between bone-derived cells and synoviocytes have been established, RA's synovial-chondral axis has not yet been realised using a microfluidic 3D model based on human patient <i>in vitro</i> cultures. Consequently, we established a chip-based three-dimensional tissue coculture model that simulates the reciprocal cross talk between individual synovial and chondral organoids. When co-cultivated with synovial organoids, we could demonstrate that chondral organoids induce a higher degree of cartilage physiology and architecture and show differential cytokine response compared to their respective monocultures highlighting the importance of reciprocal tissue-level cross talk in the modelling of arthritic diseases.
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Distinct fibroblast subsets drive inflammation and damage in arthritis
Adam P. Croft, Joana Campos, Kathrin Jansen et al. · Nature · 2019 · 881 citations · Full text
Mechanical confinement regulates cartilage matrix formation by chondrocytes
Hong-Pyo Lee, Luo Gu, David Mooney et al. · Nature Materials · 2017 · 513 citations · Full text
Notch signalling drives synovial fibroblast identity and arthritis pathology
Kevin Wei, Ilya Korsunsky, Jennifer L. Marshall et al. · Nature · 2020 · 494 citations · Full text