Toll-Like Receptors and Rheumatoid Arthritis
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Publisher
Humana Press
Link
http://link.springer.com/content/pdf/10.1007/978-1-59745-541-1_20.pdf
Reference8 articles.
1. Ospelt, C., Neidhart, M., Gay, R. E. & Gay, S. (2004). Synovial activation in rheumatoid arthritis. Front Biosci. 9, 2323–2334.
2. Brentano, F., Schorr, O., Gay, R. E., Gay, S. & Kyburz, D. (2005). RNA released from necrotic synovial fluid cells activates rheumatoid arthritis synovial fibroblasts via Toll-like receptor 3. Arthritis Rheum. 52, 2656–2665.
3. Roelofs, M. F., Boelens, W. C., Joosten, L. A., bdollahi-Roodsaz, S., Geurts, J., Wunderink, L. U., Schreurs, B. W., van den Berg, W. B. & Radstake, T. R. (2006). Identification of small heat shock protein B8 (HSP22) as a novel TLR4 ligand and potential involvement in the pathogenesis of rheumatoid arthritis. J. Immunol. 176, 7021–7027.
4. Brentano, F., Kyburz, D., Schorr, O., Gay, R. & Gay, S. (2005). The role of Toll-like receptor signalling in the pathogenesis of arthritis. Cell Immunol. 233, 90–96.
5. Sacre, S. M., Andreakos, E., Kiriakidis, S., Amjadi, P., Lundberg, A., Giddins, G., Feldmann, M., Brennan, F. & Foxwell, B. M. (2007). The Toll-like receptor adaptor proteins MyD88 and Mal/TIRAP contribute to the inflammatory and destructive processes in a human model of rheumatoid arthritis. Am. J. Pathol. 170, 518–525.
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