Osteoclast-independent bone resorption by fibroblast-like cells
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R. Gay | S. Gay | T. Pap | M. George | G. Pap | A. Machner | W. Aicher | W. Neumann | K. Hummel | S. Drynda | Anja Claus | B. Stein | Peter Schwartz | S. Ohtsu | P. Schwartz
[1] M. Karin,et al. c-Jun N-terminal kinase is required for metalloproteinase expression and joint destruction in inflammatory arthritis. , 2001, The Journal of clinical investigation.
[2] R. Gay,et al. Development and characteristics of a synovial-like interface membrane around cemented tibial hemiarthroplasties in a novel rat model of aseptic prosthesis loosening. , 2001, Arthritis and rheumatism.
[3] G. Firestein,et al. Invasiveness of synovial fibroblasts is regulated by p53 in the SCID mouse in vivo model of cartilage invasion. , 2001, Arthritis and rheumatism.
[4] M. Horton,et al. Generation of human osteoclasts in stromal cell‐free and stromal cell‐rich cultures: differences in osteoclast CD11c/CD18 integrin expression , 2001, British journal of haematology.
[5] Thomas Pap,et al. Arthritis , 2000, Nature Biotechnology.
[6] H. Gaub,et al. Metabolic activation stimulates acid production in synovial fibroblasts. , 2000, The Journal of rheumatology.
[7] S. Teitelbaum,et al. Bone resorption by osteoclasts. , 2000, Science.
[8] R. Gay,et al. Differential expression pattern of membrane-type matrix metalloproteinases in rheumatoid arthritis. , 2000, Arthritis and rheumatism.
[9] U. Müller-Ladner,et al. Expression of sentrin, a novel antiapoptotic molecule, at sites of synovial invasion in rheumatoid arthritis. , 2000, Arthritis and rheumatism.
[10] P. Petrow,et al. Cysteine proteinase cathepsin K mRNA is expressed in synovium of patients with rheumatoid arthritis and is detected at sites of synovial bone destruction. , 1998, The Journal of rheumatology.
[11] Sakae Tanaka,et al. A new mechanism of bone destruction in rheumatoid arthritis: synovial fibroblasts induce osteoclastogenesis. , 1997, Biochemical and biophysical research communications.
[12] D. Murray,et al. Human arthroplasty derived macrophages differentiate into osteoclastic bone resorbing cells , 1997, Annals of the rheumatic diseases.
[13] S. Santavirta,et al. Macrophage-colony stimulating factor (M-CSF) is increased in the synovial-like membrane of the periprosthetic tissues in the aseptic loosening of total hip replacement (THR) , 1997, Clinical Rheumatology.
[14] T. Sumida,et al. Characterisation of fibroblast-like cells in pannus lesions of patients with rheumatoid arthritis sharing properties of fibroblasts and chondrocytes , 1997, Annals of the rheumatic diseases.
[15] J. Kriegsmann,et al. Synovial fibroblasts of patients with rheumatoid arthritis attach to and invade normal human cartilage when engrafted into SCID mice. , 1996, The American journal of pathology.
[16] S. Santavirta,et al. Tumor necrosis factor-alpha (TNF-alpha) in loosening of total hip replacement (THR). , 1996, Clinical and experimental rheumatology.
[17] Y. Moriyama,et al. Immunohistochemical localization of vacuolar H(+)-ATPase in osteoclasts of rat tibiae. , 1994, Archives of histology and cytology.
[18] N. Athanasou,et al. Polymethylmethacrylate-induced inflammatory macrophages resorb bone. , 1992, The Journal of bone and joint surgery. British volume.
[19] P. Nijweide,et al. Identification of osteopontin in isolated rabbit osteoclasts. , 1992, Biochemical and biophysical research communications.
[20] R. Baron,et al. Sensitivity to vanadate and isoforms of subunits A and B distinguish the osteoclast proton pump from other vacuolar H+ ATPases. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[21] P. Traub,et al. Species-specific recognition patterns of monoclonal antibodies directed against vimentin. , 1992, Experimental cell research.
[22] J. Quinn,et al. Tumour infiltrating macrophages are capable of bone resorption. , 1992, Journal of cell science.
[23] M. Sporn,et al. Anchorage-independent growth of synoviocytes from arthritic and normal joints. Stimulation by exogenous platelet-derived growth factor and inhibition by transforming growth factor-beta and retinoids. , 1989, The Journal of clinical investigation.
[24] T. Bringman,et al. Stimulation of bone resorption and inhibition of bone formation in vitro by human tumour necrosis factors , 1986, Nature.
[25] A. Boyde,et al. Resorption of dentine by isolated osteoclasts in vitro , 1984, British Dental Journal.
[26] W H Harris,et al. The synovial-like membrane at the bone-cement interface in loose total hip replacements and its proposed role in bone lysis. , 1983, The Journal of bone and joint surgery. American volume.
[27] C. Cremers,et al. Mutations in the gene encoding B1 subunit of H+-ATPase cause renal tubular acidosis with sensorineural deafness , 1999, Nature Genetics.
[28] R. Gay,et al. Membrane-type-1 matrix metalloproteinase is abundantly expressed in fibroblasts and osteoclasts at the bone-implant interface of aseptically loosened joint arthroplasties in situ. , 1999, The Journal of rheumatology.
[29] A. Roessner,et al. Development of osteoarthritis in the knee joints of Wistar rats after strenuous running exercise in a running wheel by intracranial self-stimulation. , 1998, Pathology, research and practice.
[30] H. Eibel,et al. TNF-αα induces the transcription factor Egr-1, pro-inflammatory cytokines and cell proliferation in human skin fibroblasts and synovial lining cells , 1998, Rheumatology International.
[31] A. Moran,et al. Regulation of intracellular pH in J774 murine macrophage cells: H+ extrusion processes. , 1995, The American journal of physiology.
[32] J. W. Parce,et al. The light-addressable potentiometric sensor: principles and biological applications. , 1994, Annual review of biophysics and biomolecular structure.
[33] L. Hayman,et al. Correspondence , 1992, Neuroradiology.