Wear particles and surface topographies are modulators of osteoclastogenesis in vitro
- 9 November 2004
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research Part A
- Vol. 72A (1), 67-76
- https://doi.org/10.1002/jbm.a.30202
Abstract
Prosthetic and osteosynthetic implants from metal alloys will be indispensable in orthopedic surgery, as long as tissue engineering and biodegradable bone substitutes do not lead to products that will be applied in clinical routine for the repair of bone, cartilage, and joint defects. Therefore, the elucidation of the interactions between the periprosthetic tissues and the implant remains of clinical relevance and several factors are known to affect the longevity of implants. Within this study, the effects of metal particles and surface topography on the recruitment of osteoclasts was investigated in vitro in a coculture of osteoblasts and bone marrow cells. The cells were grown in the presence of particles of different sizes and chemical composition or on metal discs with polished or sandblasted surfaces, respectively. At the end of the culture, newly formed osteoclasts were counted. Osteoclastogenesis was reduced when particles were added directly to the coculture. The effect depended on the size of the particles, small particles exerting stronger effects than larger ones. The chemical composition of the particles, however, did not affect the development of osteoclasts. In cocultures grown on sandblasted surfaces, osteoclasts developed at higher rates than they did in cultures on polished surfaces. The data demonstrate that wear particles and implant surfaces affect osteoclastogenesis and thus may be involved in the induction of local bone resorption and the formation of osteolytic lesions, leading eventually to the loosening of orthopedic implants. © 2004 Wiley Periodicals, Inc. J Biomed Mater Res 72A: 67–76, 2005Keywords
This publication has 39 references indexed in Scilit:
- New insight into the mechanism of hip prosthesis loosening: Effect of titanium debris size on osteoblast functionJournal of Orthopaedic Research, 2004
- Direct and indirect induction of apoptosis in human mesenchymal stem cells in response to titanium particlesJournal of Orthopaedic Research, 2003
- Interfacial kinetics of titanium‐ and cobalt‐based implant alloys in human serum: Metal release and biofilm formationJournal of Biomedical Materials Research Part A, 2003
- Titanium surface topography alters cell shape and modulates bone morphogenetic protein 2 expression in the J774A.1 macrophage cell lineJournal of Biomedical Materials Research Part A, 2002
- Titanium particles suppress expression of osteoblastic phenotype in human mesenchymal stem cellsJournal of Orthopaedic Research, 2002
- Prostaglandins mediate the effects of titanium surface roughness on MG63 osteoblast-like cells and alter cell responsiveness to 1?,25-(OH)2D3Journal of Biomedical Materials Research, 1998
- Migration, Particles, and Fluid PressurePublished by Wolters Kluwer Health ,1998
- Regulation of bone cells by particle-activated mononuclear phagocytesThe Journal of Bone and Joint Surgery, 1997
- Crevice Corrosion of Cemented Titanium Alloy Stems in Total Hip ReplacementsClinical Orthopaedics and Related Research, 1996
- Arthroplasty implant biomaterial particle associated macrophages differentiate into lacunar bone resorbing cells.Annals Of The Rheumatic Diseases, 1996