Reaction-Diffusion-Delay Model for EPO/TNF-α Interaction in articular cartilage lesion abatement
Open Access
- 1 January 2012
- journal article
- Published by Springer Nature in Biology Direct
- Vol. 7 (1), 9
- https://doi.org/10.1186/1745-6150-7-9
Abstract
Injuries to articular cartilage result in the development of lesions that form on the surface of the cartilage. Such lesions are associated with articular cartilage degeneration and osteoarthritis. The typical injury response often causes collateral damage, primarily an effect of inflammation, which results in the spread of lesions beyond the region where the initial injury occurs. We present a minimal mathematical model based on known mechanisms to investigate the spread and abatement of such lesions. The first case corresponds to the parameter values listed in Table 1, while the second case has parameter values as in Table 2. In particular we represent the "balancing act" between pro-inflammatory and anti-inflammatory cytokines that is hypothesized to be a principal mechanism in the expansion properties of cartilage damage during the typical injury response. We present preliminary results of in vitro studies that confirm the anti-inflammatory activities of the cytokine erythropoietin (EPO). We assume that the diffusion of cytokines determine the spatial behavior of injury response and lesion expansion so that a reaction diffusion system involving chemical species and chondrocyte cell state population densities is a natural way to represent cartilage injury response. We present computational results using the mathematical model showing that our representation is successful in capturing much of the interesting spatial behavior of injury associated lesion development and abatement in articular cartilage. Further, we discuss the use of this model to study the possibility of using EPO as a therapy for reducing the amount of inflammation induced collateral damage to cartilage during the typical injury response. The mathematical model presented herein suggests that not only are anti-inflammatory cytokines, such as EPO necessary to prevent chondrocytes signaled by pro-inflammatory cytokines from entering apoptosis, they may also influence how chondrocytes respond to signaling by pro-inflammatory cytokines.Keywords
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This publication has 11 references indexed in Scilit:
- Computational Modeling of Interactions between Multiple Myeloma and the Bone MicroenvironmentPLOS ONE, 2011
- Rotenone prevents impact‐induced chondrocyte deathJournal of Orthopaedic Research, 2010
- Oxidant conditioning protects cartilage from mechanically induced damageJournal of Orthopaedic Research, 2010
- Erythropoietin‐mediated tissue protection: reducing collateral damage from the primary injury responseJournal of Internal Medicine, 2008
- Cell death in osteoarthritisCurrent Rheumatology Reports, 2008
- DAMPs, PAMPs and alarmins: all we need to know about dangerJournal of Leukocyte Biology, 2006
- Alarmin(g) news about dangerEMBO Reports, 2006
- Site-Specific Molecular Diffusion in Articular Cartilage Measured using Fluorescence Recovery after PhotobleachingAnnals of Biomedical Engineering, 2003
- The MATLAB ODE SuiteSIAM Journal on Scientific Computing, 1997
- Restoration of Injured or Degenerated Articular CartilageJournal of the American Academy of Orthopaedic Surgeons, 1994