The analgesic effect of low dose focal irradiation in a mouse model of bone cancer is associated with spinal changes in neuro-mediators of nociception
- 1 January 2006
- journal article
- Published by Wolters Kluwer Health in PAIN®
- Vol. 120 (1-2) , 188-201
- https://doi.org/10.1016/j.pain.2005.10.033
Abstract
Despite the widespread use of radiotherapy to treat painful bone metastases, the mechanism underlying the analgesic effect of low dose ionizing radiation is unknown. Bone cancer pain is mostly associated with an inflammatory response dominated by local activation of osteoclasts and by astrogliosis in the spinal cord. We determined the effects of a 6 Gy irradiation given focally on osteolytic sarcoma cells inoculated in humeri of mice. Pain behavior was assessed using the rota-rod and the grip force test. Seven days post-irradiation (day 17 post-tumor implantation) the performance of mice markedly improved on the rotarod (non-irradiated, 67+/-16s vs irradiated, 223 +/- 22 s; P = 0.0005), and the grip force test (non-irradiated, 34 +/- 4 g vs irradiated, 55 +/- 2 g; P = 0.001). This improvement was similar to the analgesia achieved with 30 mg/kg of the cyclooxygenase (COX) inhibitor ketorolac (Rota-rod, 67 +/- 16 s vs 178 +/- 35 s; P = 0.01: grip force test, 34 +/- 4 g, vs 60 +/- 5 g; P = 0.003). Following irradiation, the tumor mass and the number of osteoclasts did not decrease while the expression of two pro-inflammatory cytokines (monocyte chemoattractant protein (MCP)-1 and tumor necrosis factor (TNF)-alpha) increased. Tumor irradiation led to clear differences in the spinal cord. These include a decrease in glial activity (astrocytes and microglial cells) as well as pain mediators such as dynorphin, COX-2 and chemotactic cytokine receptor (CCR2). We conclude that the analgesic effect of low dose irradiation of bone cancer is associated with the alteration of nociceptive transmission in the central nervous system.Keywords
This publication has 60 references indexed in Scilit:
- Fibroblasts Express RANKL and Support Osteoclastogenesis in a COX-2-Dependent Manner After Stimulation With Titanium ParticlesJournal of Bone and Mineral Research, 2005
- Tumor-induced mechanical hyperalgesia involves CGRP receptors and altered innervation and vascularization of DsRed2 fluorescent hindpaw tumorsPain, 2005
- Bone cancer pain model in mice: evaluation of pain behavior, bone destruction and morphine sensitivityPharmacology Biochemistry and Behavior, 2004
- Pain control by ionizing radiation of bone metastasisThe International Journal of Developmental Biology, 2004
- Time‐ and dose‐dependent changes of intracellular cytokine and cytokine receptor profile of Ewing tumour subpopulations under the influence of ionizing radiationInternational Journal of Radiation Biology, 2003
- Strategies in Pain Management: New and Potential Indications for COX-2 Specific InhibitorsJournal of Pain and Symptom Management, 2003
- Characterization of interferon gamma receptors on osteoclasts: Effect of interferon gamma on osteoclastic superoxide generationJournal of Cellular Biochemistry, 2002
- Bone Morphogenetic Protein-2 Enhances Osteoclast Formation Mediated by Interleukin-1α through Upregulation of Osteoclast Differentiation Factor and Cyclooxygenase-2Biochemical and Biophysical Research Communications, 1999
- Osteoclast formation during tumor osteolysis does not require proliferating osteoclast precursor cellsJournal of Orthopaedic Research, 1997
- Treatment of pain in cancer patients by intrathecal administration of dynorphinPeptides, 1987