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Synovial fluid metabolites in osteonecrosis

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Auteur
Huffman, K. M.; Bowers, J. R.; Dailiana, Z.; Huebner, J. L.; Urbaniak, J. R.; Kraus, V. B.
Date
2007
DOI
10.1093/rheumatology/kel302
Sujet
osteonecrosis
synovial fluid
synovial fluid metabolites
glucose
lactate
vascular endothelial growth factor
vascularized bone graft
alendronate
canine model
DISTINGUISHING TRANSIENT OSTEOPOROSIS
MAGNETIC-RESONANCE-SPECTROSCOPY
FEMORAL-HEAD OSTEONECROSIS
AVASCULAR NECROSIS
LACTIC-ACID
BACTERIAL-INFECTIONS
SEPTIC ARTHRITIS
FIBULAR GRAFTS
LACTATE
CONCENTRATION
CARTILAGE METABOLISM
Rheumatology
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Résumé
Objectives. Osteonecrosis of the femoral head results from interruption of the vascular supply and eventual death of the cellular portion of bone. Effective methods of monitoring response to treatment are needed. Our aim was to evaluate synovial fluid metabolites, glucose and lactate, as biomarkers in a canine model of osteonecrosis. Methods. Osteonecrosis was cryosurgically induced in the right femoral head while the left hip served as control (n = 31). Animals either underwent no further intervention (n = 10), vascular endothelial growth factor (VEGF) injections (n = 4), placement of a vascularized bone graft (n = 6), a combination of VEGF microinjection and vascularized graft placement (n = 5), or treatment with daily oral alendronate (n = 6). After 12 weeks, synovial fluid from each hip joint was obtained for glucose and lactate concentrations. Results. Joints with surgically induced osteonecrosis demonstrated decreased synovial fluid concentrations of glucose (P < 0.05) and elevated concentrations of lactate (P < 0.05) relative to contralateral control hips. When animals were treated with VEGF, the vascularized graft placement, or vascularized graft and VEGF, there were no differences in the synovial fluid concentrations of these metabolites between cryoablated and control hips. In contrast, alendronate did not normalize the concentration of these synovial fluid metabolites in the cryoablated hips. Conclusions. Osteonecrosis of the femoral head is associated with alterations in synovial fluid glucose and lactate, reflecting anaerobic metabolism. These metabolites may serve as useful tools for monitoring response to revascularization therapies.
URI
http://hdl.handle.net/11615/28523
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