Bone metabolism in spinal cord injured individuals and in others who have prolonged immobilisation. A review
- 1 November 1995
- journal article
- review article
- Published by Springer Nature in Spinal Cord
- Vol. 33 (11) , 669-673
- https://doi.org/10.1038/sc.1995.140
Abstract
Immobilisation or disuse is a condition known to be associated with a decrease in bone mass, osteopenia and in some people leading to osteoporosis with an increased risk of fractures. In this condition, previous histomorphometric and biochemical reports have shown an uncoupling between bone formation and resorption, but the exact sequence of the events resulting in bone loss is still not fully understood. In spinal cord injury for instance, the main finding soon after the onset is decreased osteoblastic activity associated with a dramatic increase in bone degradation. The overall consequence of these metabolic events is the development of a rapid and severe osteoporosis only observed in the paralysed part of the body associated with the loss of biomechanical strength and the biosynthesis of a structurally modified matrix which is unable to sustain normal mechanical stress. This situation dramatically increases the risk of fractures. The same uncoupling phenomenon has been described in healthy individuals who have been submitted to long duration bedrest and also in astronauts during spaceflight; but the timing, intensity and the metabolic subset may be different as these people do recover after cessation of the disuse period, which does not occur in paralysed patients. As new accurate and sensitive non-invasive techniques have become available recently to assess bone and connective tissue metabolism, more information is now available regarding bone loss in paralysed and/or immobilised individuals. These techniques should be definitely helpful in orientating new therapeutic trials with drugs and/or procedures intended to correct the musculoskeletal deleterious effects of disuse. This paper is therefore aimed at a review of bone metabolism in those with a severe spinal cord injury, or with a long duration of bedrest, or with loss of biomechanical function, or with actual or simulated spaceflight, in all instances using non-invasive techniques.Keywords
This publication has 33 references indexed in Scilit:
- Compositional analysis of the collagenous bone matrix. A study on adult normal and osteopenic bone tissueEuropean Journal of Clinical Investigation, 1992
- Comparative study on the thermostability of collagen I of skin and bone: Influence of posttranslational hydroxylation of prolyl and lysyl residuesProtein Journal, 1992
- Osteoporosis after spinal cord injuryJournal of Orthopaedic Research, 1992
- Increased serum osteocalcin levels in patients with paraplegiaSpinal Cord, 1992
- Longitudinal study of bone mineral content in the lumbar spine, the forearm and the lower extremities after spinal cord injuryEuropean Journal of Clinical Investigation, 1990
- Immobilization-associated osteoporosis in primatesBone, 1986
- Longitudinal study of calcium and bone metabolism in paraplegic patientsSpinal Cord, 1977
- Investigation of the loss of bone mineral in patients with spinal cord injurySpinal Cord, 1976
- Hypercalcemia in early traumatic quadriplegiaJournal of Chronic Diseases, 1975
- QUANTITATION OF CALCIUM METABOLISM IN POSTMENOPAUSAL OSTEOPOROSIS AND IN SCOLIOSIS*Journal of Clinical Investigation, 1963