Mechanotransduction in bone: role of strain rate
- 1 September 1995
- journal article
- Published by American Physiological Society in American Journal of Physiology-Endocrinology and Metabolism
- Vol. 269 (3) , E438-E442
- https://doi.org/10.1152/ajpendo.1995.269.3.e438
Abstract
Bone tissue can detect and respond to its mechanical environment, but there is no consensus for how bone cells detect mechanical loads. Some think that cells sense tissue deformation (strain) and respond when strain is abnormally high. However, strains in bone tissue are usually very small, and it is questionable whether bone cells are sensitive enough to detect them. Another theory suggests that mechanical loads are coupled to the bone cells by stress-generated fluid flow within the bone tissue, which is dependent on the rate of change of bone strain. We applied bending loads to the tibiae of adult rats to create equivalent peak strains in the bone tissue but with varied rates of strain. Bone formation was significantly increased in the two experimental groups when the highest strain rates were compared with lower strain rates (P < 0.01), and the amount of new bone formation was directly proportional to the rate of strain in the bone tissue. These results suggest that relatively large strains alone are not sufficient to activate bone cells. High strain rates and possibly stress-generated fluid flow are required to stimulate new bone formation.Keywords
This publication has 16 references indexed in Scilit:
- Journal of Bone and Mineral ResearchJournal of Bone and Mineral Research, 1992
- Characterization of in vivo strain in the rat tibia during external application of a four-point bending loadJournal of Biomechanics, 1992
- Fluid shear stress as a mediator of osteoblast cyclic adenosine monophosphate productionJournal of Cellular Physiology, 1990
- Mechanoelectric transduction in boneJournal of Materials Research, 1989
- Bone creep-fatigue damage accumulationJournal of Biomechanics, 1989
- Mechanoelectrical Transduction by Hair CellsAnnual Review of Biophysics, 1988
- Flow Effects on Prostacyclin Production by Cultured Human Endothelial CellsScience, 1985
- Evidence for different sources of stress‐generated potentials in wet and dry boneJournal of Orthopaedic Research, 1985
- Static vs dynamic loads as an influence on bone remodellingJournal of Biomechanics, 1984
- A hypothetical mechanism for the stimulation of osteonal remodelling by fatigue damageJournal of Biomechanics, 1982