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Mechanotransduction in bone—role of the lacunocanalicular network

The FASEB Journal · 1999 · Vol. 13(9001) · pp. S101–12
Elisabeth H. BurgerJenneke Klein‐Nulend

Abstract

The capacity of bone tissue to alter its mass and structure in response to mechanical demands has long been recognized but the cellular mechanisms involved remained poorly understood. Over the last several years significant progress has been made in this field, which we will try to summarize. These studies emphasize the role of osteocytes as the professional mechanosensory cells of bone, and the lacuno-canalicular porosity as the structure that mediates mechanosensing. Strain-derived flow of interstitial fluid through this porosity seems to mechanically activate the osteocytes, as well as ensuring transport of cell signaling molecules and nutrients and waste products. This concept allows an explanation of local bone gain and loss, as well as remodeling in response to fatigue damage, as processes supervised by mechanosensitive osteocytes.

Bone Metabolism and DiseasesBone health and osteoporosis researchCellular Mechanics and InteractionsMechanosensitive channelsMechanotransductionOsteocyteCell biologyMechanosensationBone remodelingBone cellChemistryNeuroscienceBiophysics

MeSH terms

AnimalsBone and BonesBone ResorptionHumansMicroscopy, Electron, ScanningOsteocytesWeightlessnessSignal Transduction
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References
Mechanotransduction in bone: osteoblasts are more responsive to fluid forces than mechanical strain
American Journal of Physiology-Cell Physiology · 1997 · 465 citations
The compressive behavior of bone as a two-phase porous structure
Journal of Bone and Joint Surgery · 1977 · 1,992 citations
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Regulation of bone formation by applied dynamic loads.
Journal of Bone and Joint Surgery · 1984 · 1,550 citations
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