4.4 Article

A coupled mechano-biochemical model for bone adaptation

Journal

JOURNAL OF MATHEMATICAL BIOLOGY
Volume 69, Issue 6-7, Pages 1383-1429

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s00285-013-0736-9

Keywords

Mechano-biochemical model; Bone remodelling; BMU; Damage; Mineralization; RANKL-RANK-OPG pathway

Funding

  1. Instituto Aragones de Ciencias de la Salud [PIPAMER10/015]
  2. Spanish Ministry of Science and Technology [DPI2011-22413]
  3. CENTEM project [CZ.1.05/2.1.00/03.0088]
  4. ERDF within the OP RDI Programme of the Ministry of Education, Youth and Sports

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Bone remodelling is a fundamental biological process that controls bone microrepair, adaptation to environmental loads and calcium regulation among other important processes. It is not surprising that bone remodelling has been subject of intensive both experimental and theoretical research. In particular, many mathematical models have been developed in the last decades focusing in particular aspects of this complicated phenomenon where mechanics, biochemistry and cell processes strongly interact. In this paper, we present a new model that combines most of these essential aspects in bone remodelling with especial focus on the effect of the mechanical environment into the biochemical control of bone adaptation mainly associated to the well known RANKL-RANK-OPG pathway. The predicted results show a good correspondence with experimental and clinical findings. For example, our results indicate that trabecular bone is more severely affected both in disuse and disease than cortical bone what has been observed in osteoporotic bones. In future, the methodology proposed would help to new therapeutic strategies following the evolution of bone tissue distribution in osteoporotic patients.

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