Bone cells are exposed to dynamic mechanical stimulation that is transduced into cellular responses by mechanotransduction mechanisms. The extracellular matrix (ECM) provides a physical link between loading and bone cells, where mechanoreceptors, such as integrins, initiate mechanosensation. Though this relationship is well studied, the dynamic interplay between mechanosensation, mechanotransduction and cellular responses is unclear. A hybrid-multiscale model combining molecular, cellular and tissue interactions was developed to examine links between integrins’ mechanosensation and effects on mechanotransduction, ECM modulation and cell-ECM interaction. The model shows that altering integrin mechanosensitivity threshold (MT) increases mecha...
International audienceCells sense and respond to the biochemical and physical properties of the extr...
AbstractTo determine the role of integrins in mature osteoblasts in vivo, we expressed in transgenic...
ABSTRACTInfluenced by gravidity, bone tissue experiences stronger or lighter deformation according t...
Mechanical forces generated by gravity, weightbearing, and muscle contraction play a key role in the...
Background Mechanotransduction in bone cells plays a pivotal role in osteoblast differentiation a...
A wide range of cell types depend on mechanically induced signals to enable appropriate physiologica...
Recent in vivo studies have proposed that integrin alpha(v)beta(3) attachments between osteocyte cel...
Mechanotransduction in bone is fundamental to proper skeletal development. Deficiencies in signali...
The majority of cells are equipped to detect and decipher physical stimuli, and then react to these ...
Duncan, Randall L.Bone is a highly dynamic tissue constantly adapting itself to several physical and...
Background: Osteocytes, composing over 90% of bone cells, are well known for their mechanosensing ab...
Mechanical loading is an important regulatory factor in bone homeostasis, and plays an essential ro...
Bone is one of the most highly adaptive tissues in the body, possessing the capability to alter its ...
: Mechanical forces play a fundamental role in cellular dynamics from the molecular level to the est...
Mechanobiology, the study of the influence of mechanical loads on biological processes through signa...
International audienceCells sense and respond to the biochemical and physical properties of the extr...
AbstractTo determine the role of integrins in mature osteoblasts in vivo, we expressed in transgenic...
ABSTRACTInfluenced by gravidity, bone tissue experiences stronger or lighter deformation according t...
Mechanical forces generated by gravity, weightbearing, and muscle contraction play a key role in the...
Background Mechanotransduction in bone cells plays a pivotal role in osteoblast differentiation a...
A wide range of cell types depend on mechanically induced signals to enable appropriate physiologica...
Recent in vivo studies have proposed that integrin alpha(v)beta(3) attachments between osteocyte cel...
Mechanotransduction in bone is fundamental to proper skeletal development. Deficiencies in signali...
The majority of cells are equipped to detect and decipher physical stimuli, and then react to these ...
Duncan, Randall L.Bone is a highly dynamic tissue constantly adapting itself to several physical and...
Background: Osteocytes, composing over 90% of bone cells, are well known for their mechanosensing ab...
Mechanical loading is an important regulatory factor in bone homeostasis, and plays an essential ro...
Bone is one of the most highly adaptive tissues in the body, possessing the capability to alter its ...
: Mechanical forces play a fundamental role in cellular dynamics from the molecular level to the est...
Mechanobiology, the study of the influence of mechanical loads on biological processes through signa...
International audienceCells sense and respond to the biochemical and physical properties of the extr...
AbstractTo determine the role of integrins in mature osteoblasts in vivo, we expressed in transgenic...
ABSTRACTInfluenced by gravidity, bone tissue experiences stronger or lighter deformation according t...