Primary cilia, solitary microtubule-based structures that grow from the centriole and extend into the extracellular space, have increasingly been implicated as sensors of a variety of biochemical and biophysical signals. Mutations in primary cilium-related genes have been linked to a number of rare developmental disorders as well as dysregulation of cell proliferation. We propose that primary cilia are also important in mechanically regulated bone formation in adults and that their malfunction could play a role in complex multi-factorial bone diseases, such as osteoporosis. In this study, we generated mice with an osteoblast- and osteocyte-specific knockout of Kif3a, a subunit of the kinesin II intraflagellar transport (IFT) protein; IFT is...
Osteocytes and articular chondrocytes sense and respond to the strains imposed on bones and joints b...
AbstractIn the post-natal growth plate, chondrocytes are arranged in columns parallel to the long ax...
Abstract Background The fully developed adult skeleton adapts to mechanical forces by generating mor...
Indiana University-Purdue University Indianapolis (IUPUI)Bone loss diseases, including osteoporosis ...
Osteoporosis and low bone mass are devastating and costly diseases affecting over half the US popula...
Bone turnover in vivo is regulated by mechanical forces such as shear stress originating from inters...
Primary cilia are potent mechanical and chemical sensory organelles in cells of bone lineage in tiss...
The primary cilium is a mechanosensor in a variety of mammalian cell types, initiating and directing...
Compared with our understanding of endochondral ossification, much less is known about the coordinat...
More than 50% of the UK population over 75 suffers from the degenerative cartilage disease osteoarth...
Objective: mechanical and biologic cues drive cellular signaling in cartilage development, health, a...
We investigated whether Kif3a in osteoblasts has a direct role in regulating postnatal bone formatio...
The primary cilium, as a mechanical receptor of osteocytes, participates in the regulation of osteoc...
The primary cilium is a hair-like immotile organelle with specific membrane receptors, including the...
Mechanotransduction is a process by which cells sense and convert mechanical loads into biochemical ...
Osteocytes and articular chondrocytes sense and respond to the strains imposed on bones and joints b...
AbstractIn the post-natal growth plate, chondrocytes are arranged in columns parallel to the long ax...
Abstract Background The fully developed adult skeleton adapts to mechanical forces by generating mor...
Indiana University-Purdue University Indianapolis (IUPUI)Bone loss diseases, including osteoporosis ...
Osteoporosis and low bone mass are devastating and costly diseases affecting over half the US popula...
Bone turnover in vivo is regulated by mechanical forces such as shear stress originating from inters...
Primary cilia are potent mechanical and chemical sensory organelles in cells of bone lineage in tiss...
The primary cilium is a mechanosensor in a variety of mammalian cell types, initiating and directing...
Compared with our understanding of endochondral ossification, much less is known about the coordinat...
More than 50% of the UK population over 75 suffers from the degenerative cartilage disease osteoarth...
Objective: mechanical and biologic cues drive cellular signaling in cartilage development, health, a...
We investigated whether Kif3a in osteoblasts has a direct role in regulating postnatal bone formatio...
The primary cilium, as a mechanical receptor of osteocytes, participates in the regulation of osteoc...
The primary cilium is a hair-like immotile organelle with specific membrane receptors, including the...
Mechanotransduction is a process by which cells sense and convert mechanical loads into biochemical ...
Osteocytes and articular chondrocytes sense and respond to the strains imposed on bones and joints b...
AbstractIn the post-natal growth plate, chondrocytes are arranged in columns parallel to the long ax...
Abstract Background The fully developed adult skeleton adapts to mechanical forces by generating mor...