Bone turnover in vivo is regulated by mechanical forces such as shear stress originating from interstitial oscillatory fluid flow (OFF), and bone cells in vitro respond to mechanical loading. However, the mechanisms by which bone cells sense mechanical forces, resulting in increased mineral deposition, are not well understood. The aim of this study was to investigate the role of the primary cilium in mechanosensing by osteoblasts. MLO-A5 murine osteoblasts were cultured in monolayer and subjected to two different OFF regimens: 5 short (2 h daily) bouts of OFF followed by morphological analysis of primary cilia; or exposure to chloral hydrate to damage or remove primary cilia and 2 short bouts (2 h on consecutive days) of OFF. Primary cilia ...
Physical loading is a potent stimulus required to maintain bone homeostasis, partly through the rene...
Fluid flow has been shown to be a potent physical stimulus in the regulation of bone cell metabolism...
peer-reviewedPhysical loading is a potent regulator of bone anabolism, yet the cellular mechanisms b...
Mechanotransduction is a process by which cells sense and convert mechanical loads into biochemical ...
Indiana University-Purdue University Indianapolis (IUPUI)Bone loss diseases, including osteoporosis ...
Primary cilia are potent mechanical and chemical sensory organelles in cells of bone lineage in tiss...
Bone marrow contains a multitude of mechanically sensitive cells that may participate in mechanotran...
Introduction: A limited understanding of the cellular mechanisms governing bone mechanotransduction ...
Primary cilia, solitary microtubule-based structures that grow from the centriole and extend into th...
Osteoporosis and low bone mass are devastating and costly diseases affecting over half the US popula...
The primary cilium, as a mechanical receptor of osteocytes, participates in the regulation of osteoc...
Osteoporosis is a debilitating disease characterised by weakened bone architecture due to increased ...
Primary cilia are sensory organelles that transmit extracellular signals into intracellular biochemi...
Mechanosensation, the ability for cells to sense and respond to physical cues, is a ubiquitous proce...
Bone adapts to physical forces and this process is dependent on osteocyte mechanotransduction. One w...
Physical loading is a potent stimulus required to maintain bone homeostasis, partly through the rene...
Fluid flow has been shown to be a potent physical stimulus in the regulation of bone cell metabolism...
peer-reviewedPhysical loading is a potent regulator of bone anabolism, yet the cellular mechanisms b...
Mechanotransduction is a process by which cells sense and convert mechanical loads into biochemical ...
Indiana University-Purdue University Indianapolis (IUPUI)Bone loss diseases, including osteoporosis ...
Primary cilia are potent mechanical and chemical sensory organelles in cells of bone lineage in tiss...
Bone marrow contains a multitude of mechanically sensitive cells that may participate in mechanotran...
Introduction: A limited understanding of the cellular mechanisms governing bone mechanotransduction ...
Primary cilia, solitary microtubule-based structures that grow from the centriole and extend into th...
Osteoporosis and low bone mass are devastating and costly diseases affecting over half the US popula...
The primary cilium, as a mechanical receptor of osteocytes, participates in the regulation of osteoc...
Osteoporosis is a debilitating disease characterised by weakened bone architecture due to increased ...
Primary cilia are sensory organelles that transmit extracellular signals into intracellular biochemi...
Mechanosensation, the ability for cells to sense and respond to physical cues, is a ubiquitous proce...
Bone adapts to physical forces and this process is dependent on osteocyte mechanotransduction. One w...
Physical loading is a potent stimulus required to maintain bone homeostasis, partly through the rene...
Fluid flow has been shown to be a potent physical stimulus in the regulation of bone cell metabolism...
peer-reviewedPhysical loading is a potent regulator of bone anabolism, yet the cellular mechanisms b...