The osteoclast is of central importance in the process of bone remodeling. Its function is regulated by hormones and locally produced factors. Endothelial cells occur in close proximity to the osteoclast. Some endothelial cell-derived products, including endothelins, nitric oxide, and reactive oxygen species, have been recently implicated as modulators of osteoclast function. Endothelins inhibit bone resorption and osteoclast margin ruffling (quiescence or Q effect) at concentrations similar to those effective for their primary vasoconstrictive action. Contrary to expectations, however, it has been shown that endothelin action on the osteoclast is not mediated through an elevation of cytosolic Ca2+. Nitric oxide (NO) produces marked cell re...
AbstractIt has been reported that reactive oxygen species (ROS), such as hydrogen peroxide and super...
The mechanisms by which bone resorbing osteoclasts form and are activated by hormones are poorly und...
Osteocytes make up the largest cell population in bone and are believed to be the main mechanosensor...
The osteoclast is of central importance in the process of bone remodeling. Its function is regulated...
In animal models, reactive oxygen species (ROS) have been shown to activate osteoclasts and have bee...
Osteocytes (resident bone cells) are believed to sense loading-induced interstitial fluid flow in bo...
Growth plate cartilage contributes to the generation of a large variety of shapes and sizes of skele...
Nitric oxide (NO) can reduce bone loss in chronic bone diseases. NO inhibits or kills osteoclasts, b...
Contains fulltext : 69701.pdf (publisher's version ) (Closed access)Bone unloading...
Bone resorption appears to be dependent on a range of processes. It requires an adequate number of o...
Nitric oxide (NO) is a short lived free radical regulating bone turnover and bone cell function (1, ...
The mechanisms by which bone resorbing osteoclasts form and are activated by hormones are poorly und...
Bone has the capacity to alter its mass and structure to its mechanical environment. Osteocytes are ...
Past knowledge and the recent developments on the formation, activation and mode of action of osteoc...
Interaction between endothelial cells and osteoblasts is essential for bone development and homeosta...
AbstractIt has been reported that reactive oxygen species (ROS), such as hydrogen peroxide and super...
The mechanisms by which bone resorbing osteoclasts form and are activated by hormones are poorly und...
Osteocytes make up the largest cell population in bone and are believed to be the main mechanosensor...
The osteoclast is of central importance in the process of bone remodeling. Its function is regulated...
In animal models, reactive oxygen species (ROS) have been shown to activate osteoclasts and have bee...
Osteocytes (resident bone cells) are believed to sense loading-induced interstitial fluid flow in bo...
Growth plate cartilage contributes to the generation of a large variety of shapes and sizes of skele...
Nitric oxide (NO) can reduce bone loss in chronic bone diseases. NO inhibits or kills osteoclasts, b...
Contains fulltext : 69701.pdf (publisher's version ) (Closed access)Bone unloading...
Bone resorption appears to be dependent on a range of processes. It requires an adequate number of o...
Nitric oxide (NO) is a short lived free radical regulating bone turnover and bone cell function (1, ...
The mechanisms by which bone resorbing osteoclasts form and are activated by hormones are poorly und...
Bone has the capacity to alter its mass and structure to its mechanical environment. Osteocytes are ...
Past knowledge and the recent developments on the formation, activation and mode of action of osteoc...
Interaction between endothelial cells and osteoblasts is essential for bone development and homeosta...
AbstractIt has been reported that reactive oxygen species (ROS), such as hydrogen peroxide and super...
The mechanisms by which bone resorbing osteoclasts form and are activated by hormones are poorly und...
Osteocytes make up the largest cell population in bone and are believed to be the main mechanosensor...