International audienceOsteoporosis, which results from excessive bone resorption by osteoclasts, is the major cause of morbidity for elder people. Identification of clinically relevant regulators is needed to develop novel therapeutic strategies. Rho GTPases have essential functions in osteoclasts by regulating actin dynamics. This is of particular importance since actin cytoskeleton is essential to generate the sealing zone, an osteoclast-specific structure ultimately mediating bone resorption. Here, we report that the atypical Rac1 exchange factor Dock5 is necessary for osteoclast function both in vitro and in vivo. We uncovered that establishment of the sealing zone and consequently osteoclast resorbing activity in vitro require Dock5. M...
AbstractDuring long bone development and post-natal growth, the cartilaginous model of the skeleton ...
Bone homeostasis is a metabolic balance between the new bone formation by osteoblasts and old bone r...
ABSTRACT Bone turnover is finely tuned by cells in the bone milieu, including osteoblasts, osteoclas...
International audienceOsteoporosis is caused by excessive activity of bone-degrading osteoclasts ove...
Osteoclasts are the unique mediator of bone resorption in the body. Balancing bone resorption with o...
Osteoclasts are multinucleated cells that resorb bone and carry out their function via a dynamic act...
L'os est un tissu dynamique résultant de l'équilibre entre l'activité de résorption des ostéoclastes...
International audienceBone resorption by osteoclasts is mediated by a typical adhesion structure cal...
Introduction: The Rho family of small GTPases, including Rac1 and Rac2, are key regulators of osteo...
The osteoclasts, the bone cells responsible for bone degradation, have a crucial role in the age-rel...
Osteoclasts are large, multinucleated cells of the monocyte-macrophage lineage that generate special...
Bone health is controlled by the balance between bone formation by osteoblasts and degradation by os...
Osteoclasts mediate bone resorption, which is critical for bone development, maintenance, and repair...
Bisphosphonates are the most widely prescribed anti-resorptive agents and work by preventing the pos...
Osteoclasts are large, multinucleated cells of the monocyte-macrophage lineage that generate special...
AbstractDuring long bone development and post-natal growth, the cartilaginous model of the skeleton ...
Bone homeostasis is a metabolic balance between the new bone formation by osteoblasts and old bone r...
ABSTRACT Bone turnover is finely tuned by cells in the bone milieu, including osteoblasts, osteoclas...
International audienceOsteoporosis is caused by excessive activity of bone-degrading osteoclasts ove...
Osteoclasts are the unique mediator of bone resorption in the body. Balancing bone resorption with o...
Osteoclasts are multinucleated cells that resorb bone and carry out their function via a dynamic act...
L'os est un tissu dynamique résultant de l'équilibre entre l'activité de résorption des ostéoclastes...
International audienceBone resorption by osteoclasts is mediated by a typical adhesion structure cal...
Introduction: The Rho family of small GTPases, including Rac1 and Rac2, are key regulators of osteo...
The osteoclasts, the bone cells responsible for bone degradation, have a crucial role in the age-rel...
Osteoclasts are large, multinucleated cells of the monocyte-macrophage lineage that generate special...
Bone health is controlled by the balance between bone formation by osteoblasts and degradation by os...
Osteoclasts mediate bone resorption, which is critical for bone development, maintenance, and repair...
Bisphosphonates are the most widely prescribed anti-resorptive agents and work by preventing the pos...
Osteoclasts are large, multinucleated cells of the monocyte-macrophage lineage that generate special...
AbstractDuring long bone development and post-natal growth, the cartilaginous model of the skeleton ...
Bone homeostasis is a metabolic balance between the new bone formation by osteoblasts and old bone r...
ABSTRACT Bone turnover is finely tuned by cells in the bone milieu, including osteoblasts, osteoclas...