Past knowledge and the recent developments on the formation, activation and mode of action of osteoclasts, with particular reference to the regulation of each individual step, have been reviewed. The following conclusions of consensus have emerged. 1. The resorption of bone is the result of successive steps that can be regulated individually. 2. Osteoclast progenitors are formed in bone marrow. This is followed by their vascular dissemination and the generation of resting preosteoclasts and osteoclasts in bone. 3. The exact pathways of differentiation of the osteoclast progenators to mature osteoclasts are debatable, but there is clear evidence that stromal cells support osteoclast generation. 4. Osteoclasts are activated following contact ...
Bone resorption is required for skeletal modelling during bone growth and for mineral homeostasis an...
Osteoclasts are multinucleated bone-resorbing cells that have been implicated in a variety of skelet...
grantor: University of TorontoOsteoclasts are multinucleated cells that resorb bone. Their...
The newest knowledge on the osteoclast allows us to consider bone resorption in a global perspective...
Abstract: The osteoclast is a physiological polykaryon and the major if not exclusive resorptive cel...
Resorption of mineralized tissues like bone is accomplished by a unique cell type: the osteoclast. T...
Resorption of mineralized tissues like bone is accomplished by a unique cell type: the osteoclast. T...
Resorption of mineralized tissues like bone is accomplished by a unique cell type: the osteoclast. T...
Bone resorption appears to be dependent on a range of processes. It requires an adequate number of o...
The osteoclast is a bone-degrading polykaryon. Recent studies have clarified the differentiation of ...
The osteoclast is a bone-degrading polykaryon. Recent studies have clarified the differentiation of ...
To study the origin, morphological structure, and functional regulation of osteoclast (OC) for furth...
Bone tissue is continuously remodeled through the concerted actions of bone cells, which include bon...
Abstract Bone is continually being removed and replaced throughout life by the actions of ...
Bone resorption is required for skeletal modelling during bone growth and for mineral homeostasis an...
Bone resorption is required for skeletal modelling during bone growth and for mineral homeostasis an...
Osteoclasts are multinucleated bone-resorbing cells that have been implicated in a variety of skelet...
grantor: University of TorontoOsteoclasts are multinucleated cells that resorb bone. Their...
The newest knowledge on the osteoclast allows us to consider bone resorption in a global perspective...
Abstract: The osteoclast is a physiological polykaryon and the major if not exclusive resorptive cel...
Resorption of mineralized tissues like bone is accomplished by a unique cell type: the osteoclast. T...
Resorption of mineralized tissues like bone is accomplished by a unique cell type: the osteoclast. T...
Resorption of mineralized tissues like bone is accomplished by a unique cell type: the osteoclast. T...
Bone resorption appears to be dependent on a range of processes. It requires an adequate number of o...
The osteoclast is a bone-degrading polykaryon. Recent studies have clarified the differentiation of ...
The osteoclast is a bone-degrading polykaryon. Recent studies have clarified the differentiation of ...
To study the origin, morphological structure, and functional regulation of osteoclast (OC) for furth...
Bone tissue is continuously remodeled through the concerted actions of bone cells, which include bon...
Abstract Bone is continually being removed and replaced throughout life by the actions of ...
Bone resorption is required for skeletal modelling during bone growth and for mineral homeostasis an...
Bone resorption is required for skeletal modelling during bone growth and for mineral homeostasis an...
Osteoclasts are multinucleated bone-resorbing cells that have been implicated in a variety of skelet...
grantor: University of TorontoOsteoclasts are multinucleated cells that resorb bone. Their...