Osteoclastogenesis and osteolysis are energy-consuming processes supported by high metabolic activities. In human osteoclasts derived from the fusion of monocytic precursors, we found a substantial increase in the number of mitochondria with differentiation. In mature osteoclasts, mitochondria were also increased in size, rich of cristae and arranged in a complex tubular network. When compared with immature cells, fully differentiated osteoclasts showed higher levels of enzymes of the electron transport chain, a higher mitochondrial oxygen consumption rate and a lower glycolytic efficiency, as evaluated by extracellular flux analysis and by the quantification of metabolites in the culture supernatant. Thus, oxidative phosphorylation appeare...
Inappropriate osteoclast activity instigates pathological bone loss in rheumatoid arthritis. We have...
Osteoclasts (OCs), the specialized bone-resorbing cells, have high energy demands to facilitate mobi...
Bone-forming cells build mineralized microstructure and couple with bone-resorbing cells, harmonizin...
Osteoclastogenesis and osteolysis are energy-consuming processes supported by high metabolic activit...
Osteoclastogenesis and osteolysis are energy-consuming processes supported by high metabolic activit...
Mature osteoclasts have an increased citric acid cycle and mitochondrial respiration to generate hig...
Osteoblasts, the bone-forming cells of the remodeling unit, are essential for growth and maintenance...
Cell differentiation leads to adaptive changes in energy metabolism. Conversely, hyperglycemia induc...
Osteoclasts undergo active metabolic reprogramming to acquire the energy needed during differentiati...
Changes in mitochondrial bioenergetics are believed to take place during osteoclastogenesis. This st...
Renewing interest in the study of intermediate metabolism and cellular bioenergetics is brought on b...
Summary Cell differentiation leads to adaptive changes in energy metabolism. Conversely, hyperglycem...
Osteoblastogenesis is the process by which mesenchymal stem cells differentiate into osteoblasts tha...
Helen J Knowles Botnar Research Centre, NDORMS, University of Oxford, Oxford, Oxfordshire, UK Abstr...
Biological processes utilize energy and therefore must be prioritized based on fuel availability. Bo...
Inappropriate osteoclast activity instigates pathological bone loss in rheumatoid arthritis. We have...
Osteoclasts (OCs), the specialized bone-resorbing cells, have high energy demands to facilitate mobi...
Bone-forming cells build mineralized microstructure and couple with bone-resorbing cells, harmonizin...
Osteoclastogenesis and osteolysis are energy-consuming processes supported by high metabolic activit...
Osteoclastogenesis and osteolysis are energy-consuming processes supported by high metabolic activit...
Mature osteoclasts have an increased citric acid cycle and mitochondrial respiration to generate hig...
Osteoblasts, the bone-forming cells of the remodeling unit, are essential for growth and maintenance...
Cell differentiation leads to adaptive changes in energy metabolism. Conversely, hyperglycemia induc...
Osteoclasts undergo active metabolic reprogramming to acquire the energy needed during differentiati...
Changes in mitochondrial bioenergetics are believed to take place during osteoclastogenesis. This st...
Renewing interest in the study of intermediate metabolism and cellular bioenergetics is brought on b...
Summary Cell differentiation leads to adaptive changes in energy metabolism. Conversely, hyperglycem...
Osteoblastogenesis is the process by which mesenchymal stem cells differentiate into osteoblasts tha...
Helen J Knowles Botnar Research Centre, NDORMS, University of Oxford, Oxford, Oxfordshire, UK Abstr...
Biological processes utilize energy and therefore must be prioritized based on fuel availability. Bo...
Inappropriate osteoclast activity instigates pathological bone loss in rheumatoid arthritis. We have...
Osteoclasts (OCs), the specialized bone-resorbing cells, have high energy demands to facilitate mobi...
Bone-forming cells build mineralized microstructure and couple with bone-resorbing cells, harmonizin...