During endochondral bone development, bone-forming osteoblasts have to colonize the regions of cartilage that will be replaced by bone. In adulthood, bone remodeling and repair require osteogenic cells to reach the sites that need to be rebuilt, as a prerequisite for skeletal health. A failure of osteoblasts to reach the sites in need of bone formation may contribute to impaired fracture repair. Conversely, stimulation of osteogenic cell recruitment may be a promising osteo-anabolic strategy to improve bone formation in low bone mass disorders such as osteoporosis and in bone regeneration applications. Yet, still relatively little is known about the cellular and molecular mechanisms controlling osteogenic cell recruitment to sites of bone f...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...
Recruitment of osteoblast lineage cells to their bone-forming locations is essential for skeletal de...
During endochondral bone development, the first osteoblasts differentiate in the perichondrium surro...
Interaction between endothelial cells and osteoblasts is essential for bone development and homeosta...
Mechanical loading is a potent anabolic stimulus that promotes bone formation. After skeletal develo...
In association with the Sociedad Española de Biología del Desarrollo, Poster and exhibit sessions: M...
Replacement of nonvascular cartilage by bone and bone marrow is a critical step in bone development....
Adequate vascularization is an absolute requirement for bone development, growth, homeostasis, and r...
Osteogenesis is a complex process characterized sequentially by the committment of precursor cells, ...
Osteogenesis is a complex process characterized sequentially by the committment of precursor cells, ...
Osteocytes, the most abundant cells in bone, have been long postulated to detect and respond to mech...
SummaryDuring endochondral bone development, the first osteoblasts differentiate in the perichondriu...
BACKGROUND: Bone remodeling relies on the tightly regulated interplay between bone forming osteoblas...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...
Recruitment of osteoblast lineage cells to their bone-forming locations is essential for skeletal de...
During endochondral bone development, the first osteoblasts differentiate in the perichondrium surro...
Interaction between endothelial cells and osteoblasts is essential for bone development and homeosta...
Mechanical loading is a potent anabolic stimulus that promotes bone formation. After skeletal develo...
In association with the Sociedad Española de Biología del Desarrollo, Poster and exhibit sessions: M...
Replacement of nonvascular cartilage by bone and bone marrow is a critical step in bone development....
Adequate vascularization is an absolute requirement for bone development, growth, homeostasis, and r...
Osteogenesis is a complex process characterized sequentially by the committment of precursor cells, ...
Osteogenesis is a complex process characterized sequentially by the committment of precursor cells, ...
Osteocytes, the most abundant cells in bone, have been long postulated to detect and respond to mech...
SummaryDuring endochondral bone development, the first osteoblasts differentiate in the perichondriu...
BACKGROUND: Bone remodeling relies on the tightly regulated interplay between bone forming osteoblas...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...
The cells of the osteoblast lineage (osteoblasts, osteocytes, and bone lining cells) have multiple s...