Bone is formed through the processes of endochondral and intramembranous ossification. In endochondral ossification primary mesenchymal cells differentiate to chondrocytes and then are progressively substituted by bone, while in intramembranous ossification mesenchymal stem cells (MSCs) differentiate directly into osteoblasts to form bone. The steps of osteogenic proliferation, differentiation, and bone homeostasis are controlled by various markers and signaling pathways. Bone needs to be remodeled to maintain integrity with osteoblasts, which are bone-forming cells, and osteoclasts, which are bone-degrading cells. In this review we considered the major factors and signaling pathways in bone formation; these include fibroblast growth facto...
Bone is a specialised connective tissue and together with cartilage forms the strong and rigid endos...
The osteoblast differentiation capacity of skeletal stem cells (SSCs) must be tightly regulated, as ...
The term osteoinduction applies to the process by which osteogenesis is aroused. The process itself ...
Bone is a dynamic tissue constantly responding to environmental changes such as nutritional and mech...
The interacting molecular pathways which control bone remodeling in physiological conditions during ...
SummaryOsteoblasts are bone-forming cells that differentiate from mesenchymal stem cells. Differenti...
Osteoblasts are specialized cells of mesenchy-mal origin that synthesize the extracellular ma-trix p...
Osteoblasts are cells of mesenchymal origin, which rebuild resorbed bone by synthesizing bone matrix...
The differentiation of osteoblasts from mesenchymal precursors requires a series of cell fate decisi...
The bone remodelling cycle replaces old and damaged bone and is a highly regulated, lifelong process...
Bone formation starts near the end of the embryonic stage of development and continues throughout li...
Bone is a highly specialized form of connective tissue present in most vertebrate animals as part of...
The molecular events involved in the differentiation and function of bone cells have not been clarif...
Bone marrow derived mesenchymal stem cells (MSC) are multipotent, self-renewing, mesodermal-origin s...
Summary Mature osteoblasts are the cells responsible for bone formation and are derived from precurs...
Bone is a specialised connective tissue and together with cartilage forms the strong and rigid endos...
The osteoblast differentiation capacity of skeletal stem cells (SSCs) must be tightly regulated, as ...
The term osteoinduction applies to the process by which osteogenesis is aroused. The process itself ...
Bone is a dynamic tissue constantly responding to environmental changes such as nutritional and mech...
The interacting molecular pathways which control bone remodeling in physiological conditions during ...
SummaryOsteoblasts are bone-forming cells that differentiate from mesenchymal stem cells. Differenti...
Osteoblasts are specialized cells of mesenchy-mal origin that synthesize the extracellular ma-trix p...
Osteoblasts are cells of mesenchymal origin, which rebuild resorbed bone by synthesizing bone matrix...
The differentiation of osteoblasts from mesenchymal precursors requires a series of cell fate decisi...
The bone remodelling cycle replaces old and damaged bone and is a highly regulated, lifelong process...
Bone formation starts near the end of the embryonic stage of development and continues throughout li...
Bone is a highly specialized form of connective tissue present in most vertebrate animals as part of...
The molecular events involved in the differentiation and function of bone cells have not been clarif...
Bone marrow derived mesenchymal stem cells (MSC) are multipotent, self-renewing, mesodermal-origin s...
Summary Mature osteoblasts are the cells responsible for bone formation and are derived from precurs...
Bone is a specialised connective tissue and together with cartilage forms the strong and rigid endos...
The osteoblast differentiation capacity of skeletal stem cells (SSCs) must be tightly regulated, as ...
The term osteoinduction applies to the process by which osteogenesis is aroused. The process itself ...