The modulation of purinergic receptors plays an important role in the regulation of bone formation by the osteoblast. On the other hand, bone morphogenetic proteins (BMPs), members of the transforming growth factor-β superfamily, regulate the differentiation of osteoprogenitor bone cells and stimulate bone formation. In this study, we investigate the effects of several nucleotides on osteoblast differentiation and function, and their relation with the gene expression of osteogenic proteins BMP-2, BMP-4 and BMP-5 as well as of differentiation markers alkaline phosphatase (ALP) and bone sialoprotein (BSP). Our results indicate that 100 μM ATP, ATPγS and UTP, but not ADP, ADPβS or UDP, promote ALP activity in rat primary osteoblasts, showing a...
Extracellular nucleotides like ATP bind to cell surface receptors (P2 purinergic receptors) in many...
Bone turnover occurs at discreet sites in the remodeling skeleton. The focal nature of this process ...
P2 receptors activated by ATP are expressed in the skeletal system. However, the role of P2 receptor...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
Previous studies have shown that exogenous ATP (>1 µM) prevents bone formation in vitro by blocking ...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides like ATP bind to cell surface receptors (P2 purinergic receptors) in many...
Bone turnover occurs at discreet sites in the remodeling skeleton. The focal nature of this process ...
P2 receptors activated by ATP are expressed in the skeletal system. However, the role of P2 receptor...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
In the last years adenosine triphosphate (ATP) and subsequent purinergic system activation through P...
Previous studies have shown that exogenous ATP (>1 µM) prevents bone formation in vitro by blocking ...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides are potent signaling molecules mediating cell-specific biological function...
Extracellular nucleotides like ATP bind to cell surface receptors (P2 purinergic receptors) in many...
Bone turnover occurs at discreet sites in the remodeling skeleton. The focal nature of this process ...
P2 receptors activated by ATP are expressed in the skeletal system. However, the role of P2 receptor...