Understanding how the mechanical microenvironment influences cell fate, and more importantly, by what molecular mechanisms, will enhance not only the knowledge of mesenchymal stem cell biology but also the field of regenerative medicine. Mechanical stimuli, specifically loading induced oscillatory fluid flow, plays a vital role in promoting healthy bone development, homeostasis and morphology. Recent studies suggest that such loading induced fluid flow has the potential to regulate osteogenic differentiation via the upregulation of multiple osteogenic genes; however, the molecular mechanisms involved in the transduction of a physical signal into altered cell fate have yet to be determined.Using immuno-staining, western blot analysis and luc...
INTRODUCTION:Osteoarthritis (OA) is characterized by altered homeostasis of joint cartilage and bone...
Bones are dynamic and responsive organs, they regulate their strength and mass according to the load...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...
Understanding how the mechanical microenvironment influences cell fate, and more importantly, by wha...
<p>Oscillatory fluid flow, a potent mechanical signal within the microenvironment of bone has the po...
Strain-derived flow of interstitial fluid activates signal transduction pathways in osteocytes that ...
Strain-derived flow of interstitial fluid activates signal transduction pathways in osteocytes that ...
Bone mechanotransduction is vital for skeletal integrity. Osteocytes are thought to be the cellular ...
Inactivation of beta-catenin in mesenchymal progenitors prevents osteoblast differentiation; inactiv...
poster abstractThe Wnt/β-catenin signaling pathway is an important regulatory pathway in development...
SummaryInactivation of β-catenin in mesenchymal progenitors prevents osteoblast differentiation; ina...
Mechanical forces play an important role in regulating tissue development and homeostasis in multipl...
Background/Aims: Mechanical stimulation and WNT signalling have essential roles in regulating the os...
International audienceWnt signaling plays an important role in the regulation of bone formation and ...
Multipotential mesenchymal stem cells (MSCs) are able to differentiate along several known lineages ...
INTRODUCTION:Osteoarthritis (OA) is characterized by altered homeostasis of joint cartilage and bone...
Bones are dynamic and responsive organs, they regulate their strength and mass according to the load...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...
Understanding how the mechanical microenvironment influences cell fate, and more importantly, by wha...
<p>Oscillatory fluid flow, a potent mechanical signal within the microenvironment of bone has the po...
Strain-derived flow of interstitial fluid activates signal transduction pathways in osteocytes that ...
Strain-derived flow of interstitial fluid activates signal transduction pathways in osteocytes that ...
Bone mechanotransduction is vital for skeletal integrity. Osteocytes are thought to be the cellular ...
Inactivation of beta-catenin in mesenchymal progenitors prevents osteoblast differentiation; inactiv...
poster abstractThe Wnt/β-catenin signaling pathway is an important regulatory pathway in development...
SummaryInactivation of β-catenin in mesenchymal progenitors prevents osteoblast differentiation; ina...
Mechanical forces play an important role in regulating tissue development and homeostasis in multipl...
Background/Aims: Mechanical stimulation and WNT signalling have essential roles in regulating the os...
International audienceWnt signaling plays an important role in the regulation of bone formation and ...
Multipotential mesenchymal stem cells (MSCs) are able to differentiate along several known lineages ...
INTRODUCTION:Osteoarthritis (OA) is characterized by altered homeostasis of joint cartilage and bone...
Bones are dynamic and responsive organs, they regulate their strength and mass according to the load...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...