The process of osteoclast differentiation and resorption is fine-tuned by signal pathways, which need to be further elucidated. The aim of this study was to explore the possible connections between NF-kappa B and Notch in RANKL-induced osteoclast activity. To this end, RANKL was used to stimulate mouse osteoclast precursor cell line RAW264.7. The number of multinucleated TRAP(+) osteoclasts was counted and the resorption area was measured. NF-kappa B transcriptional factor activity was determined by EMSA. Quantitative RT-PCR and Western blotting analysis were used to determine Hes1 (one of Notch signaling primary targets) mRNA and protein expressions respectively. Mature osteoclasts and bone resorption areas were detected in the present stu...
AbstractThe Notch signaling pathway plays a crucial role in the regulation of cell fate decision, an...
Notch signaling between neighboring cells controls many cell fate decisions in metazoans both during...
Notch is actively involved in various life processes including osteogenesis; however, the role of No...
The process of osteoclast differentiation and resorption is fine-tuned by signal pathways, which nee...
Notch signaling plays a key role in various cell differentiation processes including bone homeostasi...
During osteoclast differentiation and resorption, both NF-kappaB and Notch signalling are activated....
The Notch signaling pathway is a highly conserved cell signaling system present in most multicellula...
Osteocytes comprise more than 90% of the cells in bone and are differentiated from osteoblasts via a...
Osteogenic differentiation is a multi-step process controlled by a complex molecular framework. Notc...
Multiple myeloma (MM) is unique among hematological malignancies for its association to skeletal des...
This project contributes to our understanding of bone cell biology and sheds light on the potential ...
Bone remodeling is a dynamic process that requires osteoclast activation, resorption and reversal, p...
Notch signaling has been shown to be important in osteoblast differentiation. Therapeutic radiation ...
Notch signaling plays a central role in various cell fate decisions, including skeletal development....
AbstractThe Notch signaling pathway plays a crucial role in the regulation of cell fate decision, an...
Notch signaling between neighboring cells controls many cell fate decisions in metazoans both during...
Notch is actively involved in various life processes including osteogenesis; however, the role of No...
The process of osteoclast differentiation and resorption is fine-tuned by signal pathways, which nee...
Notch signaling plays a key role in various cell differentiation processes including bone homeostasi...
During osteoclast differentiation and resorption, both NF-kappaB and Notch signalling are activated....
The Notch signaling pathway is a highly conserved cell signaling system present in most multicellula...
Osteocytes comprise more than 90% of the cells in bone and are differentiated from osteoblasts via a...
Osteogenic differentiation is a multi-step process controlled by a complex molecular framework. Notc...
Multiple myeloma (MM) is unique among hematological malignancies for its association to skeletal des...
This project contributes to our understanding of bone cell biology and sheds light on the potential ...
Bone remodeling is a dynamic process that requires osteoclast activation, resorption and reversal, p...
Notch signaling has been shown to be important in osteoblast differentiation. Therapeutic radiation ...
Notch signaling plays a central role in various cell fate decisions, including skeletal development....
AbstractThe Notch signaling pathway plays a crucial role in the regulation of cell fate decision, an...
Notch signaling between neighboring cells controls many cell fate decisions in metazoans both during...
Notch is actively involved in various life processes including osteogenesis; however, the role of No...