application/pdfBone marrow mesenchymal stem and progenitor cells (BM-MSPCs) maintain homeostasis of bone tissue by providing osteoblasts. Although several markers have been identified for labeling of MSPCs, these labeled cells still contain non-BM-MSPC populations. Studies have suggested that MSPCs are observed as leptin receptor (LepR)-positive cells, whereas osteoblasts can be classified as positive for Runx2, a master regulator for osteoblastogenesis. Here, we demonstrate, using Runx2-GFP reporter mice,that the LepR-labeled population contains Runx2-GFPlow sub-population, which possesses higher fibroblastic colony-forming units (CFUs) and mesensphere capacity, criteria for assessing stem cell activity, than the Runx2-GFP− population. In ...
Osteoblast differentiation of bone marrow‐derived human mesenchymal stem cells (hMSC) can be induced...
The Runt-related transcription factor, Runx2, is essential for osteogenesis and is controlled by bot...
Determination of stem cell hierarchy/lineage is indispensable for a better understanding and augment...
Bone marrow mesenchymal stem and progenitor cells (BM-MSPCs) maintain homeostasis of bone tissue by ...
Runx2 and Sp7 are essential transcription factors for osteoblast differentiation. However, the molec...
The osteoblast differentiation capacity of skeletal stem cells (SSCs) must be tightly regulated, as ...
We generated a RUNX2-yellow fluorescent protein (YFP) reporter system to study osteogenic developmen...
The Runx2/Cbfa1 transcription factor is a scaffolding protein that promotes osteoblast differentiati...
Bone stroma contributes to the regulation of osteogenesis and hematopoiesis but also to fracture hea...
SummaryStudies of the identity and physiological function of mesenchymal stromal cells (MSCs) have b...
Runx2 is essential for osteoblast differentiation and chondrocyte maturation. During osteoblast diff...
Members of the Runx family of transcription factors play essential roles in the differentiation and ...
The adherent, non-hematopoietic fraction of bone marrow contains stem cells capable of forming all m...
The differentiation of osteoblasts from mesenchymal precursors requires a series of cell fate decisi...
We have carried out fate mapping studies using Osterix-EGFPCre and Osterix-CreERt animal models and ...
Osteoblast differentiation of bone marrow‐derived human mesenchymal stem cells (hMSC) can be induced...
The Runt-related transcription factor, Runx2, is essential for osteogenesis and is controlled by bot...
Determination of stem cell hierarchy/lineage is indispensable for a better understanding and augment...
Bone marrow mesenchymal stem and progenitor cells (BM-MSPCs) maintain homeostasis of bone tissue by ...
Runx2 and Sp7 are essential transcription factors for osteoblast differentiation. However, the molec...
The osteoblast differentiation capacity of skeletal stem cells (SSCs) must be tightly regulated, as ...
We generated a RUNX2-yellow fluorescent protein (YFP) reporter system to study osteogenic developmen...
The Runx2/Cbfa1 transcription factor is a scaffolding protein that promotes osteoblast differentiati...
Bone stroma contributes to the regulation of osteogenesis and hematopoiesis but also to fracture hea...
SummaryStudies of the identity and physiological function of mesenchymal stromal cells (MSCs) have b...
Runx2 is essential for osteoblast differentiation and chondrocyte maturation. During osteoblast diff...
Members of the Runx family of transcription factors play essential roles in the differentiation and ...
The adherent, non-hematopoietic fraction of bone marrow contains stem cells capable of forming all m...
The differentiation of osteoblasts from mesenchymal precursors requires a series of cell fate decisi...
We have carried out fate mapping studies using Osterix-EGFPCre and Osterix-CreERt animal models and ...
Osteoblast differentiation of bone marrow‐derived human mesenchymal stem cells (hMSC) can be induced...
The Runt-related transcription factor, Runx2, is essential for osteogenesis and is controlled by bot...
Determination of stem cell hierarchy/lineage is indispensable for a better understanding and augment...