<p>hMSC were seeded at 10,000 cells/cm<sup>2</sup> under expansion conditions overnight then switched to osteoblastic differentiation conditions, without dexamethasone (Day 0). hMSC were treated with vitamin D<sub>3</sub> metabolites 1α,25(OH)<sub>2</sub>D<sub>3</sub> or 24R,25(OH)<sub>2</sub>D<sub>3</sub> (10nM), or the vitamin D<sub>3</sub> pro-hormone 25-hydroxyvitamin D<sub>3</sub> (25(OH)D<sub>3</sub>) (10nM), starting at Day 0, and then re-treated every 3 days with media changes through Day 14. Control groups had no vitamin D<sub>3</sub> treatments. Cells were fixed or harvested for RNA and protein at Days 3 and 14. A) Alizarin Red-S stain was used to determine Ca<sup>2+</sup> mineralization. B) RT-qPCR analysis of p63 isoform (top pa...
The effects of vitamin D on osteoblast mineralization are well documented. Reports of the effects of...
<p>(a) Osteogenic differentiation was confirmed by Alizarin Red staining after 40 days in OBM. The u...
Human mesenchymal stem cells (hMSCs) are a promising cell source for bone tissue engineering, but du...
<p>hMSC were transfected with pcDNA3.0-p63 vectors (7 days), followed by selection with G418 (3 week...
<p>Knockdown of total p63 (siPan-p63; 50nM) or the p63γ (TAp63γ & ΔNp63γ) splice variants (sip63γ; 5...
<p>hMSC were transfected with pcDNA3.0-p63 vectors (7 days), leading to transient overexpression of ...
The transcription factor p63 is required for skeletal formation, and is important for the regula-tio...
Incorporation of 1,25(OH)2 vitamin D3 (vitD3) into tissue-engineered scaffolds could aid the healing...
Vitamin D3 is well known to be involved in bone formation during foetal development and has been sho...
<p>(A) von Kossa/toluidine blue double stain was used to quantify osteoblast number and osteoblast s...
(A) qPCR analysis of Setd2 and adipocyte markers including Pparγ1, Pparγ2, Cebpα, Fabp4, and Perilip...
<p>(A) Flow cytometry analysis of specific Mo markers CD11b and CD14 expression was performed from d...
The osteoblast is the bone-forming cell and is derived from mesenchymal stem cells (MSCs). Osteo-ind...
1 alpha,25-dihydroxyitamin D-3 (1,25D3) deficiency leads to impaired bone mineralization. We used th...
Copyright © 2007 Elsevier Inc. All rights reserved.Circulating 1 alpha,25-dihydroxyvitamin D(3) (1,2...
The effects of vitamin D on osteoblast mineralization are well documented. Reports of the effects of...
<p>(a) Osteogenic differentiation was confirmed by Alizarin Red staining after 40 days in OBM. The u...
Human mesenchymal stem cells (hMSCs) are a promising cell source for bone tissue engineering, but du...
<p>hMSC were transfected with pcDNA3.0-p63 vectors (7 days), followed by selection with G418 (3 week...
<p>Knockdown of total p63 (siPan-p63; 50nM) or the p63γ (TAp63γ & ΔNp63γ) splice variants (sip63γ; 5...
<p>hMSC were transfected with pcDNA3.0-p63 vectors (7 days), leading to transient overexpression of ...
The transcription factor p63 is required for skeletal formation, and is important for the regula-tio...
Incorporation of 1,25(OH)2 vitamin D3 (vitD3) into tissue-engineered scaffolds could aid the healing...
Vitamin D3 is well known to be involved in bone formation during foetal development and has been sho...
<p>(A) von Kossa/toluidine blue double stain was used to quantify osteoblast number and osteoblast s...
(A) qPCR analysis of Setd2 and adipocyte markers including Pparγ1, Pparγ2, Cebpα, Fabp4, and Perilip...
<p>(A) Flow cytometry analysis of specific Mo markers CD11b and CD14 expression was performed from d...
The osteoblast is the bone-forming cell and is derived from mesenchymal stem cells (MSCs). Osteo-ind...
1 alpha,25-dihydroxyitamin D-3 (1,25D3) deficiency leads to impaired bone mineralization. We used th...
Copyright © 2007 Elsevier Inc. All rights reserved.Circulating 1 alpha,25-dihydroxyvitamin D(3) (1,2...
The effects of vitamin D on osteoblast mineralization are well documented. Reports of the effects of...
<p>(a) Osteogenic differentiation was confirmed by Alizarin Red staining after 40 days in OBM. The u...
Human mesenchymal stem cells (hMSCs) are a promising cell source for bone tissue engineering, but du...