Amorphous calcium phosphate (aCaP) nanoparticles may trigger the osteogenic commitment of adipose-derived stem cells (ASCs) in vitro. The ASCs of three human donors are investigated using basal culture medium DMEM to either 5 or 50 µg/mL aCaP nanoparticles suspension (control: no nanoparticles). After 7 or 14 days, stem cell marker genes, as well as endothelial, osteogenic, chondrogenic, and adipogenic genes, are analyzed by qPCR. Free calcium and phosphate ion concentrations are assessed in the cell culture supernatant. After one week and 5 µg/mL aCaP, downregulation of osteogenic markers ALP and Runx2 is found, and averaged across the three donors. Our results show that after two weeks, ALP is further downregulated, but Runx2 is upregulat...
We have previously shown that elevating extracellular calcium from a concentration of 1.8 to 8 mM ac...
Objective Different microenvironments trigger distinct differentiation of stem cells. Even without ...
The development of biomaterial surfaces possessing the topographical cues that can promote mesenchym...
Amorphous calcium phosphate (aCaP) nanoparticles may trigger the osteogenic commitment of adipose-de...
The microenvironment of mesenchymal stem cells (MSCs) is responsible for the modulation in MSC commi...
In the present study, we demonstrated that calcium phosphate (Cap) nanoparticles formed in cell cult...
Rhombohedron-like and fusiform calcium carbonate nanoparticles were fabricated using a new method. T...
This study investigated the effects of the morphology and physicochemical properties of calcium phos...
OBJECTIVE Chemical supplementation of culture media to induce differentiation of adult stem cells se...
Control of stem cell fate has been traditionally enacted by applications of proteins, cytokines, and...
Tissue engineering of an osteochondral interface demands for a gradual transition of chondrocyte- to...
This study aimed to evaluate the effect of silver nanoparticles (AgNPs) alone or in combination with...
[[abstract]]Micron-scale structure biphasic calcium phosphate (BCP) materials have demonstrated prom...
Pluripotent stem cell aggregates offer an attractive approach to emulate embryonic morphogenesis and...
Nanoscale topography plays a central role in adult-stem-cell-niches. In this study we have demonstra...
We have previously shown that elevating extracellular calcium from a concentration of 1.8 to 8 mM ac...
Objective Different microenvironments trigger distinct differentiation of stem cells. Even without ...
The development of biomaterial surfaces possessing the topographical cues that can promote mesenchym...
Amorphous calcium phosphate (aCaP) nanoparticles may trigger the osteogenic commitment of adipose-de...
The microenvironment of mesenchymal stem cells (MSCs) is responsible for the modulation in MSC commi...
In the present study, we demonstrated that calcium phosphate (Cap) nanoparticles formed in cell cult...
Rhombohedron-like and fusiform calcium carbonate nanoparticles were fabricated using a new method. T...
This study investigated the effects of the morphology and physicochemical properties of calcium phos...
OBJECTIVE Chemical supplementation of culture media to induce differentiation of adult stem cells se...
Control of stem cell fate has been traditionally enacted by applications of proteins, cytokines, and...
Tissue engineering of an osteochondral interface demands for a gradual transition of chondrocyte- to...
This study aimed to evaluate the effect of silver nanoparticles (AgNPs) alone or in combination with...
[[abstract]]Micron-scale structure biphasic calcium phosphate (BCP) materials have demonstrated prom...
Pluripotent stem cell aggregates offer an attractive approach to emulate embryonic morphogenesis and...
Nanoscale topography plays a central role in adult-stem-cell-niches. In this study we have demonstra...
We have previously shown that elevating extracellular calcium from a concentration of 1.8 to 8 mM ac...
Objective Different microenvironments trigger distinct differentiation of stem cells. Even without ...
The development of biomaterial surfaces possessing the topographical cues that can promote mesenchym...