Standard cell cultures may not predict the proliferation and differentiation potential of human mesenchymal stromal cells (MSCs) after seeding on a scaffold and implanting this construct in a bone defect. We aimed to develop a more biologically relevant in vitro 3D-model for preclinical studies on the bone regeneration potential of MSCs. Human adipose tissue-derived mesenchymal stromal cells (hASCs; five donors) were seeded on biphasic calcium phosphate (BCP) granules and cultured under hypoxia (1% O2) for 14 days with pro-inflammatory TNFα, IL4, IL6, and IL17F (10 mg/mL each) added during the first three days, simulating the early stages of repair (bone construct model). Alternatively, hASCs were cultured on plastic, under 20% O2 and witho...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Objective: Regeneration of osseous defects by tissue-engineering or cell delivery approach provides ...
Standard cell cultures may not predict the proliferation and differentiation potential of human mese...
INTRODUCTION: The demand for new therapeutic approaches to treat bone defects and fractures is incre...
10noPeriosteum contains mesenchymal stem cells (Pe-MSCs) that contribute to normal bone growth, heal...
To explore the effect of human adipose-derived stromal cells (hASCs) on the osteogenesis during the ...
Critical-sized bone defects can lead to significant morbidity, and interventions are limited by the ...
Over the past twenty years, evidence has accumulated that biochemically and spatially defined networ...
INTRODUCTION: The demand for new therapeutic approaches to treat bone defects and fractures is incre...
INTRODUCTION: The demand for new therapeutic approaches to treat bone defects and fractures is incre...
Human adipose-derived stromal cells (hASCs) can be obtained from adipose tissues that offer an abund...
Background: Human adipose-derived stromal cells (hASCs) have been gaining increasing popularity in r...
Marrow stromal cell (MSC) differentiation into osteoblasts is an important part of the bone growth a...
Human adipose-derived stromal/stem cells (hASC) are widely used for in vitro modeling of physiologic...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Objective: Regeneration of osseous defects by tissue-engineering or cell delivery approach provides ...
Standard cell cultures may not predict the proliferation and differentiation potential of human mese...
INTRODUCTION: The demand for new therapeutic approaches to treat bone defects and fractures is incre...
10noPeriosteum contains mesenchymal stem cells (Pe-MSCs) that contribute to normal bone growth, heal...
To explore the effect of human adipose-derived stromal cells (hASCs) on the osteogenesis during the ...
Critical-sized bone defects can lead to significant morbidity, and interventions are limited by the ...
Over the past twenty years, evidence has accumulated that biochemically and spatially defined networ...
INTRODUCTION: The demand for new therapeutic approaches to treat bone defects and fractures is incre...
INTRODUCTION: The demand for new therapeutic approaches to treat bone defects and fractures is incre...
Human adipose-derived stromal cells (hASCs) can be obtained from adipose tissues that offer an abund...
Background: Human adipose-derived stromal cells (hASCs) have been gaining increasing popularity in r...
Marrow stromal cell (MSC) differentiation into osteoblasts is an important part of the bone growth a...
Human adipose-derived stromal/stem cells (hASC) are widely used for in vitro modeling of physiologic...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Objective: Regeneration of osseous defects by tissue-engineering or cell delivery approach provides ...