Keyphrases
Three-dimensional (3D)
100%
Human Mesenchymal Stem Cells (hMSCs)
100%
Soluble Factors
100%
Cell Culture
100%
Polymeric Scaffolds
100%
Differentiation Capacity
100%
3D Scaffold
80%
Human MSCs
60%
Tissue Engineering
40%
Mesenchymal Stromal Cells
40%
Engineering Approach
40%
Differentiation Potential
40%
Cell Proliferation
20%
Cell Signaling
20%
Two Dimensional
20%
Cell-to-cell
20%
Stem Cells
20%
Differentiation Process
20%
Chondrogenic
20%
Additive Manufacturing
20%
Osteogenic Lineage
20%
Cell Morphology
20%
Material Properties
20%
Phenotypic Change
20%
Two-dimensional Culture
20%
Simplified Model
20%
Tissue Constructs
20%
Cell Culture Model
20%
Mechanotransduction
20%
Cell Processes
20%
Mechanically Stable
20%
Two-dimensional Monolayer
20%
Electrospun Scaffolds
20%
Tissue Engineering Strategies
20%
Planar Surfaces
20%
Scaffold-free
20%
Cell Sensing
20%
MSC Differentiation
20%
Soluble Materials
20%
Three-dimensional Tissue
20%
Implications for Future
20%
Three-dimensional Environment
20%
Three-dimensional Cell Culture
20%
INIS
humans
100%
phenotype
100%
capacity
100%
maintenance
100%
tissues
66%
engineering
50%
comparative evaluations
33%
removal
33%
validation
16%
stem cells
16%
cell cultures
16%
signals
16%
morphology
16%
environment
16%
additives
16%
surfaces
16%
cell proliferation
16%
plasticity
16%
pellets
16%
Engineering
Soluble Factor
100%
Mesenchymal Stem Cell
100%
Dimensional Scaffold
80%
Two Dimensional
60%
Tissue Regeneration
60%
Differentiation Potential
40%
Monolayers
40%
Engineering Strategy
20%
Electrospun Scaffold
20%
Cell Morphology
20%
Dimensional Environment
20%
Differentiation Process
20%
Soluble Material
20%
Planar Surface
20%
Stem Cell
20%
Material Science
Monolayers
100%
Stem Cell
50%
Surface (Surface Science)
50%
Cell Proliferation
50%
Materials Property
50%
Biochemistry, Genetics and Molecular Biology
Stromal Cell
100%
Tissue Regeneration
60%
Stem Cell
20%
Cell Culture
20%
Signal Transduction
20%
Cell Proliferation
20%
Mechanotransduction
20%
Neuroscience
Mesenchymal Stem Cell
100%
Cell Signaling
20%
Cell Proliferation
20%
Stem Cell
20%
Cell Culture
20%
Mechanotransduction
20%