Adipose-derived stem cells (ASCs) are a subpopulation of mesenchymal stem cells. Compared to bone marrow-derived stem cells, they can be harvested with minimal invasiveness. ASCs can be easily expanded and were shown to be able to differentiate into several clinically relevant cell types. Therefore, this cell type represents a promising component in various tissue engineering and medical approaches (e.g., cell therapy). In vivo cells are surrounded by the extracellular matrix (ECM) that provides a wide range of tissue-specific physical and chemical cues, such as stiffness, topography, and chemical composition. Cells can sense the characteristics of their ECM and respond to them in a specific cellular behavior (e.g., proliferation or differe...
The extracellular matrix (ECM) is the non-cellular part of tissues and represents the natural enviro...
Extracellular matrix can influence stem cell choices, such as self-renewal, quiescence, migration, p...
A diverse array of environmental factors contributes to the overall control of stem cell activity. I...
Biochemical and biomechanical extracellular matrix (ECM) cues have recently been shown to play a rol...
Biochemical and biomechanical extracellular matrix (ECM) cues have recently been shown to play a rol...
Stem cells are capable of sensing and responding to the mechanical properties of extracellular matri...
It is widely accepted that stem cells directly sense the elasticity of two-dimensional (2-D) substra...
Tissue-specific stem cells reside in a specialized environment known as the niche. The niche plays a...
Introduction: Fibrin-matrices of different stiffness can be used for tissue engineering. The differe...
Introduction: Fibrin-matrices of different stiffness can be used for tissue engineering. The differe...
Tissue-specific stem cells reside in a specialized environment known as the niche. The niche plays a...
Stem cell therapies have shown promise in the treatment of musculoskeletal diseases by integrating w...
Stem cell therapies have shown promise in the treatment of musculoskeletal diseases by integrating w...
Abstract Stem cell differentiation is regulated by a diverse array of extracellular cues. Recent evi...
Extracellular matrix (ECM) is ubiquitous in multicellular life, and its structure is critical to the...
The extracellular matrix (ECM) is the non-cellular part of tissues and represents the natural enviro...
Extracellular matrix can influence stem cell choices, such as self-renewal, quiescence, migration, p...
A diverse array of environmental factors contributes to the overall control of stem cell activity. I...
Biochemical and biomechanical extracellular matrix (ECM) cues have recently been shown to play a rol...
Biochemical and biomechanical extracellular matrix (ECM) cues have recently been shown to play a rol...
Stem cells are capable of sensing and responding to the mechanical properties of extracellular matri...
It is widely accepted that stem cells directly sense the elasticity of two-dimensional (2-D) substra...
Tissue-specific stem cells reside in a specialized environment known as the niche. The niche plays a...
Introduction: Fibrin-matrices of different stiffness can be used for tissue engineering. The differe...
Introduction: Fibrin-matrices of different stiffness can be used for tissue engineering. The differe...
Tissue-specific stem cells reside in a specialized environment known as the niche. The niche plays a...
Stem cell therapies have shown promise in the treatment of musculoskeletal diseases by integrating w...
Stem cell therapies have shown promise in the treatment of musculoskeletal diseases by integrating w...
Abstract Stem cell differentiation is regulated by a diverse array of extracellular cues. Recent evi...
Extracellular matrix (ECM) is ubiquitous in multicellular life, and its structure is critical to the...
The extracellular matrix (ECM) is the non-cellular part of tissues and represents the natural enviro...
Extracellular matrix can influence stem cell choices, such as self-renewal, quiescence, migration, p...
A diverse array of environmental factors contributes to the overall control of stem cell activity. I...