The prerequisite for a successful clinical use of autologous adipose-tissue-derived cells is the highest possible regenerative potential of the applied cell population, the stromal vascular fraction (SVF). Current isolation methods depend on high enzyme concentration, lysis buffer, long incubation steps and mechanical stress, resulting in single cell dissociation. The aim of the study was to limit cell manipulation and obtain a derivative comprising therapeutic cells (microtissue-SVF) without dissociation from their natural extracellular matrix, by employing a gentle good manufacturing practice (GMP)-grade isolation. The microtissue-SVF yielded larger numbers of viable cells as compared to the improved standard-SVF, both with low enzyme con...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
BACKGROUND: Adipose-derived mesenchymal stromal cells (Ad-MSCs) are a promising tool for advanced...
One of the biggest concerns in the Tissue Engineering field is the correct vascularization of engine...
The adipose-derived stromal vascular fraction (SVF) represents a rich source of mesenchymal cells, p...
Adipose tissue is a rich and very convenient source of cells for regenerative medicine therapeutic a...
The stromal vascular fraction (SVF) consists of a heterogeneous population of stem and stromal cells...
Adipose tissue is a rich and very convenient source of cells for regenerative medicine therapeutic a...
Objective: One of the rate-limiting barriers within the field of vascular tissue engineering is the ...
Objective: One of the rate-limiting barriers within the field of vascular tissue engineering is the ...
Vascularization holds the gold key for the effective survival and engraftment of complex engineered ...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
Autologous fat grafting for soft tissue reconstruction is challenged by unpredictable long-term graf...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
BACKGROUND: Adipose-derived mesenchymal stromal cells (Ad-MSCs) are a promising tool for advanced...
One of the biggest concerns in the Tissue Engineering field is the correct vascularization of engine...
The adipose-derived stromal vascular fraction (SVF) represents a rich source of mesenchymal cells, p...
Adipose tissue is a rich and very convenient source of cells for regenerative medicine therapeutic a...
The stromal vascular fraction (SVF) consists of a heterogeneous population of stem and stromal cells...
Adipose tissue is a rich and very convenient source of cells for regenerative medicine therapeutic a...
Objective: One of the rate-limiting barriers within the field of vascular tissue engineering is the ...
Objective: One of the rate-limiting barriers within the field of vascular tissue engineering is the ...
Vascularization holds the gold key for the effective survival and engraftment of complex engineered ...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
Autologous fat grafting for soft tissue reconstruction is challenged by unpredictable long-term graf...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
Introduction: The heterogeneous pool of cells found in the stromal vascular fraction of adipose tiss...
BACKGROUND: Adipose-derived mesenchymal stromal cells (Ad-MSCs) are a promising tool for advanced...
One of the biggest concerns in the Tissue Engineering field is the correct vascularization of engine...