The aim of the study was to compare the behavior of seeded cells on synthetic and natural aortic valve scaffolds during a low-flow conditioning period. Polyurethane (group A) and aortic homograft valves (group B) were consecutively seeded with human fibroblasts (FB), and endothelial cells (EC) using a rotating seeding device. Each seeding procedure was followed by an exposure to low pulsatile flow in a dynamic bioreactor for 5 days. For further analysis, samples were taken before and after conditioning. Scanning electron microscopy showed confluent cell layers in both groups. Immunohistochemical analysis showed the presence of EC and FB before and after conditioning as well as the establishment of an extracellular matrix (ECM) during condit...
Pre-endothelialization of a tissue-engineered vascular graft before implantation aims to prevent thr...
Diseased aortic valves often require replacement, with over 30% of the current aortic valve surgerie...
ABSTRACTOPTIMIZATION OF ENGINEERED HEART VALVE TISSUE EXTRACELLULAR MATRIXGeorge Carl Engelmayr, Jr....
The aim of the study was to compare the behavior of seeded cells on synthetic and natural aortic val...
Background: Tissue engineering represents a promising new method for treating heart valve diseases. ...
The aim of this research was to develop systems capable of evenly coating replacement heart valves w...
Objective: Currently used valve substitutes for valve replacement have certain disadvantages that li...
The aortic valve is situated at the origin of the aorta. The valve can present pathological features...
Cardiovascular disease is the number one killer worldwide affecting both the heart and blood vessels...
Heart valve disease (HVD) is a globally increasing problem and accounts for thousands of deaths year...
Objective: Currently used valve substitutes for valve replacement have certain disadvantages that li...
Multiple efforts have been made to develop small-diameter tissue engineered vascular grafts using a ...
AbstractObjectives: Degeneration of bioprosthetic heart valves has been suggested to be at least par...
Tissue engineered constructs with autologous adult stem cells capable of self-repair and growth are ...
Background and aim of the study: The adult human heart contains a cardiac mesenchymal stromal cell (...
Pre-endothelialization of a tissue-engineered vascular graft before implantation aims to prevent thr...
Diseased aortic valves often require replacement, with over 30% of the current aortic valve surgerie...
ABSTRACTOPTIMIZATION OF ENGINEERED HEART VALVE TISSUE EXTRACELLULAR MATRIXGeorge Carl Engelmayr, Jr....
The aim of the study was to compare the behavior of seeded cells on synthetic and natural aortic val...
Background: Tissue engineering represents a promising new method for treating heart valve diseases. ...
The aim of this research was to develop systems capable of evenly coating replacement heart valves w...
Objective: Currently used valve substitutes for valve replacement have certain disadvantages that li...
The aortic valve is situated at the origin of the aorta. The valve can present pathological features...
Cardiovascular disease is the number one killer worldwide affecting both the heart and blood vessels...
Heart valve disease (HVD) is a globally increasing problem and accounts for thousands of deaths year...
Objective: Currently used valve substitutes for valve replacement have certain disadvantages that li...
Multiple efforts have been made to develop small-diameter tissue engineered vascular grafts using a ...
AbstractObjectives: Degeneration of bioprosthetic heart valves has been suggested to be at least par...
Tissue engineered constructs with autologous adult stem cells capable of self-repair and growth are ...
Background and aim of the study: The adult human heart contains a cardiac mesenchymal stromal cell (...
Pre-endothelialization of a tissue-engineered vascular graft before implantation aims to prevent thr...
Diseased aortic valves often require replacement, with over 30% of the current aortic valve surgerie...
ABSTRACTOPTIMIZATION OF ENGINEERED HEART VALVE TISSUE EXTRACELLULAR MATRIXGeorge Carl Engelmayr, Jr....