This study describes two experimental models for the in vitro reconstitution of the human bladder mucosa (neobladder): human urothelial stabilized cell lines were cultured on three-dimensional matrices, collagen or platelet-fibrin gets, containing murine fibroblast 3T3-J2 cells. Low-density seeding (2 x 10(4) cells/ml) of both normal (TCA-48) and neoplastic cell lines (TCA-47) on collagen matrix gave rise to isolated papillar colonies, while high-density seeding (3.75x10(6) cells/ml) led to the formation of wide pluristratified epithelial sheets, resembling the normal transitional epithelium. In contrast, high-density seeding (5x10(5) cells/ml) on platelet-fibrin matrix did not allow the formation of epithelial sheets: only isolated volumin...
OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missin...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missin...
This study describes two experimental models for the in vitro reconstitution of the human bladder mu...
Replacement of normal urothelium by pre-cancerous epithelium may explain the high recurrence rate of...
PURPOSE: We developed an experimental ex vivo organoid bladder mucosal model that can be used for ex...
textabstractThe high recurrence rate of bladder cancer is probably due to an efficient repopulation ...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
PURPOSE: Small intestinal submucosa is a xenogenic, acellular, collagen rich membrane with inherent ...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
<div><p>Although urothelial progenitor-like cells have been described in the human urinary tract, th...
Objectives: To investigate the feasibility to perform primary urothelial cell culture using porcine ...
AbstractTissue engineering materials have often been used to repair bladder damage caused by conditi...
Introduction: In the last years, tissue engineering has attracted lots of researchers, in urology to...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missin...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missin...
This study describes two experimental models for the in vitro reconstitution of the human bladder mu...
Replacement of normal urothelium by pre-cancerous epithelium may explain the high recurrence rate of...
PURPOSE: We developed an experimental ex vivo organoid bladder mucosal model that can be used for ex...
textabstractThe high recurrence rate of bladder cancer is probably due to an efficient repopulation ...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
PURPOSE: Small intestinal submucosa is a xenogenic, acellular, collagen rich membrane with inherent ...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
<div><p>Although urothelial progenitor-like cells have been described in the human urinary tract, th...
Objectives: To investigate the feasibility to perform primary urothelial cell culture using porcine ...
AbstractTissue engineering materials have often been used to repair bladder damage caused by conditi...
Introduction: In the last years, tissue engineering has attracted lots of researchers, in urology to...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missin...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missin...