OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missing, urinary tract tissues. Urinary tract tissue cell cultures must be established in vitro and adequate matrices, acting as cell carriers, must be developed. Although degradable and nondegradable polymer matrices offer adequate mechanical stability, they are not optimal for cell adherence and growth. To overcome this problem, extracellular matrix proteins, permitting cell adhesion and regulation of cell proliferation and differentiation, can be adsorbed to the surface-modified polymer. METHODS: In this study, nondegradable polymer films, poly(ethylene terephthalate), were used as an experimental model. Films were modified by graft polymerizati...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
Cell based therapies in Urology: Cell based therapy for tissue engineering in urology, like in ot...
OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missin...
In tissue engineering, degradable or non-degradable polymer matrices can act as cell-carrier-scaffol...
To evaluate the attachment and proliferation of cultured human urinary tract cells to culture plates...
In this study, a combined experimental and computational study of long-term human bladder epithelial...
This work combines experimental and computational study of Balb/3T3 clone A31 mouse embryo fibroblas...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
Scaffold materials should favor cell attachment and proliferation, and provide designable 3D structu...
Scaffold materials should favor cell attachment and proliferation, and provide designable 3D structu...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
Objective To investigate the deposition of urinary crystals and the growth characteristics of urothe...
AbstractTissue engineering materials have often been used to repair bladder damage caused by conditi...
Tissue-engineered grafts for the urinary tract are being investigated for the potential treatment of...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
Cell based therapies in Urology: Cell based therapy for tissue engineering in urology, like in ot...
OBJECTIVES: Tissue engineering methods can be applied to regenerate diseased, or congenitally missin...
In tissue engineering, degradable or non-degradable polymer matrices can act as cell-carrier-scaffol...
To evaluate the attachment and proliferation of cultured human urinary tract cells to culture plates...
In this study, a combined experimental and computational study of long-term human bladder epithelial...
This work combines experimental and computational study of Balb/3T3 clone A31 mouse embryo fibroblas...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
Scaffold materials should favor cell attachment and proliferation, and provide designable 3D structu...
Scaffold materials should favor cell attachment and proliferation, and provide designable 3D structu...
Collagen is highly conserved across species and has been used extensively for tissue regeneration; h...
Objective To investigate the deposition of urinary crystals and the growth characteristics of urothe...
AbstractTissue engineering materials have often been used to repair bladder damage caused by conditi...
Tissue-engineered grafts for the urinary tract are being investigated for the potential treatment of...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
Several models of bioartificial human urothelial mucosa (UM) have been described recently. In this s...
Cell based therapies in Urology: Cell based therapy for tissue engineering in urology, like in ot...