Human stem cells are promising sources for bladder regeneration. Among several possible sources, pluripotent stem cells are the most fascinating because they can differentiate into any cell type, and proliferate limitlessly in vitro. Here, we developed a protocol for differentiation of human pluripotent stem cells (hPSCs) into bladder urothelial cells (BUCs) under a chemically defined culture system. We first differentiated hPSCs into definitive endoderm (DE), and further specified DE cells into BUCs by treating retinoic acid under a keratinocyte-specific serum free medium. hPSC-derived DE cells showed significantly expressed DE-specific genes, but did not express mesodermal or ectodermal genes. After DE cells were specified into BUCs, they...
Objective: For in vitro tissue engineering in urology, stem cells are commonly isolated from tissue ...
The urothelium is a specialized epithelium covering the urinary excretory system. In case of lesions...
AbstractEngineered functional organs or tissues, created with autologous somatic cells and seeded on...
Abstract: Human stem cells are promising sources for bladder regeneration. Among several possible so...
In vitro generation of human urothelium from stem cells would be a major advancement in the regenera...
As bladder reconstruction strategies evolve, a feasible and safe source of transplantable urothelium...
Abstract Background Autologous urothelial cells are often obtained via bladder biopsy to generate th...
<div><p>Although urothelial progenitor-like cells have been described in the human urinary tract, th...
Although urothelial progenitor-like cells have been described in the human urinary tract, the existe...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
Background: Primary culture and animal and cell-line models of prostate and bladder development have...
WOS: 000410005000021PubMed ID: 28861309Objective: For in vitro tissue engineering in urology, stem c...
AbstractBackgroundPrimary culture and animal and cell-line models of prostate and bladder developmen...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
AbstractManipulatable models of bladder development which interrogate specific pathways are badly ne...
Objective: For in vitro tissue engineering in urology, stem cells are commonly isolated from tissue ...
The urothelium is a specialized epithelium covering the urinary excretory system. In case of lesions...
AbstractEngineered functional organs or tissues, created with autologous somatic cells and seeded on...
Abstract: Human stem cells are promising sources for bladder regeneration. Among several possible so...
In vitro generation of human urothelium from stem cells would be a major advancement in the regenera...
As bladder reconstruction strategies evolve, a feasible and safe source of transplantable urothelium...
Abstract Background Autologous urothelial cells are often obtained via bladder biopsy to generate th...
<div><p>Although urothelial progenitor-like cells have been described in the human urinary tract, th...
Although urothelial progenitor-like cells have been described in the human urinary tract, the existe...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
Background: Primary culture and animal and cell-line models of prostate and bladder development have...
WOS: 000410005000021PubMed ID: 28861309Objective: For in vitro tissue engineering in urology, stem c...
AbstractBackgroundPrimary culture and animal and cell-line models of prostate and bladder developmen...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
AbstractManipulatable models of bladder development which interrogate specific pathways are badly ne...
Objective: For in vitro tissue engineering in urology, stem cells are commonly isolated from tissue ...
The urothelium is a specialized epithelium covering the urinary excretory system. In case of lesions...
AbstractEngineered functional organs or tissues, created with autologous somatic cells and seeded on...