AbstractBackgroundPrimary culture and animal and cell-line models of prostate and bladder development have limitations in describing human biology, and novel strategies that describe the full spectrum of differentiation from foetal through to ageing tissue are required. Recent advances in biology demonstrate that direct reprogramming of somatic cells into pluripotent embryonic stem cell (ESC)-like cells is possible. These cells, termed induced pluripotent stem cells (iPSCs), could theoretically generate adult prostate and bladder tissue, providing an alternative strategy to study differentiation.ObjectiveTo generate human iPSCs derived from normal, ageing, human prostate (Pro-iPSC), and urinary tract (UT-iPSC) tissue and to assess their cap...
<div><p>Although urothelial progenitor-like cells have been described in the human urinary tract, th...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
AbstractEngineered functional organs or tissues, created with autologous somatic cells and seeded on...
Background: Primary culture and animal and cell-line models of prostate and bladder development have...
BACKGROUND: Primary culture and animal and cell-line models of prostate and bladder development have...
Background: Primary culture and animal and cell-line models of prostate and bladder development have...
PhD ThesisResearch into highly prevalent prostate diseases is limited by lack of a relevant human mo...
As bladder reconstruction strategies evolve, a feasible and safe source of transplantable urothelium...
Human stem cells are promising sources for bladder regeneration. Among several possible sources, plu...
PhD ThesisProstatic differentiation is modelled through enrichment for stem-like populations through...
<div><p>Induced pluripotent stem (iPS) cells are a valuable resource for discovery of epigenetic cha...
Induced pluripotent stem (iPS) cells are a valuable resource for discovery of epigenetic changes cri...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
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...
<div><p>Although urothelial progenitor-like cells have been described in the human urinary tract, th...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
AbstractEngineered functional organs or tissues, created with autologous somatic cells and seeded on...
Background: Primary culture and animal and cell-line models of prostate and bladder development have...
BACKGROUND: Primary culture and animal and cell-line models of prostate and bladder development have...
Background: Primary culture and animal and cell-line models of prostate and bladder development have...
PhD ThesisResearch into highly prevalent prostate diseases is limited by lack of a relevant human mo...
As bladder reconstruction strategies evolve, a feasible and safe source of transplantable urothelium...
Human stem cells are promising sources for bladder regeneration. Among several possible sources, plu...
PhD ThesisProstatic differentiation is modelled through enrichment for stem-like populations through...
<div><p>Induced pluripotent stem (iPS) cells are a valuable resource for discovery of epigenetic cha...
Induced pluripotent stem (iPS) cells are a valuable resource for discovery of epigenetic changes cri...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
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...
<div><p>Although urothelial progenitor-like cells have been described in the human urinary tract, th...
Bone marrow mesenchymal stem cells (BMSCs) are capable of differentiating into multiple cell types, ...
AbstractEngineered functional organs or tissues, created with autologous somatic cells and seeded on...