During kidney development the emergence of complex multicellular shapes such as the nephron (the functional unit of the kidney) rely on spatiotemporally coordinated developmental programs. These involve gene regulatory networks, signaling pathways and mechanical forces, that work in concert to shape and form the nephron(s). The generation of kidney organoids from human pluripotent stem cells now represent an unprecedented experimental set up to study these processes. Here we discuss the potential applications of kidney organoids to advance our knowledge of how mechanical forces and cell fate specification spatiotemporally interact to orchestrate nephron patterning and morphogenesis in humans. Progress in innovative techniques for quantifyin...
Item does not contain fulltextThe kidneys are essential organs that filter the blood, removing urina...
Human pluripotent stem cells-derived kidney organoids recapitulate developmental processes and tissu...
Human pluripotent stem cell (hPSC)-derived kidney organoids are revolutionizing the way we investiga...
The kidney is formed during development by reciprocal interactions between the ureteric bud (UB) and...
The human kidney contains up to 2 million epithelial nephrons responsible for blood filtration. Rege...
Directed differentiation of human pluripotent stem cells (hPSCs) can provide us any required tissue/...
The kidneys are essential organs that filter the blood, removing urinary waste while maintaining flu...
Since the first publication on generating kidney-like cell aggregates from pluripotent stem cells, v...
The human kidney develops from four progenitor populations—nephron progenitors, ureteric epithelial ...
Summary: Kidney organoids made from pluripotent stem cells have the potential to revolutionize how k...
Over the last decade the development of new molecular biology tools, advanced microscopy, live imagi...
The two major components of the kidney, the collecting system and the nephron, have different develo...
Nephron formation continues throughout kidney morphogenesis in both mice and humans. Lineage tracing...
Human pluripotent stem cells-derived kidney organoids recapitulate developmental processes and tissu...
A kidney organoid is a three-dimensional (3D) cellular aggregate grown from stem cells in vitro that...
Item does not contain fulltextThe kidneys are essential organs that filter the blood, removing urina...
Human pluripotent stem cells-derived kidney organoids recapitulate developmental processes and tissu...
Human pluripotent stem cell (hPSC)-derived kidney organoids are revolutionizing the way we investiga...
The kidney is formed during development by reciprocal interactions between the ureteric bud (UB) and...
The human kidney contains up to 2 million epithelial nephrons responsible for blood filtration. Rege...
Directed differentiation of human pluripotent stem cells (hPSCs) can provide us any required tissue/...
The kidneys are essential organs that filter the blood, removing urinary waste while maintaining flu...
Since the first publication on generating kidney-like cell aggregates from pluripotent stem cells, v...
The human kidney develops from four progenitor populations—nephron progenitors, ureteric epithelial ...
Summary: Kidney organoids made from pluripotent stem cells have the potential to revolutionize how k...
Over the last decade the development of new molecular biology tools, advanced microscopy, live imagi...
The two major components of the kidney, the collecting system and the nephron, have different develo...
Nephron formation continues throughout kidney morphogenesis in both mice and humans. Lineage tracing...
Human pluripotent stem cells-derived kidney organoids recapitulate developmental processes and tissu...
A kidney organoid is a three-dimensional (3D) cellular aggregate grown from stem cells in vitro that...
Item does not contain fulltextThe kidneys are essential organs that filter the blood, removing urina...
Human pluripotent stem cells-derived kidney organoids recapitulate developmental processes and tissu...
Human pluripotent stem cell (hPSC)-derived kidney organoids are revolutionizing the way we investiga...