Abstract Kidney organoids derived from the human pluripotent stem cells (hPSCs) recapitulating human kidney are the attractive tool for kidney regeneration, disease modeling, and drug screening. However, the kidney organoids cultured by static conditions have the limited vascular networks and immature nephron-like structures unlike human kidney. Here, we developed a kidney organoid-on-a-chip system providing fluidic flow mimicking shear stress with optimized extracellular matrix (ECM) conditions. We demonstrated that the kidney organoids cultured in our microfluidic system showed more matured podocytes and vascular structures as compared to the static culture condition. Additionally, the kidney organoids cultured in microfluidic systems sho...
The prevalence of kidney dysfunction continues to increase worldwide, driving the need to develop tr...
An in vitro model of the human kidney glomerulus — the major site of blood filtration — could facili...
Human pluripotent stem cell (hPSC)-derived kidney organoids are revolutionizing the way we investiga...
Abstract Kidney organoids derived from human induced pluripotent stem cells (iPSCs) have proven to b...
Chronic kidney diseases are a leading cause of fatalities around the world. As the most sought-after...
Heart and kidney communicate with one another in an interdependent relationship and they influence e...
Item does not contain fulltextThe kidneys are essential organs that filter the blood, removing urina...
The kidneys are essential organs that filter the blood, removing urinary waste while maintaining flu...
Kidney organoids derived from human pluripotent stem cells (hPSCs) have extensive potential for dise...
The establishment of protocols for differentiating kidney organoids from human pluripotent stem cell...
The renal proximal tubule epithelium is responsible for active secretion of endogenous and exogenous...
A kidney organoid is a three-dimensional (3D) cellular aggregate grown from stem cells in vitro that...
Conventional 2-dimensional cell culture poorly mimics human-relevant models, which is considered a m...
Summary: Kidney organoids made from pluripotent stem cells have the potential to revolutionize how k...
AbstractTraditional approaches to pathophysiology are advancing but still have many limitations that...
The prevalence of kidney dysfunction continues to increase worldwide, driving the need to develop tr...
An in vitro model of the human kidney glomerulus — the major site of blood filtration — could facili...
Human pluripotent stem cell (hPSC)-derived kidney organoids are revolutionizing the way we investiga...
Abstract Kidney organoids derived from human induced pluripotent stem cells (iPSCs) have proven to b...
Chronic kidney diseases are a leading cause of fatalities around the world. As the most sought-after...
Heart and kidney communicate with one another in an interdependent relationship and they influence e...
Item does not contain fulltextThe kidneys are essential organs that filter the blood, removing urina...
The kidneys are essential organs that filter the blood, removing urinary waste while maintaining flu...
Kidney organoids derived from human pluripotent stem cells (hPSCs) have extensive potential for dise...
The establishment of protocols for differentiating kidney organoids from human pluripotent stem cell...
The renal proximal tubule epithelium is responsible for active secretion of endogenous and exogenous...
A kidney organoid is a three-dimensional (3D) cellular aggregate grown from stem cells in vitro that...
Conventional 2-dimensional cell culture poorly mimics human-relevant models, which is considered a m...
Summary: Kidney organoids made from pluripotent stem cells have the potential to revolutionize how k...
AbstractTraditional approaches to pathophysiology are advancing but still have many limitations that...
The prevalence of kidney dysfunction continues to increase worldwide, driving the need to develop tr...
An in vitro model of the human kidney glomerulus — the major site of blood filtration — could facili...
Human pluripotent stem cell (hPSC)-derived kidney organoids are revolutionizing the way we investiga...