Unknown

Dataset Information

0

Renal Subcapsular Transplantation of PSC-Derived Kidney Organoids Induces Neo-vasculogenesis and Significant Glomerular and Tubular Maturation In Vivo.


ABSTRACT: Human pluripotent stem cell (hPSC)-derived kidney organoids may facilitate disease modeling and the generation of tissue for renal replacement. Long-term application, however, will require transferability between hPSC lines and significant improvements in organ maturation. A key question is whether time or a patent vasculature is required for ongoing morphogenesis. Here, we show that hPSC-derived kidney organoids, derived in fully defined medium conditions and in the absence of any exogenous vascular endothelial growth factor, develop host-derived vascularization. In vivo imaging of organoids under the kidney capsule confirms functional glomerular perfusion as well as connection to pre-existing vascular networks in the organoids. Wide-field electron microscopy demonstrates that transplantation results in formation of a glomerular basement membrane, fenestrated endothelial cells, and podocyte foot processes. Furthermore, compared with non-transplanted organoids, polarization and segmental specialization of tubular epithelium are observed. These data demonstrate that functional vascularization is required for progressive morphogenesis of human kidney organoids.

SUBMITTER: van den Berg CW 

PROVIDER: S-EPMC5918682 | biostudies-other | 2018 Mar

REPOSITORIES: biostudies-other

altmetric image

Publications

Renal Subcapsular Transplantation of PSC-Derived Kidney Organoids Induces Neo-vasculogenesis and Significant Glomerular and Tubular Maturation In Vivo.

van den Berg Cathelijne W CW   Ritsma Laila L   Avramut M Cristina MC   Wiersma Loes E LE   van den Berg Bernard M BM   Leuning Daniëlle G DG   Lievers Ellen E   Koning Marije M   Vanslambrouck Jessica M JM   Koster Abraham J AJ   Howden Sara E SE   Takasato Minoru M   Little Melissa H MH   Rabelink Ton J TJ  

Stem cell reports 20180301 3


Human pluripotent stem cell (hPSC)-derived kidney organoids may facilitate disease modeling and the generation of tissue for renal replacement. Long-term application, however, will require transferability between hPSC lines and significant improvements in organ maturation. A key question is whether time or a patent vasculature is required for ongoing morphogenesis. Here, we show that hPSC-derived kidney organoids, derived in fully defined medium conditions and in the absence of any exogenous vas  ...[more]

Similar Datasets

| S-EPMC6465099 | biostudies-literature
2022-04-22 | GSE120049 | GEO
| S-EPMC3482737 | biostudies-literature
| PRJNA491500 | ENA
| S-EPMC7856474 | biostudies-literature
| S-EPMC3436890 | biostudies-literature
| S-EPMC7072104 | biostudies-literature