Single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation

How reproducible human kidney organoids derived from different iPSC lines are, and how faithful they are to human kidney tissue remain unclear. Here, the authors use four human iPSC lines to derive kidney organoids and show how organoid composition is reproducible, comparable to human tissue and of...

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Autores principales: Ayshwarya Subramanian, Eriene-Heidi Sidhom, Maheswarareddy Emani, Katherine Vernon, Nareh Sahakian, Yiming Zhou, Maria Kost-Alimova, Michal Slyper, Julia Waldman, Danielle Dionne, Lan T. Nguyen, Astrid Weins, Jamie L. Marshall, Orit Rosenblatt-Rosen, Aviv Regev, Anna Greka
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/fec9d1d79cc3436c8e6951c9b267d13d
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spelling oai:doaj.org-article:fec9d1d79cc3436c8e6951c9b267d13d2021-12-02T15:35:10ZSingle cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation10.1038/s41467-019-13382-02041-1723https://doaj.org/article/fec9d1d79cc3436c8e6951c9b267d13d2019-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13382-0https://doaj.org/toc/2041-1723How reproducible human kidney organoids derived from different iPSC lines are, and how faithful they are to human kidney tissue remain unclear. Here, the authors use four human iPSC lines to derive kidney organoids and show how organoid composition is reproducible, comparable to human tissue and of improved quality after transplantation.Ayshwarya SubramanianEriene-Heidi SidhomMaheswarareddy EmaniKatherine VernonNareh SahakianYiming ZhouMaria Kost-AlimovaMichal SlyperJulia WaldmanDanielle DionneLan T. NguyenAstrid WeinsJamie L. MarshallOrit Rosenblatt-RosenAviv RegevAnna GrekaNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-15 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ayshwarya Subramanian
Eriene-Heidi Sidhom
Maheswarareddy Emani
Katherine Vernon
Nareh Sahakian
Yiming Zhou
Maria Kost-Alimova
Michal Slyper
Julia Waldman
Danielle Dionne
Lan T. Nguyen
Astrid Weins
Jamie L. Marshall
Orit Rosenblatt-Rosen
Aviv Regev
Anna Greka
Single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation
description How reproducible human kidney organoids derived from different iPSC lines are, and how faithful they are to human kidney tissue remain unclear. Here, the authors use four human iPSC lines to derive kidney organoids and show how organoid composition is reproducible, comparable to human tissue and of improved quality after transplantation.
format article
author Ayshwarya Subramanian
Eriene-Heidi Sidhom
Maheswarareddy Emani
Katherine Vernon
Nareh Sahakian
Yiming Zhou
Maria Kost-Alimova
Michal Slyper
Julia Waldman
Danielle Dionne
Lan T. Nguyen
Astrid Weins
Jamie L. Marshall
Orit Rosenblatt-Rosen
Aviv Regev
Anna Greka
author_facet Ayshwarya Subramanian
Eriene-Heidi Sidhom
Maheswarareddy Emani
Katherine Vernon
Nareh Sahakian
Yiming Zhou
Maria Kost-Alimova
Michal Slyper
Julia Waldman
Danielle Dionne
Lan T. Nguyen
Astrid Weins
Jamie L. Marshall
Orit Rosenblatt-Rosen
Aviv Regev
Anna Greka
author_sort Ayshwarya Subramanian
title Single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation
title_short Single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation
title_full Single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation
title_fullStr Single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation
title_full_unstemmed Single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation
title_sort single cell census of human kidney organoids shows reproducibility and diminished off-target cells after transplantation
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/fec9d1d79cc3436c8e6951c9b267d13d
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