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Kidney Organoids Are Capable of Forming Tumors, but Not Teratomas

Induced pluripotent stem cell (iPSC)-derived kidney organoids are a potential tool for the regeneration of kidney tissue. They represent an early stage of nephrogenesis and have been shown to successfsully vascularize and mature further in vivo. However, there are concerns regarding the long-term sa...

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Autores principales: Shankar, Anusha S, Du, Zhaoyu, Tejeda Mora, Hector, Boers, Ruben, Cao, Wanlu, van den Bosch, Thierry P P, Korevaar, Sander S, Boers, Joachim, van IJcken, Wilfred F J, Bindels, Eric M J, Eussen, Bert, de Klein, Annelies, Pan, Qiuwei, Oudijk, Lindsey, Clahsen-van Groningen, Marian C, Hoorn, Ewout J, Baan, Carla C, Gribnau, Joost, Hoogduijn, Martin J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9216509/
https://www.ncbi.nlm.nih.gov/pubmed/35524742
http://dx.doi.org/10.1093/stmcls/sxac009
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author Shankar, Anusha S
Du, Zhaoyu
Tejeda Mora, Hector
Boers, Ruben
Cao, Wanlu
van den Bosch, Thierry P P
Korevaar, Sander S
Boers, Joachim
van IJcken, Wilfred F J
Bindels, Eric M J
Eussen, Bert
de Klein, Annelies
Pan, Qiuwei
Oudijk, Lindsey
Clahsen-van Groningen, Marian C
Hoorn, Ewout J
Baan, Carla C
Gribnau, Joost
Hoogduijn, Martin J
author_facet Shankar, Anusha S
Du, Zhaoyu
Tejeda Mora, Hector
Boers, Ruben
Cao, Wanlu
van den Bosch, Thierry P P
Korevaar, Sander S
Boers, Joachim
van IJcken, Wilfred F J
Bindels, Eric M J
Eussen, Bert
de Klein, Annelies
Pan, Qiuwei
Oudijk, Lindsey
Clahsen-van Groningen, Marian C
Hoorn, Ewout J
Baan, Carla C
Gribnau, Joost
Hoogduijn, Martin J
author_sort Shankar, Anusha S
collection PubMed
description Induced pluripotent stem cell (iPSC)-derived kidney organoids are a potential tool for the regeneration of kidney tissue. They represent an early stage of nephrogenesis and have been shown to successfsully vascularize and mature further in vivo. However, there are concerns regarding the long-term safety and stability of iPSC derivatives. Specifically, the potential for tumorigenesis may impede the road to clinical application. To study safety and stability of kidney organoids, we analyzed their potential for malignant transformation in a teratoma assay and following long-term subcutaneous implantation in an immune-deficient mouse model. We did not detect fully functional residual iPSCs in the kidney organoids as analyzed by gene expression analysis, single-cell sequencing and immunohistochemistry. Accordingly, kidney organoids failed to form teratoma. Upon long-term subcutaneous implantation of whole organoids in immunodeficient IL2Ry(−/−)RAG2(−/−) mice, we observed tumor formation in 5 out of 103 implanted kidney organoids. These tumors were composed of WT1(+)CD56(+) immature blastemal cells and showed histological resemblance with Wilms tumor. No genetic changes were identified that contributed to the occurrence of tumorigenic cells within the kidney organoids. However, assessment of epigenetic changes revealed a unique cluster of differentially methylated genes that were also present in undifferentiated iPSCs. We discovered that kidney organoids have the capacity to form tumors upon long-term implantation. The presence of epigenetic modifications combined with the lack of environmental cues may have caused an arrest in terminal differentiation. Our results indicate that the safe implementation of kidney organoids should exclude the presence of pro-tumorigenic methylation in kidney organoids.
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spelling pubmed-92165092022-07-26 Kidney Organoids Are Capable of Forming Tumors, but Not Teratomas Shankar, Anusha S Du, Zhaoyu Tejeda Mora, Hector Boers, Ruben Cao, Wanlu van den Bosch, Thierry P P Korevaar, Sander S Boers, Joachim van IJcken, Wilfred F J Bindels, Eric M J Eussen, Bert de Klein, Annelies Pan, Qiuwei Oudijk, Lindsey Clahsen-van Groningen, Marian C Hoorn, Ewout J Baan, Carla C Gribnau, Joost Hoogduijn, Martin J Stem Cells Regenerative Medicine Induced pluripotent stem cell (iPSC)-derived kidney organoids are a potential tool for the regeneration of kidney tissue. They represent an early stage of nephrogenesis and have been shown to successfsully vascularize and mature further in vivo. However, there are concerns regarding the long-term safety and stability of iPSC derivatives. Specifically, the potential for tumorigenesis may impede the road to clinical application. To study safety and stability of kidney organoids, we analyzed their potential for malignant transformation in a teratoma assay and following long-term subcutaneous implantation in an immune-deficient mouse model. We did not detect fully functional residual iPSCs in the kidney organoids as analyzed by gene expression analysis, single-cell sequencing and immunohistochemistry. Accordingly, kidney organoids failed to form teratoma. Upon long-term subcutaneous implantation of whole organoids in immunodeficient IL2Ry(−/−)RAG2(−/−) mice, we observed tumor formation in 5 out of 103 implanted kidney organoids. These tumors were composed of WT1(+)CD56(+) immature blastemal cells and showed histological resemblance with Wilms tumor. No genetic changes were identified that contributed to the occurrence of tumorigenic cells within the kidney organoids. However, assessment of epigenetic changes revealed a unique cluster of differentially methylated genes that were also present in undifferentiated iPSCs. We discovered that kidney organoids have the capacity to form tumors upon long-term implantation. The presence of epigenetic modifications combined with the lack of environmental cues may have caused an arrest in terminal differentiation. Our results indicate that the safe implementation of kidney organoids should exclude the presence of pro-tumorigenic methylation in kidney organoids. Oxford University Press 2022-02-27 /pmc/articles/PMC9216509/ /pubmed/35524742 http://dx.doi.org/10.1093/stmcls/sxac009 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com.
spellingShingle Regenerative Medicine
Shankar, Anusha S
Du, Zhaoyu
Tejeda Mora, Hector
Boers, Ruben
Cao, Wanlu
van den Bosch, Thierry P P
Korevaar, Sander S
Boers, Joachim
van IJcken, Wilfred F J
Bindels, Eric M J
Eussen, Bert
de Klein, Annelies
Pan, Qiuwei
Oudijk, Lindsey
Clahsen-van Groningen, Marian C
Hoorn, Ewout J
Baan, Carla C
Gribnau, Joost
Hoogduijn, Martin J
Kidney Organoids Are Capable of Forming Tumors, but Not Teratomas
title Kidney Organoids Are Capable of Forming Tumors, but Not Teratomas
title_full Kidney Organoids Are Capable of Forming Tumors, but Not Teratomas
title_fullStr Kidney Organoids Are Capable of Forming Tumors, but Not Teratomas
title_full_unstemmed Kidney Organoids Are Capable of Forming Tumors, but Not Teratomas
title_short Kidney Organoids Are Capable of Forming Tumors, but Not Teratomas
title_sort kidney organoids are capable of forming tumors, but not teratomas
topic Regenerative Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9216509/
https://www.ncbi.nlm.nih.gov/pubmed/35524742
http://dx.doi.org/10.1093/stmcls/sxac009
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