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Long-term expandable mouse and human-induced nephron progenitor cells enable kidney organoid maturation and modeling of plasticity and disease

Authors :
Huang, Biao
Zeng, Zipeng
Kim, Sunghyun
Fausto, Connor C.
Koppitch, Kari
Li, Hui
Li, Zexu
Chen, Xi
Guo, Jinjin
Zhang, Chennan C.
Ma, Tianyi
Medina, Pedro
Schreiber, Megan E.
Xia, Mateo W.
Vonk, Ariel C.
Xiang, Tianyuan
Patel, Tadrushi
Li, Yidan
Parvez, Riana K.
Der, Balint
Chen, Jyun Hao
Liu, Zhenqing
Thornton, Matthew E.
Grubbs, Brendan H.
Diao, Yarui
Dou, Yali
Gnedeva, Ksenia
Ying, Qilong
Pastor-Soler, Nuria M.
Fei, Teng
Hallows, Kenneth R.
Lindström, Nils O.
McMahon, Andrew P.
Li, Zhongwei
Source :
Cell Stem Cell; June 2024, Vol. 31 Issue: 6 p921-939.e17
Publication Year :
2024

Abstract

Nephron progenitor cells (NPCs) self-renew and differentiate into nephrons, the functional units of the kidney. Here, manipulation of p38 and YAP activity allowed for long-term clonal expansion of primary mouse and human NPCs and induced NPCs (iNPCs) from human pluripotent stem cells (hPSCs). Molecular analyses demonstrated that cultured iNPCs closely resemble primary human NPCs. iNPCs generated nephron organoids with minimal off-target cell types and enhanced maturation of podocytes relative to published human kidney organoid protocols. Surprisingly, the NPC culture medium uncovered plasticity in human podocyte programs, enabling podocyte reprogramming to an NPC-like state. Scalability and ease of genome editing facilitated genome-wide CRISPR screening in NPC culture, uncovering genes associated with kidney development and disease. Further, NPC-directed modeling of autosomal-dominant polycystic kidney disease (ADPKD) identified a small-molecule inhibitor of cystogenesis. These findings highlight a broad application for the reported iNPC platform in the study of kidney development, disease, plasticity, and regeneration.

Details

Language :
English
ISSN :
19345909
Volume :
31
Issue :
6
Database :
Supplemental Index
Journal :
Cell Stem Cell
Publication Type :
Periodical
Accession number :
ejs66526049
Full Text :
https://doi.org/10.1016/j.stem.2024.04.002