Spatially-patterned kidney assembloids recapitulate progenitor self-assembly and enable high-fidelity in vivo disease modeling

Published: 10 September 2025| Version 1 | DOI: 10.17632/vs49gkxx95.1
Contributors:
Biao Huang, Pedro Medina, Jincan He, Zipeng Zeng, Sunghyun Kim, Janet Romo, Kari Koppitch, Chennan Zhang, Georigina Gyarmati, Yohan Park, Ruslan Bohovyk, Pierre-Emmanuel Yoann N'Guetta, Jinjin Guo, Tianyi Ma, Megan Schreiber, Cong Xu, Jessica Pham, Riana Parvez, Jackson Su, Mateo Xia, Zhenqing Liu, Laura Perin, Danny El-Nachef, Charles Murry, Sanjeev Kumar, Lori O'Brien, Kurt Zimmerman, Justin Ichida, Nils Lindstrom, Nuria Pastor-Soler, Kenneth Hallows, Alexander Staruschenko, Janos Peti-Peterdi, Cizhong Jiang, Andrew McMahon, Zhongwei Li

Description

Additional Supplemental Figures for Huang et al., Spatially-patterned and functional kidney assembloids recapitulate progenitor self-assembly and enable high-fidelity in vivo disease modeling.

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Institutions

  • University of Southern California

Categories

Kidney, Polycystic Kidney Disease, Organoid, Pluripotent Stem Cell

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