作者
Blue B Lake, Rajasree Menon, Seth Winfree, Qiwen Hu, Ricardo Melo Ferreira, Kian Kalhor, Daria Barwinska, Edgar A Otto, Michael Ferkowicz, Dinh Diep, Nongluk Plongthongkum, Amanda Knoten, Sarah Urata, Laura H Mariani, Abhijit S Naik, Sean Eddy, Bo Zhang, Yan Wu, Diane Salamon, James C Williams, Xin Wang, Karol S Balderrama, Paul J Hoover, Evan Murray, Jamie L Marshall, Teia Noel, Anitha Vijayan, Austin Hartman, Fei Chen, Sushrut S Waikar, Sylvia E Rosas, Francis P Wilson, Paul M Palevsky, Krzysztof Kiryluk, John R Sedor, Robert D Toto, Chirag R Parikh, Eric H Kim, Rahul Satija, Anna Greka, Evan Z Macosko, Peter V Kharchenko, Joseph P Gaut, Jeffrey B Hodgin, Michael T Eadon, Pierre C Dagher, Tarek M El-Achkar, Kun Zhang, Matthias Kretzler, Sanjay Jain
发表日期
2023/7/20
期刊
Nature
卷号
619
期号
7970
页码范围
585-594
出版商
Nature Publishing Group UK
简介
Understanding kidney disease relies on defining the complexity of cell types and states, their associated molecular profiles and interactions within tissue neighbourhoods. Here we applied multiple single-cell and single-nucleus assays (>400,000 nuclei or cells) and spatial imaging technologies to a broad spectrum of healthy reference kidneys (45 donors) and diseased kidneys (48 patients). This has provided a high-resolution cellular atlas of 51 main cell types, which include rare and previously undescribed cell populations. The multi-omic approach provides detailed transcriptomic profiles, regulatory factors and spatial localizations spanning the entire kidney. We also define 28 cellular states across nephron segments and interstitium that were altered in kidney injury, encompassing cycling, adaptive (successful or maladaptive repair), transitioning and degenerative states. Molecular signatures permitted the …
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