Injured epithelial cell states impact kidney allograft survival after T-cell-mediated rejection
Abstract
Abstract T-cell–mediated rejection (TCMR) remains a major cause of kidney transplant failure, despite being considered treatable. Its impact reflects a limited understanding of the underlying molecular mechanisms and their clinical consequences. To address this, we induced acute TCMR in mouse kidney transplants and profiled molecular changes using single-nucleus RNA sequencing (snRNA-seq), spatial transcriptomics and immunofluorescence. Results were compared with human snRNA-seq data from TCMR and stable allografts, as well as single-cell deconvolution analysis of bulk transcriptomic data from kidney transplant biopsies. Here we show that TCMR induces injured epithelial cell states in mouse kidney allografts, particularly in proximal tubules and thick ascending limbs. Spatial transcriptomics of these injured epithelial states demonstrated heterogeneous localization, interactions with immune cells and cellular microenvironments. Cross-species analysis confirmed similar severely injured epithelial states in human samples, whose abundances correlated with transplant survival and persisted despite TCMR resolution. Collectively, our results identify epithelial injury cell states as a determinant of outcome after TCMR.
Article Details
Authors (28)
Anna Maria Pfefferkorn
Lorenz Jahn
Patrick T. Gauthier
Vera Anna Kulow
Johannes Roeles
Niklas Müller-Bötticher
Louisa M. S. Gerhardt
Janna Leiz
Sadia Sarfraz
Izabela Plumbom
Robert Greite
Svjetlana Lovric
Jaba Gamrekelashvili
Florian Limbourg
Jessica Schmitz
Jan Hinrich Bräsen
Irina Scheffner
Igor M. Sauer
Felix Aigner
Janine Altmüller
Thomas Conrad
Wilfried Gwinner
Naveed Ishaque
Michael Fähling
Kai M. Schmidt-Ott
Philip F. Halloran
University of Alberta, Edmonton, Canada
Muhammad Imtiaz Ashraf
Christian Hinze