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Updated: May 1, 2026

Whole-Kidney Three-Dimensional Staining with CUBIC
Published on: July 18, 2022
Spatial atlas of diabetic kidney disease reveals a B cell-rich subgroup
Bernhard Dumoulin1,2,3,4, Jonathan Levinsohn1,2,3,4,5, Konstantin A Klötzer1,2,3,4,6
1Renal, Electrolyte, and Hypertension Division, Department of Medicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.
Abstract:
Diabetic kidney disease (DKD), the leading cause of kidney failure, is marked by clinical and molecular heterogeneity, making therapeutic development exceedingly difficult1. Here we used Xenium and CosMx single-cell spatial transcriptomics, integrated with single-nucleus RNA sequencing, to build a cross-platform kidney atlas that makes tissue architecture computable for prognosis, non-invasive detection and patient selection. Using this atlas, we defined reproducible tissue niches and injury-linked microenvironments and uncovered a profibrotic context that expands with disease and tracks with worse kidney function. Within this architecture, we identified a B cell-predominant, tertiary lymphoid structure-like immune microenvironment that defines a distinct DKD subset with accelerated progression to renal end-points. We developed tissue biomarkers and a matched plasma protein panel that capture this biology, stratify patients in a population biobank and improve risk prediction beyond clinical models-supporting their potential for biomarker-guided selection in future B cell-targeted DKD trials.

