Individualized treatment effects of corticosteroids in IgA nephropathy
Hoelscher, D. L.; Schmitz, N. E.; Niggemeier, L.; Pilva, P.; Strauch, M.; Tesar, V.; Barratt, J.; Roberts, I. S.; Coppo, R.; the VALIGA investigators, ; Barisoni, L.; the CureGN investigators, ; Yanagita, M.; Alabalik, U.; Rule, A. D.; Jagtap, J. M.; Abreu, E. S.; Taal, M. W.; Kalra, P. A.; the NURTuRE academic steering group, ; Floege, J.; Kramann, R.; Boor, P.; the AI4IgAN study, ; Buelow, R. D.
Show abstract
IgA nephropathy (IgAN) is a leading cause of kidney failure with diverse clinical presentations and treatment responses, particularly to corticosteroids, with conflicting evidence. Due to potentially severe side effects and heterogenous responses more individualized approaches are needed. We developed a causal machine learning framework for predicting individualized treatment effects of corticosteroids in IgAN by integrating clinical variables, histopathological scores, and deep learning-based biomarkers from digitized kidney biopsies (pathomics) of 1,022 patients from eight retrospective international cohorts. At the cohort-level, corticosteroids showed no significant effect on five-year kidney survival. However, the framework identified subpopulations with and without significant treatment benefit, improving progression-free kidney survival and also reducing overtreatment in low-benefit patients. Pathomics highlighted tubulointerstitial inflammation and glomerular tuft deformation as predictors of corticosteroid response. Our framework offers a blueprint for precision therapy in IgAN, supporting clinical decision-making in the era of emerging targeted treatments.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Heterogeneous treatment effects of intensive glycemic control on kidney microvascular outcomes in ACCORD 94%
- Clonal hematopoiesis of indeterminate potential contributes to accelerated chronic kidney disease progression 94%
- RNA Alternative Splicing and Polyadenylation and Regulation of the Glomerular Filtration Barrier 94%
Similar papers in this journal
- Urine Test Predicts Kidney Injury and Death in COVID-19 94%
- Urine single cell RNA-sequencing in focal segmental glomerulosclerosis reveals inflammatory signatures in immune cells and podocytes 94%
- ATP-citrate lyase as a therapeutic target in chronic kidney disease: a Mendelian Randomization analysis 93%
Similar papers in this journal
- Urinary single-cell sequencing captures intrarenal injury and repair processes in human acute kidney injury 94%
- Dynamic Single Cell Transcriptomics Defines Kidney FGF23/KL Bioactivity and Novel Segment-Specific Inflammatory Targets 93%
- Genetically engineering endothelial niche in human kidney organoids enables multilineage maturation, vascularization, and de novo cell types 93%
Similar papers in this journal
- Circulating Plasma Biomarkers in Biopsy-Confirmed Kidney Disease: Results from the Boston Kidney Biopsy Cohort 91%
- Comparison of low eGFR prevalence and prediction for mortality using 2009 and 2021 CKD-EPI equations in Mexican adults 91%
- Seroresponse to SARS-CoV-2 vaccines among maintenance dialysis patients over six months 87%
Similar papers in this journal
- Blood immunophenotyping identifies distinct kidney histopathology and outcomes in patients with lupus nephritis 93%
- Single cell transcriptomic analysis of renal allograft rejection reveals novel insights into intragraft TCR clonality 92%
- Quantifying variant contributions in cystic kidney disease using national-scale whole genome sequencing 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.