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January 10, 2026Journal of the American Society of Nephrology0 citations

Single-Cell Resolution Drug Effects of Renin-Angiotensin-Aldosterone Blockade in ZSF1 Rat Diabetic Kidney Disease

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MBMichael S. BalzerJZJianfu ZhouAAAmin Abedini

Key Result

Enalapril treatment identified cathepsin D as a key regulator of renal effects, stratifying human kidney samples by kidney function and fibrosis outcomes.

Key Points

  • This study aims to investigate the specific cell types and molecular mechanisms through which enalapril affects diabetic kidney disease.
  • Utilized single-cell transcriptomics in ZSF1 obese rats
  • Analyzed injured cell states in the distal nephron
  • Identified key molecules and cell interactions affected by enalapril
  • Discovered cathepsin D as a significant regulator of enalapril effects
  • Highlighted TREM2+ macrophages as key recipients of distal nephron signals
  • Associated enalapril gene signatures with stratification of human kidney samples based on function and fibrosis

Structured PICO

P
Population
ZSF1 obese rat model of diabetic kidney disease and human kidney samples
I
Intervention
Enalapril (prolonged treatment)
O
Outcome
Target cells and driver molecules exerting enalapril drug effects via single-cell transcriptomicssurrogate

Single-cell transcriptomics reveals that enalapril's effects in diabetic kidney disease are regulated by cathepsin D and involve crosstalk between the distal nephron and TREM2+ macrophages.

Abstract

Background: Diabetic kidney disease (DKD) is the leading cause of kidney failure worldwide. Renin angiotensin-aldosterone system (RAAS) inhibitors such as enalapril have been used for decades as antiproteinuric, antihypertensive, and kidney protective agents. Still, the exact cell type of action and the molecular mechanism of drug action are elusive. Previous work has primarily emphasized injury patterns in the proximal nephron, leaving potential contributions of other nephron segments insufficiently characterized. Methods: Here, we leveraged state-of-the-art single-cell transcriptomics in the ZSF1 obese rat to elucidate potential target cells and driver molecules exerting enalapril drug effects. Results: We identified injured cell states of the distal nephron in the context of prolonged enalapril treatment. We showed cathepsin D (Ctsd), a tissue RAAS effector, as an important regulator of enalapril effects and revealed Trem2+ residential macrophages as top receivers of distal nephron-derived signals. Finally, we showed that enalapril-associated gene signatures allow stratification of human kidney samples by disease-relevant outcome measures such as kidney function and fibrosis. Conclusions: We reported CTSD as an important regulator of enalapril effects, involving crosstalk between the distal nephron and TREM2+ residential macrophages. We also demonstrated that enalapril-associated gene signatures allow stratification of human kidney samples by disease-relevant outcome measures.

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Cite This Study

Balzer et al. (2026) studied this question. Enalapril treatment identified cathepsin D as a key regulator of renal effects, stratifying human kidney samples by kidney function and fibrosis outcomes.

synapsesocial.com/papers/696321c391e05aa366cb8030https://doi.org/10.1681/asn.0000000995
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Also Consider

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  1. 1The renin-angiotensin system: going beyond the classical paradigms2019 · 357 citations
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  5. 5Pathophysiological functions of cathepsin D: Targeting its catalytic activity versus its protein binding activity?2010 · 91 citations