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March 29, 2026Acta Physiologica0 citationsOpen Access

Sex‐Dependent Effects of Angiotensin II and Calcineurin in the Vasculature of Mice

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ANAlexander NolzeSRSindy RabeSRStefanie Ruhs

Key Result

Angiotensin II treatment induced calcineurin-dependent endothelial dysfunction and cellular proliferation in male mice, whereas these pathological vascular effects were absent in female mice.

Key Points

  • The research investigates how angiotensin II and calcineurin affect the blood vessels of male and female mice differently.
  • Used male and female mice with PPP3CB knockout treated with angiotensin II for 4 weeks.
  • Isolated primary aortic vascular smooth muscle cells from wild-type mice for analysis.
  • Conducted RNA sequencing to analyze gene expression and signaling pathways.
  • Blood pressure increase from angiotensin II was less in females and not dependent on calcineurin.
  • Endothelial dysfunction from angiotensin II was present in males but absent in females.
  • Female vascular smooth muscle cells showed no changes in wound closure or cell proliferation in response to angiotensin II.

Structured PICO

P
Population
Female and male mice with a global PPP3CB knockout and primary aortic vascular smooth muscle cells (aVSMCs) isolated from female and male WT mice
I
Intervention
Angiotensin II (AngII) treatment
C
Comparator
Male versus female mice
O
Outcome
Vascular changes including blood pressure and endothelial dysfunctionsurrogate

The study demonstrates that Angiotensin II-calcineurin signaling mediates vascular pathophysiology, such as endothelial dysfunction, in male but not female mice, highlighting the potential need for sex-specific cardiovascular strategies.

Abstract

ABSTRACT Aim Cardiovascular diseases display strong sex differences. Angiotensin II (AngII) is implicated in this process. The ubiquitously expressed enzymatic beta subunit of calcineurin (PPP3CB), a serine/threonine phosphatase, can mediate pathological effects of AngII in the heart. Our aim was to explore the role of calcineurin in sex‐dependent AngII‐mediated vascular changes. Methods We used female and male mice with a global PPP3CB knockout that were treated with AngII for 4 weeks as an in vivo model. For validation experiments and investigation of signaling pathways, primary aortic vascular smooth muscle cells (aVSMCs) isolated from respective female and male WT mice were utilized. Results AngII‐induced increase in blood pressure was less pronounced and not calcineurin‐dependent in female compared to male mice with no changes in media thickness or lumen area. Wire and pressure myography showed an AngII‐induced calcineurin‐dependent endothelial dysfunction in males but not in females. In aVSMCs from female mice, AngII did not influence wound closure or cell proliferation as was detectable in aVSMCs of male mice. As an underlying mechanism for these sex differences in long‐term AngII effects, RNA‐seq data and IPA revealed differentially regulated genes and pathways, involving extracellular matrix components, calcineurin, Ctgf , Egfr , and Tgfb1 . Downstream of Egfr, we identified sex‐dependent activation of PKC signaling in male and ERK/MAPK signaling in female as mediators of Ctgf expression. Conclusion Overall, the relevance of AngII‐calcineurin signaling for pathophysiological effects in the vasculature differs between female and male mice, suggesting both sexes require customized prevention and treatment strategies for cardiovascular disorders.

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Cite This Study

Nolze et al. (2026) studied Cardiovascular diseases. Angiotensin II vs. Wild-type mice / opposite sex was evaluated on Blood pressure, endothelial dysfunction, and cell proliferation. Angiotensin II treatment induced calcineurin-dependent endothelial dysfunction and cellular proliferation in male mice, whereas these pathological vascular effects were absent in female mice.

synapsesocial.com/papers/69c8c28cde0f0f753b39cf22https://doi.org/10.1111/apha.70213
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