Type 2 Angiotensin II receptor (AT2R) deficiency exacerbates cardiac senescence and fibrosis in aging mice

Cardiac aging increases susceptibility to cardiovascular diseases. Cellular senescence may be involved in the development of age-related cardiac diseases. Extensive evidence derived from both clinical and experimental studies suggest that the Type 2 Angiotensin II receptor (AT2R) exerts a potent cardioprotective effect, however, its potential contribution to age-related cardiac complications remains unknown. In this study we used AT2R knockout (AT2-KO) and wild-type mice (WT) both aged (18-21-month-old) and young (4-5-month-old) and evaluated the repercussions cardiac of aging. Old AT2-KO mice exhibited impaired systolic and diastolic cardiac function and exacerbated fibrosis accompanied by increased fibrotic markers expression. The absence of AT2R accelerated the cardiac senescence process in old mice, evidenced by early increase in p53 and p21. In addition, aged AT2-KO mice showed increased expression of Senescence-Associated Secretory Phenotype (SASP) components, activation of cardiac NF-kB and NLRP3-inflammasome followed by increased levels of cardiac IL-1β and IL-18 compared to aged WT mice. AT2R deficiency also resulted in significant DNA damage even in young animals and it was associated with a 5-month reduction in median lifespan (26 months for AT2R-KO vs. 31 months for WT). These findings suggest potential mechanisms whereby AT2R acts as a key mediator of cardiac senescence and cardioprotection during aging.

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Journal
Clinical Science
Published
2026-09-25
DOI
https://doi.org/10.1042/cs20261713
Primary Topic
Telomeres, Telomerase, and Senescence
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article
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article

Type 2 Angiotensin II receptor (AT2R) deficiency exacerbates cardiac senescence and fibrosis in aging mice

Ana Paula Cremasco Takano, Nathalia Senger, Aline Cristina Parletta, Tábatha de Oliveira Silva et al.
Clinical Science
Telomeres, Telomerase, and Senescence
article

Type 2 Angiotensin II receptor (AT2R) deficiency exacerbates cardiac senescence and fibrosis in aging mice

Ana Paula Cremasco Takano, Nathalia Senger, Aline Cristina Parletta, Tábatha de Oliveira Silva, Larissa Maria Zacarias-Rodrigues, Robson Augusto Souza dos Santos, Wenddy Wyllie Damasceno Sougey, Marina Reingruber Fevereiro, Maria Luiza Morais Barreto-Chaves, Michael Bader
article en

Abstract

Cardiac aging increases susceptibility to cardiovascular diseases. Cellular senescence may be involved in the development of age-related cardiac diseases. Extensive evidence derived from both clinical and experimental studies suggest that the Type 2 Angiotensin II receptor (AT2R) exerts a potent cardioprotective effect, however, its potential contribution to age-related cardiac complications remains unknown. In this study we used AT2R knockout (AT2-KO) and wild-type mice (WT) both aged (18-21-month-old) and young (4-5-month-old) and evaluated the repercussions cardiac of aging. Old AT2-KO mice exhibited impaired systolic and diastolic cardiac function and exacerbated fibrosis accompanied by increased fibrotic markers expression. The absence of AT2R accelerated the cardiac senescence process in old mice, evidenced by early increase in p53 and p21. In addition, aged AT2-KO mice showed increased expression of Senescence-Associated Secretory Phenotype (SASP) components, activation of cardiac NF-kB and NLRP3-inflammasome followed by increased levels of cardiac IL-1β and IL-18 compared to aged WT mice. AT2R deficiency also resulted in significant DNA damage even in young animals and it was associated with a 5-month reduction in median lifespan (26 months for AT2R-KO vs. 31 months for WT). These findings suggest potential mechanisms whereby AT2R acts as a key mediator of cardiac senescence and cardioprotection during aging.

Clinical Science
Universidade Federal de Minas Gerais (BR), Universidade de São Paulo (BR), Max Delbrück Center (DE)
Openalex Percentile: Top 12%
Telomeres, Telomerase, and Senescence
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