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Updated: Nov 4, 2025

Author Spotlight: Enhanced Murine AAA Model Using Elastase to Mimic Human Aneurysms
Published on: July 26, 2024
Senolytic agents lessen the severity of abdominal aortic aneurysm in aged mice
Mojtaba Parvizi1, Federico Franchi2, Bonnie K Arendt1
1Endocrine Research Unit, Division of Endocrinology, Department of Internal Medicine, Mayo Clinic, Rochester, MN, United States of America.
Abstract:
Age is a major risk factor for abdominal aortic aneurysm (AAA), for which treatment options are limited to surgical intervention for large AAA and watchful waiting for small aneurysms. However, the factors that regulate the expansion of aneurysms are unclear. Development of new therapeutic strategies to prevent or treat small aneurysms awaits a more thorough understanding of the etiology of AAA formation and progression with aging. A variety of structural and functional changes have been reported in aging vasculature, but emerging evidence implicates senescent cells in the formation of AAA through their paracrine effects on vascular wall cell populations. Here we show that aging is associated with transcriptional changes in abdominal aortic tissue consistent with loss of smooth muscle cells, leukocyte adhesion, inflammation, and accumulation of senescent cells in the vascular wall and surrounding perivascular adipose tissue. Furthermore, aged mice demonstrated anatomical and histopathological features of AAA development in response to administration of angiotensin II over 28 days. Importantly, in our study we sought to determine if reducing senescent cells could lessen the severity of AAA in aged mice. We find that pretreatment of aged mice with oral senolytic agents (dasatinib + quercetin) reduced senescent cell abundance in the arterial walls and surrounding tissues and lessened the severity of AAA in response to angiotensin II administration. These data provide important preliminary evidence supporting a role of senescent cells in age-related AAA formation and progression and suggest that strategies to reduce senescent cell burden hold promise to lessen AAA severity.
Insights
Aging promotes abdominal aortic aneurysm (AAA) development. Targeting senescent cells with senolytics (dasatinib + quercetin) reduced AAA severity in aged mice, suggesting a novel therapeutic approach.
Area of Science:
- Vascular Biology
- Gerontology
- Cellular Senescence
Background:
- Abdominal aortic aneurysm (AAA) risk increases with age, but its progression mechanisms remain unclear.
- Aging vasculature exhibits changes including smooth muscle cell loss, inflammation, and senescent cell accumulation.
- Senescent cells may drive AAA through paracrine signaling in vascular and perivascular tissues.
Purpose of the Study:
- To investigate the role of senescent cells in age-related AAA formation.
- To evaluate the therapeutic potential of senolytics in mitigating AAA severity in aged mice.
Main Methods:
- Transcriptional analysis of aged abdominal aortic tissue.
- Induction of AAA in aged mice using angiotensin II.
- Administration of senolytic agents (dasatinib + quercetin) prior to AAA induction.
- Histopathological and anatomical assessment of AAA development and senescent cell burden.
Main Results:
- Aging correlated with vascular changes indicative of smooth muscle cell loss, inflammation, and senescent cell accumulation.
- Aged mice developed AAA features after angiotensin II administration.
- Senolytic treatment reduced senescent cells and lessened AAA severity in aged mice.
Conclusions:
- Senescent cells play a significant role in age-related AAA pathogenesis.
- Reducing senescent cell burden via senolytics shows promise for preventing or treating AAA.

