Abstract
Androgen has long been recognized for its pivotal role in the sexual dimorphism of cardiovascular diseases, including aortic aneurysms, a devastating vascular disease with a higher prevalence and fatality rate in men than women. However, the mechanism by which androgen mediates aortic aneurysms is largely unknown. Herein, we found that male mice, not female mice, developed aortic aneurysms when exposed to aldosterone and high salt (Aldo-salt). We revealed that androgen and androgen receptors (AR) were crucial for this sexually dimorphic response to Aldo-salt. We identified programmed cell death protein 1 (PD-1), an immune checkpoint, as a key link between androgen and aortic aneurysms. We demonstrated that administration of anti-PD-1 Ab and adoptive PD-1 deficient T cell transfer reinstated Aldo-salt-induced aortic aneurysms in orchiectomized mice, and genetic deletion of PD-1 exacerbated aortic aneurysms induced by high-fat diet and angiotensin II (Ang II) in non-orchiectomized mice. Mechanistically, we discovered that AR bound to the PD-1 promoter to suppress its expression in the spleen. Thus, our study unveils a mechanism by which androgen aggravates aortic aneurysms by suppressing PD-1 expression in T cells. Moreover, our study suggests that some cancer patients might benefit from screenings for aortic aneurysms during immune checkpoint therapy.
| Original language | English |
|---|---|
| Article number | 169085 |
| Journal | Journal of Clinical Investigation |
| Volume | 134 |
| Issue number | 12 |
| DOIs | |
| State | Published - Jun 17 2024 |
Bibliographical note
Publisher Copyright:© 2024 American Society for Clinical Investigation. All rights reserved.
Funding
This work is supported in part by the US NIH Grants HL125228, HL141103, HL142973, HL164398, and HL166225 (to M.G. and Z.G.), VA Merit Award CX001683 (to E.L. and Z.G.), R01 DC014468 and K18 DC014050 (to T.M.), the Institutional Development Award from the US National Institute of General Medical Sciences of NIH P30GM127211 (to the University of Kentucky Center of Research in Obesity & Cardiovascular Disease), and the Office of the Vice President for Research and an NIH NCI Center Core Support Grant P30 CA177558 (to the University of Kentucky Markey Cancer Center and Flow Cytometry & Immune Monitoring Core Facility). This work is supported in part by the US NIH Grants HL125228, HL141103, HL142973, HL164398,
| Funders | Funder number |
|---|---|
| University of Kentucky Markey Comprehensive Cancer Center | |
| Office of the Executive Vice President for Research and Partnerships, Purdue University | |
| Center Core Support Grant | |
| University of Kentucky Center of Research in Obesity and Cardiovascular Disease | |
| NCI/NIH | P30 CA177558 |
| National Institutes of Health (NIH) | K18 DC014050, CX001683, HL141103, HL166225, R01 DC014468, HL164398, HL142973, HL125228 |
| National Institute of General Medical Sciences DP2GM119177 Sophie Dumont National Institute of General Medical Sciences | P30GM127211 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
ASJC Scopus subject areas
- General Medicine
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