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Cellular Senescence Contributes to Large Elastic Artery Stiffening and Endothelial Dysfunction With Aging: Amelioration With Senolytic Treatment
Zachary S. Clayton, Matthew J. Rossman, Sophia Mahoney, Ravinandan Venkatasubramanian, Grace S. Maurer, David A. Hutton, Nicholas S. VanDongen, Nathan Greenberg, Abigail G. Longtine, Katelyn R. Ludwig, Vienna E. Brunt, Thomas J. LaRocca, Judith Campisi, Simon Melov, Douglas R. Seals
Hypertension · 2023 · ▲ 82 citations
Abstract
BACKGROUND: Here, we assessed the role of cellular senescence(definition) and the senescence associated secretory phenotype (SASP) in age-related aortic stiffening and endothelial dysfunction. METHODS: We studied young (6-8 mo) and old (27-29 mo) p16-3MR mice, which allows for genetic-based clearance of senescent cells with ganciclovir (GCV). We also treated old C57BL/6N mice with the senolytic ABT-263. RESULTS: In old mice, GCV reduced aortic stiffness assessed by aortic pulse wave velocity (PWV; 477±10 vs. 382±7 cm/s, P <0.05) to young levels (old-GCV vs. young-vehicle, P =0.35); ABT-263 also reduced aortic PWV in old mice (446±9 to 356±11 cm/s, P <0.05). Aortic adventitial collagen was reduced by GCV ( P <0.05) and ABT-263 ( P =0.12) in old mice. To show an effect of the circulating SASP, we demonstrated that plasma exposure from Old-vehicle p16-3MR mice, but not from Old-GCV mice, induced aortic stiffening assessed ex vivo (elastic modulus; P <0.05). Plasma proteomics implicated glycolysis in circulating SASP-mediated aortic stiffening. In old p16-3MR mice, GCV increased endothelial function assessed via peak carotid artery endothelium-dependent dilation (EDD; Old-GCV, 94±1% vs. Old-vehicle, 84±2%, P <0.05) to young levels (Old-GCV vs. young-vehicle, P =0.98), and EDD was higher in old C57BL/6N mice treated with ABT-263 vs. vehicle (96±1% vs. 82±3%, P <0.05). Improvements in endothelial function were mediated by increased nitric oxide (NO) bioavailability ( P <0.05) and reduced oxidative stress ( P <0.05). Circulating SASP factors related to NO signaling were associated with greater NO-mediated EDD following senescent cell clearance. CONCLUSIONS: Cellular senescence and the SASP contribute to vascular aging and senolytics(definition) hold promise for improving age-related vascular function.
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- 10.1161/hypertensionaha.123.21392
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- 2026-06-07 MST
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APA
Clayton, Z.S., Rossman, M.J., Mahoney, S., Venkatasubramanian, R., Maurer, G.S., Hutton, D.A., VanDongen, N.S., Greenberg, N., Longtine, A.G., Ludwig, K.R., Brunt, V.E., LaRocca, T.J., Campisi, J., Melov, S., & Seals, D.R. (2023). Cellular Senescence Contributes to Large Elastic Artery Stiffening and Endothelial Dysfunction With Aging: Amelioration With Senolytic Treatment. <em>Hypertension</em>. https://doi.org/10.1161/hypertensionaha.123.21392
Vancouver
Clayton ZS, Rossman MJ, Mahoney S, Venkatasubramanian R, Maurer GS, Hutton DA, et al. Cellular Senescence Contributes to Large Elastic Artery Stiffening and Endothelial Dysfunction With Aging: Amelioration With Senolytic Treatment. Hypertension. 2023. doi:10.1161/hypertensionaha.123.21392.
BibTeX
@unpublished{zachary2023Cellul,
title = {Cellular Senescence Contributes to Large Elastic Artery Stiffening and Endothelial Dysfunction With Aging: Amelioration With Senolytic Treatment},
author = {Zachary S. Clayton and Matthew J. Rossman and Sophia Mahoney and Ravinandan Venkatasubramanian and Grace S. Maurer and David A. Hutton and Nicholas S. VanDongen and Nathan Greenberg and Abigail G. Longtine and Katelyn R. Ludwig and Vienna E. Brunt and Thomas J. LaRocca and Judith Campisi and Simon Melov and Douglas R. Seals},
journal = {Hypertension},
year = {2023},
doi = {10.1161/hypertensionaha.123.21392},
}
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