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Resveratrol Inhibits Aortic Root Dilatation in the Fbn1 <sup>C1039G/+</sup> Marfan Mouse Model

Stijntje Hibender, Romy Franken, Cindy van Roomen, Anique ter Braake, Ingeborg van der Made, Edith E. Schermer, Quinn D. Gunst, Maurice J.B. van den Hoff, Esther Lutgens, Yigal M. Pinto, Maarten Groenink, Aeilko H. Zwinderman, Barbara J.M. Mulder, Carlie J.M. de Vries, Vivian de Waard

Arteriosclerosis Thrombosis and Vascular Biology · 2016 · ▲ 71 citations

Abstract

OBJECTIVE: Marfan syndrome (MFS) is a connective tissue disorder caused by mutations in the fibrillin-1 gene. Patients with MFS are at risk of aortic aneurysm formation and dissection. Usually, blood pressure-lowering drugs are used to reduce aortic events; however, this is not sufficient for most patients. In the aorta of smooth muscle cell-specific sirtuin-1-deficient mice, spontaneous aneurysm formation and senescence(definition) are observed. Resveratrol is known to enhance sirtuin-1 activity and to reduce senescence, which prompted us to investigate the effectiveness of resveratrol in inhibition of aortic dilatation in the Fbn1(C1039G/+) MFS mouse model. APPROACH AND RESULTS: Aortic senescence strongly correlates with aortic root dilatation rate in MFS mice. However, although resveratrol inhibits aortic dilatation, it only shows a trend toward reduced aortic senescence. Resveratrol enhances nuclear localization of sirtuin-1 in the vessel wall and, in contrast to losartan, does not affect leukocyte infiltration nor activation of SMAD2 and extracellular signal-regulated kinases 1/2 (ERK1/2). Interestingly, specific sirtuin-1 activation (SRT1720) or inhibition (sirtinol) in MFS mice does not affect aortic root dilatation rate, although senescence is changed. Resveratrol reduces aortic elastin breaks and decreases micro-RNA-29b expression coinciding with enhanced antiapoptotic Bcl-2 expression and decreased number of terminal apoptotic cells. In cultured smooth muscle cells, the resveratrol effect on micro-RNA-29b downregulation is endothelial cell and nuclear factor κB-dependent. CONCLUSIONS: Resveratrol inhibits aortic root dilatation in MFS mice by promoting elastin integrity and smooth muscle cell survival, involving downregulation of the aneurysm-related micro-RNA-29b in the aorta. On the basis of these data, resveratrol holds promise as a novel intervention strategy for patients with MFS.

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OpenAlex
DOI
10.1161/atvbaha.116.307841
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2026-07-20 MST

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APA
Hibender, S., Franken, R., Roomen, C.V., Braake, A.T., Made, I.V.D., Schermer, E.E., Gunst, Q.D., Hoff, M.J.V.D., Lutgens, E., Pinto, Y.M., Groenink, M., Zwinderman, A.H., Mulder, B.J., Vries, C.J.D., &amp; Waard, V.D. (2016). Resveratrol Inhibits Aortic Root Dilatation in the Fbn1 <sup>C1039G/+</sup> Marfan Mouse Model. <em>Arteriosclerosis Thrombosis and Vascular Biology</em>. https://doi.org/10.1161/atvbaha.116.307841
Vancouver
Hibender S, Franken R, Roomen CV, Braake AT, Made IVD, Schermer EE, et al. Resveratrol Inhibits Aortic Root Dilatation in the Fbn1 <sup>C1039G/+</sup> Marfan Mouse Model. Arteriosclerosis Thrombosis and Vascular Biology. 2016. doi:10.1161/atvbaha.116.307841.
BibTeX
@article{stijntje2016Resver, title = {Resveratrol Inhibits Aortic Root Dilatation in the Fbn1 <sup>C1039G/+</sup> Marfan Mouse Model}, author = {Stijntje Hibender and Romy Franken and Cindy van Roomen and Anique ter Braake and Ingeborg van der Made and Edith E. Schermer and Quinn D. Gunst and Maurice J.B. van den Hoff and Esther Lutgens and Yigal M. Pinto and Maarten Groenink and Aeilko H. Zwinderman and Barbara J.M. Mulder and Carlie J.M. de Vries and Vivian de Waard}, journal = {Arteriosclerosis Thrombosis and Vascular Biology}, year = {2016}, doi = {10.1161/atvbaha.116.307841}, }

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