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Steroid hormone antagonism affords vascular protection in a mouse model of vascular Ehlers-Danlos syndrome
Emily E. Juzwiak, Caitlin J. Bowen, Rhiannon Edwards, Leda Restrepo, Serena Lee, Cassie A. Parks, Anthony Zeng, Maya M. Black, Oscar E. Reyes Gaido, Emily E. Bramel, Dustin T. Shigaki, Michael A. Beer, Chiara Bellini, Harry C. Dietz, Elena Gallo MacFarlane
Emily E. Juzwiak, Caitlin J. Bowen, Rhiannon Edwards, Leda Restrepo, Serena Lee, Cassie A. Parks, Anthony Zeng, Maya M. Black, Oscar E. Reyes Gaido, Emily E. Bramel, Dustin T. Shigaki, Michael A. Beer, Chiara Bellini, Harry C. Dietz, Elena Gallo MacFarlane
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Research Article Cell biology Vascular biology

Steroid hormone antagonism affords vascular protection in a mouse model of vascular Ehlers-Danlos syndrome

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Abstract

Aortic dissection or rupture is a leading cause of mortality in vascular Ehlers-Danlos syndrome (VEDS), a disorder caused by mutations in the COL3A1 gene. Col3a1G938D/+ mice recapitulate features of VEDS, including high risk of aortic rupture. As in people with VEDS, aortic risk in this model accelerates at the onset of puberty, especially in males. We identify developmentally regulated gene programs associated with this vulnerability and that are targeted by treatments that mitigate aortic risk. Both genetic and pharmacological inhibition of the androgen receptor (AR) eliminated survival differences between sexes, while treatment with a dual AR and mineralocorticoid receptor (MR) antagonist provided near-complete and durable protection in both sexes. Pathways targeted by dual AR/MR inhibition, including those related to extracellular matrix (ECM) organization and cell-ECM interactions, largely overlapped with those also modulated by isolated MR antagonism. Selective targeting of MR signaling emerged as an effective therapeutic strategy in both sexes that avoids sexual side effects in males.

Authors

Emily E. Juzwiak, Caitlin J. Bowen, Rhiannon Edwards, Leda Restrepo, Serena Lee, Cassie A. Parks, Anthony Zeng, Maya M. Black, Oscar E. Reyes Gaido, Emily E. Bramel, Dustin T. Shigaki, Michael A. Beer, Chiara Bellini, Harry C. Dietz, Elena Gallo MacFarlane

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Figure 3

AR antagonism eliminates sexual dimorphism in survival, while MR antagonism protects VEDS mice of either sex from aortic rupture.

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AR antagonism eliminates sexual dimorphism in survival, while MR antagon...
(A) Kaplan-Meier survival curve comparing control Ar+/y; β-actin–Cre+ (n = 41) and VEDS Arnull/y; β-actin–Cre+ (n = 44) male mice. (B) Kaplan-Meier survival curve comparing untreated male VEDS mice (n = 69) and bicalutamide- (n = 37) or spironolactone- (n = 30) treated (P21-P60) male VEDS mice. (C) Kaplan-Meier survival curve comparing VEDS Ar+/+ (n = 13), VEDS Arnull/+; β-actin–Cre+ (n = 46), and VEDS Arnull/null; β-actin– Cre+ (n = 42) female mice. (D) Kaplan-Meier survival curve comparing untreated female VEDS mice (n = 67) and bicalutamide- (n = 33) or spironolactone-treated (n = 33) (P21–P60) female VEDS mice treated. (E) Kaplan-Meier survival curve comparing untreated male VEDS mice (n = 22) and male VEDS mice treated with spironolactone starting at P60 (n = 24). (F) Kaplan-Meier survival curve comparing untreated female VEDS mice (n = 20) to female VEDS mice treated with spironolactone starting at P60 (n = 23). (G) Kaplan-Meier survival curve comparing untreated male VEDS mice (n = 23) and finerenone-treated (P21–P60) male VEDS mice (n = 36). (H) Kaplan-Meier survival curve comparing untreated female VEDS mice (n = 44), and finerenone-treated (P21–P60) female VEDS mice (n = 30). P values refer to Log-rank Mantel-Cox analysis. For all panels, *P ≤ 0.05, **P ≤ 0.01, ***P ≤ 0.001, and ****P ≤ 0.0001.

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