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Induced Trf2 deletion leads to aging vascular phenotype in mice associated with arterial telomere uncapping, senescence signaling, and oxidative stress.


ABSTRACT: Age-related vascular dysfunction in large elastic and resistance arteries is associated with reductions in microvascular perfusion and elevations in blood pressure. Recent evidence indicates that telomere uncapping-induced senescence in vascular cells may be an important source of oxidative stress and vascular dysfunction in aging, but the causal relationship between these processes has yet to be elucidated. To test this important unexplored hypothesis, we measured arterial senescence signaling and oxidative stress, carotid and mesenteric artery endothelium-dependent vasodilatory capacity, markers of mesenteric microvascular perfusion and endothelial glycocalyx deterioration, and blood pressure in a novel mouse model of Cre-inducible whole body Trf2 deletion and telomere uncapping. Trf2 deletion led to a 320% increase in arterial senescence signaling (P?

SUBMITTER: Morgan RG 

PROVIDER: S-EPMC7216296 | biostudies-literature | 2019 Feb

REPOSITORIES: biostudies-literature

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Induced Trf2 deletion leads to aging vascular phenotype in mice associated with arterial telomere uncapping, senescence signaling, and oxidative stress.

Morgan R Garrett RG   Walker Ashley E AE   Trott Daniel W DW   Machin Daniel R DR   Henson Grant D GD   Reihl Kelly D KD   Cawthon Richard M RM   Denchi Eros L EL   Liu Yu Y   Bloom Samuel I SI   Phuong Tam T TT   Richardson Russell S RS   Lesniewski Lisa A LA   Donato Anthony J AJ  

Journal of molecular and cellular cardiology 20181129


Age-related vascular dysfunction in large elastic and resistance arteries is associated with reductions in microvascular perfusion and elevations in blood pressure. Recent evidence indicates that telomere uncapping-induced senescence in vascular cells may be an important source of oxidative stress and vascular dysfunction in aging, but the causal relationship between these processes has yet to be elucidated. To test this important unexplored hypothesis, we measured arterial senescence signaling  ...[more]

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