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June 10, 2020Hypertension282 citationsOpen Access

Trimethylamine-N-Oxide Promotes Age-Related Vascular Oxidative Stress and Endothelial Dysfunction in Mice and Healthy Humans

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VBVienna E. BruntVascular MedicineRGRachel A. Gioscia‐RyanBrigham and Women's HospitalACAbigail G. CassoUniversity of Colorado Boulder

Structured PICO

Does trimethylamine-N-oxide (TMAO) induce age-related vascular oxidative stress and endothelial dysfunction?

P
Population
Healthy humans (middle-aged/older and young adults) and mice (young and old models).
I
Intervention
Dietary supplementation with trimethylamine-N-oxide (mice), 3,3-dimethyl-1-butanol for 8 to 10 weeks (mice), and ascorbic acid infusion (humans).
C
Comparator
Control feeding (mice) and young healthy adults (humans).
O
Outcome
Endothelial function (assessed by brachial artery flow-mediated dilation in humans and carotid artery endothelium-dependent dilation to acetylcholine in mice).surrogate

Trimethylamine-N-oxide (TMAO) directly promotes age-related endothelial dysfunction through oxidative stress, highlighting a potential microbiome-derived target for cardiovascular disease prevention.

Abstract

Age-related vascular endothelial dysfunction is a major antecedent to cardiovascular diseases. We investigated whether increased circulating levels of the gut microbiome-generated metabolite trimethylamine-N-oxide induces endothelial dysfunction with aging. In healthy humans, plasma trimethylamine-N-oxide was higher in middle-aged/older (64±7 years) versus young (22±2 years) adults (6.5±0.7 versus 1.6±0.2 µmol/L) and inversely related to brachial artery flow-mediated dilation (r2=0.29, PPG-nitro-L-arginine methyl ester). Acute incubation of carotid arteries with trimethylamine-N-oxide recapitulated these events. Next, treatment with 3,3-dimethyl-1-butanol for 8 to 10 weeks to suppress trimethylamine-N-oxide selectively improved endothelium-dependent dilation in old mice to young levels (peak: 90±2%) by normalizing vascular superoxide production, restoring nitric oxide-mediated dilation, and ameliorating superoxide-related suppression of endothelium-dependent dilation. Lastly, among healthy middle-aged/older adults, higher plasma trimethylamine-N-oxide was associated with greater nitrotyrosine abundance in biopsied endothelial cells, and infusion of the antioxidant ascorbic acid restored flow-mediated dilation to young levels, indicating tonic oxidative stress-related suppression of endothelial function with higher circulating trimethylamine-N-oxide. Using multiple experimental approaches in mice and humans, we demonstrate a clear role of trimethylamine-N-oxide in promoting age-related endothelial dysfunction via oxidative stress, which may have implications for prevention of cardiovascular diseases.

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Cite This Study

Brunt et al. (2020) studied this question.

synapsesocial.com/papers/69da7e2b8988aeabbe686dfbhttps://doi.org/10.1161/hypertensionaha.120.14759
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