Mediation of coffee-induced improvements in human vascular function by chlorogenic acids and its metabolites: Two randomized, controlled, crossover intervention trials.

Charlotte E Mills, Andreas Flury, Cynthia Marmet, Laura Poquet, Stefano F Rimoldi, Claudio Sartori, Emrush Rexhaj, Roman Brenner, Yves Allemann, Diane Zimmermann, Glenn R Gibson, Don S Mottram, Maria-Jose Oruna-Concha, Lucas Actis-Goretta, Jeremy P E Spencer

Journal: Clinical nutrition (Edinburgh, Scotland) 2018;36(6):1520-1529

PMID: 28012692

Abstract

BACKGROUND & AIMS

Polyphenol intake has been linked to improvements in human vascular function, although data on hydroxycinnamates, such as chlorogenic acid (CGA) have not yet been studied. We aimed to investigate the impact of coffee intake rich in chlorogenic acid on human vascular function and whether CGAs are involved in potential effects.

METHODS

Two acute randomized, controlled, cross-over human intervention trials were conducted. The impact of coffee intake, matched for caffeine but differing in CGA content (89, and 310 mg) on flow-mediated dilatation (FMD) was assessed in 15 healthy male subjects. In a second intervention trial conducted with 24 healthy male subjects, the impact of pure 5-caffeoylquinic acid (5-CQA), the main CGA in coffee (5-CQA; 450 mg and 900 mg) on FMD was also investigated.

RESULTS

We observed a bi-phasic FMD response after low and high polyphenol, (89 mg and 310 mg CGA) intake, with increases at 1 (1.10 ± 0.43% and 1.34 ± 0.62%, respectively) and 5 (0.79% ± 0.32 and 1.52% ± 0.40, respectively) hours post coffee consumption. FMD responses to coffee intake was closely paralleled by the appearance of CGA metabolites in plasma, notably 3-, 4- and 5-feruloylquinic acid and ferulic-4'-O-sulfate at 1 h and isoferulic-3'-O-glucuronide and ferulic-4'-O-sulfate at 5 h. Intervention with purified 5-CQA (450 mg) also led to an improvement in FMD response relative to control (0.75 ± 1.31% at 1 h post intervention, p = 0.06) and concomitant appearance of plasma metabolites.

CONCLUSIONS

Coffee intake acutely improves human vascular function, an effect, in part, mediated by 5-CQA and its physiological metabolites.

STUDY REGISTRATION

The National Institutes of Health (NIH) on ClinicalTrials.govNCT01813981 and NCT01772784.

Copyright © 2016 The Author(s). Published by Elsevier Ltd.. All rights reserved.

Address: Department of Food and Nutritional Sciences, School of Chemistry, Food and Pharmacy, University of Reading, RG2 6AP, Reading, UK.; Department of Cardiology and Clinical Research, Inselspital, University Hospital Bern, CH-3010, Bern, Switzerland.; Nestlé Research Centre, Route du Jorat 94, Lausanne, 1000, Switzerland.; Department of Internal Medicine, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland.; Department of Food and Nutritional Sciences, School of Chemistry, Food and Pharmacy, University of Reading, RG2 6AP, Reading, UK. Electronic address: [email protected].
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