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Cocoa shown to reduce blood pressure and arterial stiffness in real-life study

Date:
July 26, 2022
Source:
University of Surrey
Summary:
Cocoa only reduces blood pressure and arterial stiffness when elevated, a new study finds.
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Cocoa only reduces blood pressure and arterial stiffness when elevated, a new study from the University of Surrey finds.

Cocoa flavanols have previously been found to lower blood pressure and arterial stiffness as much as some blood pressure medication. However, how effective flavanols are in everyday life in reducing blood pressure has remained unknown, as previous studies in this area have been performed in tightly controlled experimental settings.

Surrey's new research reduces concerns that cocoa as a treatment for raised blood pressure could pose health risks by decreasing blood pressure when it is not raised, paving the way for it to be potentially used in clinical practice.

In the first study of its kind study, researchers set out to investigate the use of flavanols, a compound found in cocoa, in lowering blood pressure and arterial stiffness in individuals outside of clinical settings.

Christian Heiss, Professor of Cardiovascular Medicine at the University of Surrey, said:

"High blood pressure and arterial stiffness increases a person's risk of heart disease and strokes, so it is crucial that we investigate innovative ways to treat such conditions.

"Before we even consider introducing cocoa into clinical practices, we need to test if the results previously reported in laboratory settings safely translate into real-world settings, with people going about their everyday lives."

For several days, eleven healthy participants consumed, on alternating days, either six cocoa flavanol capsules or six placebo capsules containing brown sugar. Participants were provided with an upper arm blood pressure monitor and a finger clip measuring pulse wave velocity (PWV) which gauges levels of arterial stiffness.

Measurements of blood pressure and PWV were taken prior to consumption of the capsules and every 30 minutes after ingestion for the first three hours, and then hourly for the remaining nine hours. Researchers found that blood pressure and arterial stiffness were only lowered in participants if it was high, and there was no effect when the blood pressure was low in the morning.

Significantly, effects were also, for the first time, identified at eight hours after cocoa was consumed. Researchers believe that this second peak may be due to how bacteria in the gut metabolise cocoa flavanols.

Professor Heiss added:

"The positive impact cocoa flavanols have on our cardiovascular system, in particular, blood vessel function and blood pressure, is undeniable. Doctors often fear that some blood pressure tablets can decrease the blood pressure too much on some days.

"What we have found indicates that cocoa flavanols only decrease blood pressure if it is elevated. Working with participants' personal health technologies showed us how variable blood pressure and arterial stiffness can be from day to day and shows the role of personal health monitors in developing and implementing effective personalised care."


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Materials provided by University of Surrey. Note: Content may be edited for style and length.


Journal Reference:

  1. Mariam Bapir, Paola Campagnolo, Ana Rodriguez-Mateos, Simon S. Skene, Christian Heiss. Assessing Variability in Vascular Response to Cocoa With Personal Devices: A Series of Double-Blind Randomized Crossover n-of-1 Trials. Frontiers in Nutrition, 2022; 9 DOI: 10.3389/fnut.2022.886597

Cite This Page:

University of Surrey. "Cocoa shown to reduce blood pressure and arterial stiffness in real-life study." ScienceDaily. ScienceDaily, 26 July 2022. <www.sciencedaily.com/releases/2022/07/220726132638.htm>.
University of Surrey. (2022, July 26). Cocoa shown to reduce blood pressure and arterial stiffness in real-life study. ScienceDaily. Retrieved March 28, 2024 from www.sciencedaily.com/releases/2022/07/220726132638.htm
University of Surrey. "Cocoa shown to reduce blood pressure and arterial stiffness in real-life study." ScienceDaily. www.sciencedaily.com/releases/2022/07/220726132638.htm (accessed March 28, 2024).

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