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To Investigate the Effect of Tart Montmorency Cherry Juice (Prunus Cerasus) on Vascular Function.

Investigate the Effect of Tart Montmorency Cherry Juice (Prunus Cerasus) on Vascular Function.

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02234648
Enrollment
14
Registered
2014-09-09
Start date
2014-08-31
Completion date
2014-10-31
Last updated
2015-04-14

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Hypertension

Keywords

Vascular Function, tart Montmorency cherries, Arterial Stiffness, Blood Flow

Brief summary

Given the global health issues associated with poor cardiovascular function, interventions that help reduce the severity, with emphasis on prevention would not only have economic implications, but would also improve health, wellbeing and quality of life. Research provides evidence that consumption of a diet high in plant foods and rich is polyphenols is associated with a reduction in the incidence of cardiovascular disease (Hung et al 2004). Tart Montmorency cherries have been shown to be high in numerous phytochemicals (Wang et al 1999; Seeram et al 2001). Several of these compounds, are known to be vasoactive and improve blood vessel function by increasing bioavailability of vasodilators (Mudnic et al 2012), reducing vasoconstrictors (Broncel et al 2010), decreasing platelet aggregation (Hubbart et al 2006) and increasing blood vessel dilation (Schroeter et al 2006). Impaired function of the lining of blood vessels (endothelial dysfunction) has been linked to increased risk of cardiovascular disease. However, the bioavailability of all the compounds in Tart Montmorency Cherry Juice and their efficacy with respect to vascular function has not been fully determined. This study will examine the influence of tart Montmorency cherry juice on cardiovascular function, specifically arterial stiffness by pulse wave velocity and blood flow in the microcirculation by laser Doppler imaging. This study will also examine digital volume pulse and pulse wave analysis. These data will provide information on the ability of TMCJ to affect blood flow and vascular function.

Detailed description

Participants provided blood samples immediately before supplementation and sequentially 8h post ingestion. Additionally, vascular measurements including laser Doppler imaging (LDI), pulse wave analysis (PWA), pulse wave velocity (PWV), digital volume pulse (DVP) and blood pressure (BP) were performed with the participant in a supine position. LDI, PWV, PWA, and DVP were measured at 1, 2, 3, 5 and 8h intervals. BP was performed at hourly intervals. All vascular measurements took place on the non - cannulated arm. No additional food or fluid was provided during the study period except for low-nitrate mineral water. Following a minimum of two weeks washout, the participants were required to return to the laboratory to repeat the procedure with the other intervention drink.

Interventions

One bolus of 60mL of tart Montmorency concentrate mixed with 100mL of water.

OTHERPlacebo

One bolus of less than 5% fruit cordial mixed with water, maltodextrin and whey protein isolate to match for carbohydrate and calorie content of the juice.

Sponsors

Northumbria University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
PREVENTION
Masking
SINGLE (Subject)

Eligibility

Sex/Gender
MALE
Age
21 Years to 55 Years
Healthy volunteers
Yes

Inclusion criteria

* Those with blood pressure below 140/90 * Males * Aged 21 - 55y

Exclusion criteria

* Those with blood pressure above 140/90 * Taken other medication/ supplements. * Those aged \>21 or \<55.

Design outcomes

Primary

MeasureTime frame
Changes in microvasculature blood flow0,1,2,3,5 and 8 hours

Secondary

MeasureTime frame
Changes in arterial stiffness0,1,2,3,5 and 8 hours
Changes in blood pressure0,1,2,3,4,5,6,7 and 8 hours

Countries

United Kingdom

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 13, 2026