The purpose of this study is to determine whether consuming tart cherry juice daily for 12 months reduces the risk of gout attacks during this period. Individuals with an existing gout diagnosis and who have experienced at least one gout flare in the past year will be recruited to participate in this study.
Gout is a painful and often debilitating condition affecting around 3% of adults in the UK. It is a type of inflammatory arthritis caused by high levels of uric acid which is deposited as crystals in joints, resulting in painful gout flares. Cherries and cherry products have received attention for their possible role in gout management owing to their anti-inflammatory and anti-oxidant properties. Their consumption has been associated with a lower risk of gout attacks in one observational study. The consumption of cherries is also endorsed by several gout information websites and in the British Society of Rheumatology's 2017 guidelines for the management of gout. However, there is limited evidence underpinning these claims and existing studies tend to be short in duration and have small participant numbers. Gout attacks are sporadic in nature and so a long-term trial is required to clarify the therapeutic effect of cherries on gout attack risk. The investigators are aiming to recruit 120 participants who have had at least one gout flare in the previous 12 months. Using the work of Rothenbacher et al., 2011, the chance of these individuals experiencing at least one attack in the next 12 months has been calculated at 11%. It is predicted that treatment with daily cherry juice consumption will reduce gout flare recurrence (primary outcome measure) to 1/4 of the rate of the actual recurrence i.e. to 2.7%. Using these figures, a sample size of 93 participants would provide power of 0.95 at a significance level of 0.05. A sample size of 120 participants allows for an approximate 20% attrition rate. Participants will consume either 30 mL tart cherry juice (CherryActive) diluted to 250 mL with water or a fruit-flavoured placebo drink daily with breakfast for 12 months. Participants will be followed up at 6 and 12 months at the investigators' laboratory to study changes in gout flare frequency and intensity, uric acid levels and levels of inflammation. This will help determine if tart cherry juice could help reduce or even prevent gout attacks. Additionally, as gout is associated with increased cardiovascular disease (CVD) risk, changes in CVD risk markers, including blood pressure, arterial stiffness and cholesterol levels, will also be assessed. Participants will be recruited through the use of posters, advertising on the UK Gout Society website, emails to large organisations and through letters sent from General Practitioners' (GP) surgeries to eligible patients. Potentially eligible patients will be identified by surgery staff using their patient database before contact information is passed to the research team at the surgery to prepare and send out invitation letters. As this method of recruitment involves accessing patient identifiable data (name and home address) prior to patient consent being given, an application to the Confidentiality Advisory Group (CAG) will be submitted for consideration. A general linear mixed model analysis will be used to assess the effect of treatment allocation, time and their interaction on both primary and secondary outcome measures.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
38
30 mL tart cherry juice concentrate (CherryActive, UK), diluted with water to 250 mL. This is consumed daily by participants, with breakfast, for 12 months.
Consumed daily by participants, with breakfast, for 12 months.
Food and Nutrition Group, Sheffield Hallam University
Sheffield, United Kingdom
Change in gout flare frequency
Difference in gout flare frequency in tart cherry juice group versus placebo group from baseline to 12 months. Recorded as number per month.
Time frame: Measured at 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11 and 12 months
Change in gout flare intensity
Difference in gout flare intensity in tart cherry juice group versus placebo group from baseline to 12 months. Using a 0-10 Likert pain scale. The scale measures the pain of any gout flare. The possible score ranges from 0 for no pain through to 10 for worst pain imaginable. Change in pain scores between treatment and placebo groups will be compared throughout the duration of the intervention.
Time frame: Measured at 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11 and 12 months
Changes in serum urate (in millimoles per litre (mmol/l))
Difference in serum urate in tart cherry juice group versus placebo group from baseline to 12 months.
Time frame: Measured at 0, 6 and 12 months
Change in fractional excretion of uric acid (as a percentage, %)
Difference in fractional excretion of uric acid in tart cherry juice group versus placebo group from baseline to 12 months. Measured from 24 hour urine sample.
Time frame: Measured at 0, 6 and 12 months
Change in inflammatory markers (in milligrams per litre (mg/l))
Difference in inflammatory markers (c reactive protein (CRP), inter leukin-6 (IL-6) and tumour necrosis factor- alpha (TNF-alpha)) in tart cherry juice group versus placebo group from baseline to 12 months. Measured using an enzyme-linked immunosorbent assay (ELISA).
Time frame: Measured at 0, 6 and 12 months
Change in oxidative damage (in percentage (%) of tail DNA)
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Difference in markers of oxidative stress in tart cherry juice group versus placebo group from baseline to 12 months. Measured using single-cell electrophoresis 'comet assay' as 8-oxo-dg levels in lymphocytes.
Time frame: Measured at 0, 6 and 12 months
Change in antioxidant status (in percentage (%) of tail DNA)
Difference in antioxidant status in tart cherry juice group versus placebo group from baseline to 12 months. Measured using single-cell electrophoresis 'comet assay' as resistance of DNA lymphocyte to H202-induced DNA strand breaks.
Time frame: Measured at 0, 6 and 12 months
Change in blood pressure (in millimetres of mercury (mmHg))
Difference in brachial and central blood pressure in tart cherry juice group versus placebo group from baseline to 12 months. Measured using a Vicorder.
Time frame: Measured at 0, 6 and 12 months
Change in arterial stiffness (in meters per second (m/s))
Difference in arterial stiffness in tart cherry juice group versus placebo group from baseline to 12 months.
Time frame: Measured at 0, 6 and 12 months
Change in lipid profile (in millimoles per litre (mmol/l))
Difference in total cholesterol, HDL cholesterol, LDL cholesterol and triacylglycerides) in tart cherry juice group versus placebo group from baseline to 12 months.
Time frame: Measured at 0, 6 and 12 months
Height (in meters (m))
Height and weight will be combined to report BMI in kg/m\^2. Difference in BMI in tart cherry juice group versus placebo group from baseline to 12 months.
Time frame: Measured at 0, 6 and 12 months
Weight (in kilograms (kg))
Height and weight will be combined to report BMI in kg/m\^2. Difference in BMI in tart cherry juice group versus placebo group from baseline to 12 months.
Time frame: Measured at 0, 6 and 12 months