Obesity Clinical Trial
Official title:
Effect of Dark Sweet Cherry (DSC) Supplementation on the Gut Microbiota-liver-brain Axis in Obese Adults
Sweet cherries (Prunus avium) are a good source of bioactive compounds including dietary fiber and phytochemicals which have been credited with multiple health benefits, including anti-inflammatory and antioxidant properties as well as preventing obesity-related metabolic disorders. However, most studies have shown such benefits using in vitro or animal models. The aim of this study was to examine the influence of DSC consumption on obesity-associated inflammation, metabolic disorders, cognitive impairment, and gut dysbiosis in obese individuals.
The duration of an individual's participation in the study was 45 days (15 days for the run-in period plus 30 days of intervention): - Screening: Eligible participants were contacted through e-mail and invited to participate in a familiarization session in which detailed information about the study along with the consent statement form was presented. Participants who met the eligibility criteria and signed the consent were scheduled for screening visits. During the screening visits, the anthropometric (waist circumference, height, weight, and BMI) and wellness measurements (blood pressure, heart rate, and oxygen saturation) were measured. - Run-in period: Participants were asked to complete a 2-week run-in period in which dietary supplements were removed from the diet while maintaining usual dietary patterns. During the run-in period, participants were asked to complete 24-hour dietary records for 5 days to have the baseline information related to their dietary patterns. In addition, participants were asked to reduce their intake of polyphenol and fiber-rich foods. After the completion of the 2-week run-in period, participants were allocated into cherry or placebo groups according to BMI, age, and gender and scheduled for study visits 1, 15, and 30. - Intervention: During the 30-day cherry or placebo supplementation, participants were asked to maintain usual physical activity and diet, and to minimize the intake of foods high in polyphenol content. Nutritional habits were evaluated using 15-day dietary records collected on Myfitnesspal. Participants were instructed to drink a cherry juice or corresponding placebo twice a day for 30 days. At each study visit (study days 1, 15, and 30), wellness checks (blood pressure, heart rate, and oxygen saturation) and anthropometric measurements (body weight, height, % of body fat, body mass index (BMI), waist and hip circumference) were recorded. Biomarkers of inflammation, metabolic disorders, and liver health were assessed on blood samples collected on study days 1 and 30. Participants were instructed to fast for 12 h. before each study appointment and to drink plenty of water to facilitate blood draws. Blood fractions were aliquoted and stored at -80 C until analyses. The gut microbiota composition was assessed on stool samples collected on study days 1 and 30. Participants were given stool collection kits and instructed to avoid the use of laxatives, stool softeners, and antiacids within 48 hr. before stool collection. Participants were asked to bring their samples on study days 1 and 30 within 2 h. of collection or to freeze them if collected a day prior until transport to our facility. Stool samples received by the research personnel were immediately stored at -80 ⁰C until analysis. Intestinal permeability, which is a feature of intestinal barrier function, was evaluated through the lactulose/mannitol/sucralose test in urine samples collected on study days 1 and 30. This test was optional for participants. On study days 1 and 30, participants were given urine collection kits and instructed to collect their samples within 5 h of drinking a sugary solution containing lactulose, mannitol, and sucralose. Samples were stored at -20°C until analysis. Cognitive function was monitored on study days 1 and 30 through interviewer-administered tests that provided information on executive function skills (visual search, scanning, working memory, processing speed, and attention). In addition, visual cognitive performance was monitored during the last 15 days of the intervention using the Visual Cognitive Testing and Training: NeuroTracker™ CORE program (NT) from CogniSens Inc, which is a single-task integrative perceptual-cognitive training system. ;
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