Plants for Human Health Institute, North Carolina State University
Kannapolis, North Carolina, 28081, United States
NCT Number: NCT04175106
This study will evaluate the availability of phytonutrients in two blueberry varieties, chosen for their phytonutrient levels. This will be compared to phytonutrient-matched processed protein bar and a macronutrient-matched control meal, in healthy human volunteers. Blueberry phytonutrients will be analyzed in blood and urine over a four-day period, 48h prior to consumption and 48h after. The participants will consume each of the four meals over a 3-month period (4-way crossover design, 4 blocks of 4-day periods). The main objective of this study is to compare the proportions of blueberry phytonutrients recovered in the blood and urine after ingestion of the four treatments. We hypothesize that phytonutrient content will be predictive of human bioavailability and that a berry-enriched processed product will have similar phytonutrient bioavailability to unprocessed berries.
The results of this study may establish if the nutritional value of a berry can be predicted or enhanced to provide elevated nutritional quality, with the ultimate goal of maximizing the health benefits of fruit consumption. As it is challenging for many to increase their fruit and vegetable intake to government recommended levels (5+ servings per day), the present proof-of-concept study explores a reasonable approach to help consumers achieve optimal health associated with high fruit and vegetable intakes, within the context of current consumption patterns, through enhancement of the nutritional density and bioavailability of common fruits and consumer products.
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Notify Me25 year–65 year
All sexes
Interventional
Not applicable
Kannapolis, North Carolina, 28081, United States
This study will evaluate the availability of phytonutrients in two blueberry varieties, chosen for their phytonutrient levels. This will be compared to phytonutrient-matched processed protein bar and a macronutrient-matched control meal, in healthy human volunteers. Blueberry phytonutrients will be analyzed in blood and urine over a four-day period, 48h prior to consumption and 48h after. The participants will consume each of the four meals over a 3-month period (4-way crossover design, 4 blocks of 4-day periods).
The main objective of this study is to compare the proportions of blueberry phytonutrients recovered in the blood and urine after ingestion of the four treatments.
After eligibility is confirmed, subjects will be randomly assigned to the four berry related interventions. The consumption of each intervention corresponds to one study period, which are separated by one-week washout. Blood will be collected at baseline and across 48h (1h, 3h, 6h, 9h, 24h, 48h) after intervention consumption while urine will be collected for 48h before and after intervention (-48h, -24h, 0-9h, 9-24h, 24-48h).
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
150 g of a non-traditional (i.e., not typically available in the supermarket) blueberry cultivar bred using natural plant breeding techniques and established as having enhanced nutritive value.
Dietary restrictions will be observed (i.e. avoidance of food or supplements containing berry phytonutrients) for 7 days before each arm visit and throughout the study days.
150 g of a standard commercially available blueberry variety (i.e., cultivar).
Dietary restrictions will be observed (i.e. avoidance of food or supplements containing berry phytonutrients) for 7 days before each arm visit and throughout the study days.
A "minimally processed" blueberry-rich protein bar matched to the phytonutrient content of the 150 g of the non-traditional blueberry.
Dietary restrictions will be observed (i.e. avoidance of food or supplements containing berry phytonutrients) for 7 days before each arm visit and throughout the study days.
The matched nutritive content of the blueberry-rich protein bar will be dissolved in whey protein
Dietary restrictions will be observed (i.e. avoidance of food or supplements containing berry phytonutrients) for 7 days before each arm visit and throughout the study days.
Time frame: 4 days of urine collection per intervention; -48, -24, 0-9, 9-24 and 24-48 hours collections of urine.
Concentration of 185 (poly)phenolic metabolites in urine was measured after consumption of the treatments using broad spectrum metabolomic analysis via UPLC-MS/MS (ultra-performance liquid chromatography coupled with tandem mass spectrometry). Recovery of each metabolite was calculated by multiplying the concentration of the metabolite (ng/mL) by the volume of urine (mL) in each collection then converted to milligrams. The total urinary recovery of each (poly)phenolic metabolite was assessed as a measurement of their bioavailability, and it was established as the sum of the recovery from each urine collection (0 h to 48 h postintervention) minus the mean of the 48 h and 24 h baseline collections per participant and treatment. Then, it was averaged across participants per treatment and per metabolite, and further summed across metabolites. Therefore, data reported for each treatment represents the sum of the means of total urinary recovery across (poly)phenolic metabolites.
Time frame: 3 days of blood collection per intervention; 1 baseline collection, followed by 1, 3, 6, 9, 24 and 48 hours post-treatment collections of blood.
Concentration of 185 (poly)phenolic metabolites in blood was measured after consumption of the treatments using broad spectrum metabolomic analysis via UPLC-MS/MS (ultra-performance liquid chromatography coupled with tandem mass spectrometry). The area under the curve (AUC) of each (poly)phenolic metabolite in serum was assessed as a measurement of the bioavailability of these metabolites per participant and treatment. It was calculated using concentration and time data in the software Phoenix WinNonlin (version 8.3, Certara). Then, AUC was averaged across participants per treatment and per metabolite, and the mean AUCs were further summed across metabolites. Therefore, data reported for each treatment represents the sum of the means of AUC across (poly)phenolic metabolites.
Time frame: 3 days of blood collection per intervention; 1 baseline collection, followed by 1, 3, 6, 9, 24 and 48 hours post-treatment collections of blood.
Concentration of 185 (poly)phenolic metabolites in serum was measured after consumption of the treatments using broad spectrum metabolomic analysis via UPLC-MS/MS (ultra-performance liquid chromatography coupled with tandem mass spectrometry). The maximum serum concentration [Cmax] of each (poly)phenolic metabolite in serum was calculated per participant and treatment using concentration and time data in the software Phoenix WinNonlin (version 8.3, Certara). Then, it was averaged across participants per treatment and per metabolite, and further averaged across metabolites. Therefore, data reported for each treatment represents the mean of the means of Cmax across (poly)phenolic metabolites.
Time frame: 3 days of blood collection per intervention; 1 baseline collection, followed by 1, 3, 6, 9, 24 and 48 hours post-treatment collections of blood.
Concentration of 185 (poly)phenolic metabolites in serum was measured after consumption of the treatments using broad spectrum metabolomic analysis via UPLC-MS/MS (ultra-performance liquid chromatography coupled with tandem mass spectrometry). The time at maximum serum concentration [Tmax] of each (poly)phenolic metabolite in serum was calculated per participant and treatment using concentration and time data in the software Phoenix WinNonlin (version 8.3, Certara). Then, it was averaged across participants per treatment and per metabolite, and further averaged across metabolites. Data reported for each treatment represents the mean of the means of Tmax across (poly)phenolic metabolites.
North Carolina State University
Other
Establishing Optimal Nutritional Quality of Blueberries: a Proof of Concept Study to Improve the Nutritional Quality of the Average Diet Using Common Plant Breeding and Processing Practices.
Acronym: BAM
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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