Rutgers, The State University of New Jersey
New Brunswick, New Jersey, 08901, United States
NCT Number: NCT04018066
The overall purpose of this study is to evaluate the effect of nutritional supplementation with a well-characterized preparation of Concord grape polyphenol-soy protein isolate (GP-SPI) on the composition of the gut microbiota.
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Notify Me18 year–35 year
All sexes
Interventional
Not applicable
New Brunswick, New Jersey, 08901, United States
The proposed study will investigate how short-term supplementation with GP-SPI may modify the gut microbial community in healthy participants while monitoring liver and kidney function/health.
Significance:
Biochemical properties of the GP-SPI food ingredient are well-documented and GP-SPI and SPI supplements have been tested extensively in mice. The proposed study is a logical follow up to animal studies, which showed that compared to control mice fed a high-fat diet (HFD) supplemented with SPI alone, mice fed an isocaloric HFD supplemented with GP-SPI exhibited greater resistance to weight gain, adiposity, and glucose intolerance. These effects were accompanied by changes in murine gut microbiota composition, including increased abundance of the microbe Akkermansia muciniphila, associated with metabolic resilience. Similar gut microbiota changes were observed in lean mice fed low-fat diet (LFD) supplemented with GP-SPI.
The B-type proanthocyanidin (PAC) class of polyphenols contained in grape berries, especially skins and seeds, have been associated with health benefits; however, PACs are poorly absorbed and reach high concentration only in the colon raising questions about mechanism(s) of action. Prior studies showed that dietary PACs from grape and cranberry alter the gut microbiota in association with metabolic resilience. PACs are also biotransformed by gut bacteria to yield microbial metabolites (MMs) that may contribute to health benefits.
Research Design and Methods
Prospective participants will be recruited through flyers posted locally on Rutgers University campuses and sent to university email lists. Interested persons will be screened according to inclusion and exclusion criteria.
Enrolled subjects will begin the 17-day study.
Study Procedures
Samples will be used for a longitudinal, microbiome-wide association study (MWAS) to identify gut bacteria species/strains that are positively or negatively associated with GP-SPI supplementation. Metabolomics analysis will be performed on collected urine, fecal, and blood samples to identify/quantify known and unknown metabolites. Shotgun metagenomic sequencing will be performed on fecal samples to generate high quality draft genomes for species/strain level identification. These dynamic data sets will serve as input for the MWAS to correlate increasing/decreasing levels of gut bacterial species/strains to increasing/decreasing metabolites. These bacteria-metabolite associations will then be used to infer cause-effect relationships that can be further tested in vitro and in mouse models. We expect that successful completion of these studies will contribute to mechanistic explanations for how dietary polyphenols such as grape PACs alter the gut microbiota and resulting MM to promote metabolic health.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
grape polyphenol-soy protein isolate complex (GP-SPI)
Time frame: 16S rRNA amplicon sequencing will be performed on samples collected at baseline (before intervention, day -5), after 5 days of SPI supplementation (day 0), and after 10 days of GP-SPI supplementation (day 10). Total time frame is 17 days.
Evaluate the effect of nutritional supplementation with GP-SPI on gut microbiota composition by 16S rRNA amplicon sequencing and analysis
Time frame: Samples will be analyzed within one week of blood collection
Evaluate the effect of GP-SPI on kidney and liver health/function via CMP blood tests ALP, AST, ALT
Time frame: Samples will be analyzed within one week of blood collection
Evaluate the effect of GP-SPI on kidney and liver health/function via CMP blood tests Measure glucose, blood urea nitrogen, creatine, calcium, bilirubin total
Time frame: Samples will be analyzed within one week of blood collection
The Anion gap was measured for all 27 participants. The anion gap is a calculation of the difference between the amounts of some negatively charged electrolytes (such as chloride and bicarbonate) and the amount of positively charged electrolytes (such as sodium) in blood. The anion gap reveals whether blood has an imbalance of electrolytes, i.e., blood is too acidic or too basic.
Time frame: Samples will be analyzed within one week of blood collection
For all 27 participants CMP measured four electrolytes: sodium, potassium, chloride, total carbon dioxide. Electrolytes are minerals that carry an electric charge when they are dissolved in a liquid. These electrolytes in blood control nerve and muscle function and maintain the acid-base balance (pH balance) of blood and water balance.
Sodium: Most sodium comes from food, and kidneys help regulate body's sodium levels.
Potassium: Potassium comes from food and is present in all tissues of body. Bicarbonate: Bicarbonate indicates the amount of carbon dioxide (CO₂) in blood. Chloride: Chloride functions along with sodium, potassium and bicarbonate to control many processes in the body.
Time frame: Samples will be analyzed within one week of blood collection
Evaluate the effect of GP-SPI on kidney and liver health/function via CMP blood tests
Rutgers, The State University of New Jersey
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