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This work evaluated the addition of the polyphenol-rich bioactive extract "e-Vitis", derived from grape marc (the main by-product of the wine industry), into swine feed. This was performed with the aim of testing the in vivo bioavailability of functional compounds, mainly phenolics, through the digestive system and excreta, together with the detection of bioconversion products associated with gut microbiota improvements. Additionally, the palatability of e-Vitis feed was evaluated, as well as the absence of metabolites that could compromise its innocuity. Through a pilot trial, a global methodology for the extraction and direct analysis of polyphenols from samples of gastric contents, duodenum, jejunum, ileum, caecum, colon, faeces and urine of these animals was proposed for the first time. The extraction process of bioactive compounds from samples was carried out using the matrix solid-phase dispersion (MSPD) technique. High resolution QToF (quadrupole time-of-flight) mass spectrometry and metabolomics tools were employed to identify 112 biomarkers that clearly differentiated (p < 0.05) the two groups of pigs (with and without enriched feed). The results showed a bioamplifying effect of e-Vitis feed on bile acids in gastric contents, associated with reduced oxidative stress and enhanced liver protection. This was attributed to the capacity of grape marc polyphenols to encapsulate bile acids, facilitating their transport through the digestive system. Polyphenolic bioconversion pathways were also elucidated, detecting structures such as apigenin, davidigenin and isoliquiritigenin, metabolised from quercetins contained in e-Vitis feed. Likewise, several markers of gut microbiota metabolism, including hippuric acid, phenylacetic acid and phenylalanine, were identified in pigs fed e-Vitis, which were related to the intake of phenolic compounds. Therefore, this study provides a comprehensive methodology applied to various biological matrices (digestive system and excreta) to understand the metabolism of polyphenols and their value as bioindicators in the determination of effective doses of by-product addition in animal diets.
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Chemosphere
September 2025
Instituto de Investigación y Desarrollo en Ingeniería de Procesos, Biotecnología y Energías Alternativas, PROBIEN, (Consejo Nacional de Investigaciones Científicas y Técnicas-CONICET and Universidad Nacional del Comahue) Buenos Aires 1400, Neuquén, 8300, Argentina. Electronic address: german.
The production of furfural and pectin extraction from brewer's spent grain (BSG) and grape marc (GM) represents a sustainable strategy for valorizing agro-industrial residues either through the recovery or the transformation into high-value compounds. Furfural, a versatile platform molecule with broad industrial applications, and pectin, widely used in the pharmaceutical and food industries, were extracted using an environmentally benign method combining phosphoric acid, thermal treatment, and ultrasound. A Box-Behnken experimental design was employed to evaluate the influence of pH, extraction time, and temperature on product yields.
View Article and Find Full Text PDFPlants (Basel)
June 2025
Pharmacology, Toxicology and Clinical Pharmacology, Department of Morphofunctional Sciences, "Iuliu Haţieganu" University of Medicine and Pharmacy, Victor Babeș, No 8, 400012 Cluj-Napoca, Romania.
Italian Riesling is a grapevine () cultivar widely grown in Transylvania vineyards. During the winemaking process, grape pomace (GP) is generated. This study aimed to exploit the potential of the Italian Riesling GP through its composition in polyphenols and fatty acids, as well as its antioxidant activity.
View Article and Find Full Text PDFPoult Sci
September 2025
Institute of Animal Nutrition, Department of Veterinary Medicine, Freie Universität Berlin, Königin-Luise-Str. 49, Berlin 14195, Germany.
The current study evaluated the effect of a white grape marc extract (GME) on growth performance, gut health, and intestinal function in broiler chickens at different dosages to determine a dose-related efficacy of the extract without inducing any adverse effects. Four hundred male broiler chickens received a basal diet without (CON) or with the GME at different levels, based on its polyphenolic concentration: 200 (LPP), 750 (MPP), and 1,500 (HPP) mg/kg, respectively. Growth performance parameters were recorded during the whole trial.
View Article and Find Full Text PDFPLoS One
June 2025
Laboratory of Research and Development of Analytical Solutions (LIDSA), Department of Analytical Chemistry, Nutrition and Food Science, Universidade de Santiago de Compostela, E-15782, Santiago de Compostela, Spain.
This work evaluated the addition of the polyphenol-rich bioactive extract "e-Vitis", derived from grape marc (the main by-product of the wine industry), into swine feed. This was performed with the aim of testing the in vivo bioavailability of functional compounds, mainly phenolics, through the digestive system and excreta, together with the detection of bioconversion products associated with gut microbiota improvements. Additionally, the palatability of e-Vitis feed was evaluated, as well as the absence of metabolites that could compromise its innocuity.
View Article and Find Full Text PDFWaste Manag
July 2025
Department of Agronomy, Food, Natural Resources, Animals and Environment, University of Padova, 35020 Legnaro, PD, Italy; Interdepartmental Centre for Research in Viticulture and Enology, University of Padova, 31015 Conegliano, TV, Italy.
There is increasing interest in repurposing by-products and residues from agricultural and agri-food industries, supporting environmental, social, and economic sustainability. Wineries and distilleries, an important segment of EU agriculture, generate substantial levels of waste annually with grape marc, a significant by-product of these industries, representing both an environmental challenge and an untapped resource. To achieve the sector's 2050 zero-waste vision, innovative waste management strategies are crucial.
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