Effects of Simulated Gastrointestinal Conditions on Combined Potentially Probiotic Limosilactobacillus fermentum 296, Quercetin, and/or Resveratrol as Bioactive Components of Novel Nutraceuticals

PROBIOTICS AND ANTIMICROBIAL PROTEINS(2024)

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摘要
This study evaluated the effects of simulated gastrointestinal conditions (SGIC) on combined potentially probiotic Limosilactobacillus fermentum 296 (similar to 10 log CFU/mL), quercetin (QUE, 160 mg), and/or resveratrol (RES, 150 mg) as the bioactive components of novel nutraceuticals. Four different nutraceuticals were evaluated during exposure to SGIC and analyzed the plate counts and physiological status of L. fermentum 296, contents and bioaccessibility of QUE and RES, and antioxidant capacity. Nutraceuticals with QUE and RES had the highest plate counts (4.94 +/- 0.32 log CFU/mL) and sizes of live cell subpopulations (28.40 +/- 0.28%) of L. fermentum 296 after SGIC exposure. An index of injured cells (Gmean index, arbitrary unit defined as above 0.5) indicated that part of L. fermentum 296 cells could be entered the viable but nonculturable state when the nutraceuticals were exposed to gastric and intestinal conditions while maintaining vitality. The nutraceuticals maintained high contents (QUE similar to 29.17 +/- 0.62 and RES similar to 23.05 mg/100 g) and bioaccessibility (QUE similar to 41.0 +/- 0.09% and RES similar to 67.4 +/- 0.17%) of QUE and RES, as well as high antioxidant capacity (ABTS assay similar to 88.18 +/- 1.16% and DPPH assay 75.54 +/- 0.65%) during SGIC exposure, which could be linked to the protective effects on L. fermentum 296 cells. The developed nutraceuticals could cross along the gastrointestinal tract with high concentrations of functioning potentially probiotic cells and bioavailable phenolic compounds to exert their beneficial impacts on consumer health, being an innovative strategy for the co-ingestion of these bioactive components.
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关键词
Nutraceuticals,Probiotic,Polyphenol,Physiological state,Antioxidant effect,Functional properties
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