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10.3280/pnei2025oa19418

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Unstructured Citation

Ahn S.-I., Kim M.S., Park D.G., Han B.K., & Kim Y.J. (2023). Effects of probiotics administration on lactose intolerance in adulthood: A meta-analysis. Journal of Dairy Science, 106(7), 4489-4501.

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Algera J.P., Demir D., Törnblom H., Nybacka S., Simrén M., & Störsrud S. (2022). Low FODMAP diet reduces gastrointestinal symptoms in irritable bowel syndrome and clinical response could be predicted by symptom severity: A randomized crossover trial. Clinical Nutrition (Edinburgh, Scotland), 41(12), 2792-2800.

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Barbaro M.R., Cremon C., Wrona D., Fuschi D., Marasco G., Stanghellini V., & Barbara G. (2020). Non-Celiac Gluten Sensitivity in the Context of Functional Gastrointestinal Disorders. Nutrients, 12(12), 3735.

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Unstructured Citation

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Bielik V., & Kolisek M. (2021). Bioaccessibility and Bioavailability of Minerals in Relation to a Healthy Gut Microbiome. International Journal of Molecular Sciences, 22(13), 6803.

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Caio G., Lungaro L., Segata N., Guarino M., Zoli G., Volta U., & De Giorgio R. (2020). Effect of Gluten-Free Diet on Gut Microbiota Composition in Patients with Celiac Disease and Non-Celiac Gluten/Wheat Sensitivity. Nutrients, 12(6), 1832.

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Unstructured Citation

Caio G., Volta U., Sapone A., Leffler D.A., De Giorgio R., Catassi C., & Fasano A. (2019). Celiac disease: a comprehensive current review. BMC Medicine, 17(1), 142.

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Caminero A., McCarville J.L., Zevallos V.F., Pigrau M., Yu X.B., Jury J., Galipeau H.J., Clarizio A.V., Casqueiro J., Murray J.A., Collins S.M., Alaedini A., Bercik P., Schuppan D., & Verdu E.F. (2019). Lactobacilli Degrade Wheat Amylase Trypsin Inhibitors to Reduce Intestinal Dysfunction Induced by Immunogenic Wheat Proteins. Gastroenterology, 156(8), 2266-2280.

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Carbone F., Van den Houte K., Besard L., Tack C., Arts J., Caenepeel P., Piessevaux H., Vandenberghe A., Matthys C., Biesiekierski J., Capiau L., Ceulemans S., Gernay O., Jones L., Maes S., Peetermans C., Raat W., Stubbe J., Van Boxstael R., Vandeput O., Van Steenbergen S., Van Oudenhove L., Vanuytsel T., Jones M., Tack J., DOMINO Study Collaborators, & Domino Study Collaborators. (2022). Diet or medication in primary care patients with IBS: the DOMINO study - a randomised trial supported by the Belgian Health Care Knowledge Centre (KCE Trials Programme) and the Rome Foundation Research Institute. Gut, 71(11), 2226-2232.

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Chamniansawat S., Suksridechacin N., & Thongon N. (2023). Current opinion on the regulation of small intestinal magnesium absorption. World Journal of Gastroenterology, 29(2), 332-342.

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Deng Y., Misselwitz B., Dai N., & Fox M. (2015). Lactose Intolerance in Adults: Biological Mechanism and Dietary Management. Nutrients, 7(9), 8020-8035.

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Dieterich W., Schuppan D., Schink M., Schwappacher R., Wirtz S., Agaimy A., Neurath M.F., & Zopf Y. (2019). Influence of low FODMAP and gluten-free diets on disease activity and intestinal microbiota in patients with non-celiac gluten sensitivity. Clinical Nutrition (Edinburgh, Scotland), 38(2), 697-707.

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Unstructured Citation

Geisslitz S., Shewry P., Brouns F., America A.H.P., Caio G.P.I., Daly M., D’Amico S., De Giorgio R., Gilissen L., Grausgruber H., Huang X., Jonkers D., Keszthelyi D., Larré C., Masci S., Mills C., Møller M.S., Sorrells M.E., Svensson B., Zevallos V.F., & Weegels P.L. (2021). Wheat ATIs: Characteristics and Role in Human Disease. Frontiers in Nutrition, 8, 667370.

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González A., Gálvez N., Martín J., Reyes F., Pérez-Victoria I., & Dominguez-Vera J.M. (2017). Identification of the key excreted molecule by Lactobacillus fermentum related to host iron absorption. Food Chemistry, 228, 374-380.

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Unstructured Citation

Halmos E.P., Power V.A., Shepherd S.J., Gibson P.R., & Muir J.G. (2014). A diet low in FODMAPs reduces symptoms of irritable bowel syndrome. Gastroenterology, 146(1), 67-75.e5.

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Heydari L., Kermanshahi R.K., Gharavi S., & Moosavi-Nejad Z. (2023). Characterization of the recombinant PepX peptidase from Lactobacillus fermentum and its effect on gliadin protein hydrolysis in vitro. Biologia, 78(2), 565-577.

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Karadima V., Kraniotou C., Bellos G., & Tsangaris G.T. (2016). Drug-micronutrient interactions: food for thought and thought for action. The EPMA Journal, 7(1), 10.

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Kasaikina M.V., Kravtsova M.A., Lee B.C., Seravalli J., Peterson D.A., Walter J., Legge R., Benson A.K., Hatfield D.L., & Gladyshev V.N. (2011). Dietary selenium affects host selenoproteome expression by influencing the gut microbiota. FASEB Journal: Official Publication of the Federation of American Societies for Experimental Biology, 25(7), 2492-2499.

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Unstructured Citation

Li C., Pi G., & Li F. (2021). The Role of Intestinal Flora in the Regulation of Bone Homeostasis. Frontiers in Cellular and Infection Microbiology, 11.

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Unstructured Citation

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Markowiak P., & Slizewska K. (2017). Effects of Probiotics, Prebiotics, and Synbiotics on Human Health. Nutrients, 9(9), 1021.

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Unstructured Citation

Mohan J., Ali S.A., Suvartan R., Kapila S., Sharma R., Tomar S.K., Behare P., & Yadav H. (2018). Bioavailability of biotransformed zinc enriched dahi in wistar rats. International Journal of Probiotics & Prebiotics, 13(2-3), 45-54.


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Morato-Martínez M., López-Plaza B., Santurino C., Palma-Milla S., & Gómez-Candela C. (2020). A Dairy Product to Reconstitute Enriched with Bioactive Nutrients Stops Bone Loss in High-Risk Menopausal Women without Pharmacological Treatment. Nutrients, 12(8), 2203.

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Unstructured Citation

Nath A., Molnár M.A., Csighy A., Koszegi K., Galambos I., Huszár K.P., Koris A., & Vatai G. (2018). Biological Activities of Lactose-Based Prebiotics and Symbiosis with Probiotics on Controlling Osteoporosis, Blood-Lipid and Glucose Levels. Medicina (Kaunas, Lithuania), 54(6), 98.

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Unstructured Citation

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Unstructured Citation

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Unstructured Citation

Peredo-Lovillo A., Romero-Luna H.E., & Jiménez-Fernández M. (2020). Health promoting microbial metabolites produced by gut microbiota after prebiotics metabolism. Food Research International (Ottawa, Ont.), 136, 109473.

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Unstructured Citation

Priyodip P., Prakash P.Y., & Balaji S. (2017). Phytases of Probiotic Bacteria: Characteristics and Beneficial Aspects. Indian Journal of Microbiology, 57(2), 148-154.

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Unstructured Citation

Ramírez-Acosta S., Selma-Royo M., Collado M.C., Navarro-Roldán F., Abril N., & García-Barrera T. (2022). Selenium supplementation influences mice testicular selenoproteins driven by gut microbiota. Scientific Reports, 12, 4218.

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Unstructured Citation

Rinninella E., Cintoni M., Raoul P., Lopetuso L.R., Scaldaferri F., Pulcini G., Miggiano G.A.D., Gasbarrini A., & Mele M.C. (2019). Food Components and Dietary Habits: Keys for a Healthy Gut Microbiota Composition. Nutrients, 11(10), 2393.

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Unstructured Citation

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Scholz-Ahrens K.E., Ade P., Marten B., Weber P., Timm W., Açil Y., Glüer C.-C., & Schrezenmeir J. (2007). Prebiotics, probiotics, and synbiotics affect mineral absorption, bone mineral content, and bone structure. The Journal of Nutrition, 137(3 Suppl 2), 838S-46S.

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Skalny A.V., Aschner M., Santamaria A., Filippini T., Gritsenko V.A., Tizabi Y., Zhang F., Guo X., Rocha J.B.T., & Tinkov A.A. (2025). The Role of Gut Microbiota in the Neuroprotective Effects of Selenium in Alzheimer’s Disease. Molecular Neurobiology, 62(2), 1675-1692.

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Skodje G.I., Sarna V.K., Minelle I.H., Rolfsen K.L., Muir J.G., Gibson P.R., Veierød M.B., Henriksen C., & Lundin K.E.A. (2018). Fructan, Rather Than Gluten, Induces Symptoms in Patients With Self-Reported Non-Celiac Gluten Sensitivity. Gastroenterology, 154(3), 529-539.e2.

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Unstructured Citation

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Unstructured Citation

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Unstructured Citation

Sultan N., Varney J.E., Halmos E.P., Biesiekierski J.R., Yao C.K., Muir J.G., Gibson P.R., & Tuck C.J. (2022). How to Implement the 3-Phase FODMAP Diet Into Gastroenterological Practice. Journal of Neurogastroenterology and Motility, 28(3), 343-356.

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Tribst M.F., Magalhães L.R., Silva R.A., Caetano H.R. dos S., Oliveira W.G.A. de, Rufino M.N., Keller R., Sanches O. de C., Louzada M.J.Q., & Bremer-Neto H. (2019). Mineral composition, histomorphometry, and bone biomechanical properties are improved with probiotic, prebiotic, and symbiotic supplementation in rats chronically exposed to passive smoking: a randomized pre-clinical study. Ciência Rural, 49, e20180695.

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Unstructured Citation

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Unstructured Citation

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Unstructured Citation

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Yilmaz B., & Li H. (2018). Gut Microbiota and Iron: The Crucial Actors in Health and Disease. Pharmaceuticals (Basel, Switzerland), 11(4), 98.

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Zakrzewska Z., Zawartka A., Schab M., Martyniak A., Skoczen S., Tomasik P.J., & Wedrychowicz A. (2022). Prebiotics, Probiotics, and Postbiotics in the Prevention and Treatment of Anemia. Microorganisms, 10(7), 1330.

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Zhou D., Zhao Y., Li J., Ravichandran V., Wang L., Huang Q., Chen C., Ni H., & Yin J. (2021). Effects of Phytic Acid-Degrading Bacteria on Mineral Element Content in Mice. Frontiers in Microbiology, 12.

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Zhou J., Cheng J., Liu L., Luo J., & Peng X. (2023). Lactobacillus acidophilus (LA) Fermenting Astragalus Polysaccharides (APS) Improves Calcium Absorption and Osteoporosis by Altering Gut Microbiota. Foods, 12(2), 275.

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Unstructured Citation

Zingone F., Bertin L., Maniero D., Palo M., Lorenzon G., Barberio B., Ciacci C., & Savarino E.V. (2023). Myths and Facts about Food Intolerance: A Narrative Review. Nutrients, 15(23), 4969.

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