Nutrigenomics: SNPs correlated to vitamins' deficiencies.

C Micheletti, G Madeo, A Macchia, K Donato, S Cristoni, M R Ceccarini, T Beccari, A Iaconelli, B Aquilanti, G Matera, K L Herbst, M Bertelli

Journal: La Clinica terapeutica 2023;174(Suppl 2(6)):173-182

PMID: 37994762

Abstract

Nutrients can influence the physiological processes in the body by interacting with molecular systems. Including nutrigenetics and nutrigenomics, nutritional genomics focuses on how bio-active food components interact with the genome. The purpose of this study is to clarify how nutrigenomics and vitamin dietary deficits relate to one another. Food tolerances among human sub-populations are known to vary due to genetic variation, which may also affect dietary needs. This raises the prospect of tailoring a person's nutritional intake for optimum health and illness prevention, based on their unique genome. To better understand the interplay between genes and nutrients and to plan tailored weight loss, nutrigenetic testing may soon become a key approach.

Address: MAGI'S LAB, Rovereto (TN), Italy.; MAGI EUREGIO, Bolzano, Italy.; ISB Ion Source & Biotechnologies srl, Italy, Bresso, Milano, Italy.; Department of Pharmaceutical Sciences, University of Perugia, Perugia, Italy.; UOSD Medicina Bariatrica, Fondazione Policlinico Agostino Gemelli IRCCS, Rome, Italy.; Total Lipedema Care, Beverly Hills, California, and Tucson, Arizona, USA.; MAGI'S LAB, Rovereto (TN), Italy.; MAGI EUREGIO, Bolzano, Italy.; MAGISNAT, Peachtree Corners (GA), USA.

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