NUTRIGENÉTICA Y NUTRIGENÓMICA

Bidlack WR, Rodriguez RL, editores. Nutritional Genomics: The Impact of Dietary Regulation of Gene Function on Human Disease [Internet]. Milton: CRC Press; 2012. 419 p. Disponible en:
https://ebookcentral.proquest.com/lib/biblioucv/detail.action?docID=826938

Mishra V, editor. Principles of epigenetics [Internet]. Canadá: Delve Publishing; 2019. 357 p. Disponible en:
https://search.ebscohost.com/login.aspx?direct=true&db=e000xww&AN=2014028&lang=es&site=ehost-live&ebv=EB&ppid=pp_iv

Moise AMR. The Gut Microbiome: Exploring the Connection Between Microbes, Diet, and Health [Internet]. New York: Greenwood; 2017. 199 p. Disponible en:
https://search.ebscohost.com/login.aspx?direct=true&db=e000xww&AN=1613899&lang=es&site=ehost-live&ebv=EB&ppid=pp_199

Powar CB. Genetics [Internet]. 2a ed. vol 1. Mumbai: Global media; 2007. 1053 p. Disponible en:
https://ebookcentral.proquest.com/lib/biblioucv/detail.action?docID=3011095

Anto Danaphal ACT, Vimaleswaran, KS. Vitamin D supplementation and immune-related markers: an update from nutrigenetic and nutrigenomic studies. Br J Nutr [Internet]. 2022;128(8):1459–69. Disponible en:
https://www.proquest.com/scholarly-journals/vitamin-d-supplementation-immune-related-markers/docview/2723721640/se-2?accountid=37408

Arouca AB, Meirhaeghe A, Dallongeville J, Moreno LA, Lourenço GJ, Marcos A, et al. Interplay between the Mediterranean diet and C-reactive protein genetic polymorphisms towards inflammation in adolescents. Clin Nutr [Internet]. 2020;39(6):1919-26. Disponible en:
https://www.sciencedirect.com/science/article/pii/S0261561419330286

Campistol J. Errores innatos del metabolismo. avances en el diagnóstico y terapéutica. Medicina (B Aires) [Internet]. 2023;83(4):3–8. Disponible en:
https://www.webofscience.com/wos/scielo/full-record/SCIELO:S0025-76802023000800003

De Luis DA, Benito-Sendin K, Primo D, Izaola O, Aller R. Relación del polimorfismo del gen de la resistina (rs7139228) con los niveles de resistina y el riesgo de síndrome metabólico en sujetos obesos. Nutr Hosp [Internet]. 2023;40(2):325–31. Disponible en:
https://research.ebsco.com/linkprocessor/plink?id=1f341f86-06cf-3eef-8169-833b62a9497d

Franzago M, Fraticelli F, Stuppia L, Vitacolonna E. Nutrigenetics, epigenetics and gestational diabetes: consequences in mother and child. Epigenetics [Internet]. 2019;14(3):215–35. Disponible en:
https://doi.org/10.1080/15592294.2019.1582277

Franzago M, Santurbano D, Vitacolonna E, Stuppia L. Genes and Diet in the Prevention of Chronic Diseases in Future Generations. Int J Mol Sci [Internet]. 2020;21(7):2-13. Disponible en:
https://www.proquest.com/scholarly-journals/genes-diet-prevention-chronic-diseases-future/docview/2389938432/se-2?accountid=37408

Li H, Xia N, Hasselwander S, Daiber A. Resveratrol and Vascular Function. Int J Mol Sci [Internet]. 2019;20(9):2-16. Disponible en:
https://www.proquest.com/scholarly-journals/resveratrol-vascular-function/docview/2332353833/se-2?accountid=37408

Maity S, Farrell K, Navabpour S, Narayanan SN, Jarome TJ. Epigenetic Mechanisms in Memory and Cognitive Decline Associated with Aging and Alzheimer’s Disease. Int J Mol Sci [Internet]. 2021;22(22):2-22. Disponible en:
https://www.proquest.com/scholarly-journals/epigenetic-mechanisms-memory-cognitive-decline/docview/2602117592/se-2?accountid=37408

Matusheski NV, Caffrey A, Christensen L, Mezgec S, Surendran S, Hjorth MF, et al. Diets, nutrients, genes and the microbiome: recent advances in personalised nutrition. BJN [Internet]. 2021;126(10):1489–97. Disponible en:
https://www.proquest.com/scholarly-journals/diets-nutrients-genes-microbiome-recent-advances/docview/2582962545/se-2?accountid=37408

Morrill KE, Bland VL, Klimentidis YC, Hingle MD, Thomson CA, Garcia DO. Assessing Interactions between PNPLA3 and Dietary Intake on Liver Steatosis in Mexican-Origin Adults. IJERPH [Internet]. 2021;18(13):2-14. Disponible en:
https://www.proquest.com/scholarly-journals/assessing-interactions-between-i-pnpla3-dietary/docview/2549338600/se-2?accountid=37408

Nasreddine L, Akika R, Mailhac A, Tamim H, Zgheib N. The Interaction between Genetic Polymorphisms in FTO and TCF7L2 Genes and Dietary Intake with Regard to Body Mass and Composition: An Exploratory Study. JPM [Internet]. 2019;9(1):2-16. Disponible en:
https://www.proquest.com/scholarly-journals/interaction-between-genetic-polymorphisms-i-fto/docview/2548592494/se-2?accountid=37408

Rodrigues Nunes Duarte MK, Leite-Lais L, Agnez-Lima LF, Lima Maciel BL, de Araújo Morais AH. Obesity and Nutrigenetics Testing: New Insights. Nutrients [Internet]. 2024;16(5):2-17. Disponible en:
https://link.gale.com/apps/doc/A786438484/AONE?u=univcv&sid=bookmark-AONE&xid=f19e6a72

Vieira E, Mirizio GG, Barin GR, de Andrade RV, Nimer NFS, La Sala L. Clock Genes, Inflammation and the Immune System—Implications for Diabetes, Obesity and Neurodegenerative MDPI [Internet]. 2020;21(24):9743. Disponible en:
https://www.webofscience.com/wos/woscc/full-record/WOS:000602968600001

Vimaleswaran KS. A nutrigenetics approach to study the impact of genetic and lifestyle factors on cardiometabolic traits in various ethnic groups: findings from the GeNuIne Collaboration. Proc Nutr Soc [Internet]. 2020;79(2):194-204. Disponible en:
https://www.proquest.com/scholarly-journals/nutrigenetics-approach-study-impact-genetic/docview/2384820728/se-2?accountid=37408

Wallen ZD, Demirkan A, Twa G, Cohen G, Dean MN, Standaert DG, et al. Metagenomics of Parkinson’s disease implicates the gut microbiome in multiple disease mechanisms. Nat Commun [Internet]. 2022;13(1):1-20. Disponible en:
https://www.proquest.com/scholarly-journals/metagenomics-parkinson-s-disease-implicates-gut/docview/2736073117/se-2?accountid=37408

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