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References

  1. Storhaug CLFosse SKFadnes LTCountry, regional, and global estimates for lactose malabsorption in adults: a systematic review and meta-analysisLancet Gastroenterol Hepatol2017;2(10):738-746 PMID: 28690131 doi:10.1016/S2468-1253(17)30154-1
  2. Sahi TGenetics and epidemiology of adult-type hypolactasiaScand J Gastroenterol. 1994;202(sup202):7-20
  3. Kostara CEExpanding the molecular disturbances of lipoproteins in cardiometabolic diseases: lessons from lipidomicsDiagnostics (Basel).2023;13(4):721 PMID: 36832218 doi:10.3390/diagnostics13040721
  4. van der Greef JHankemeier TMcBurney RNMetabolomics-based systems biology and personalized medicine: moving towards n = 1 clinical trials? Pharmacogenomics2006;7(7):1087-1094 PMID: 17054418 doi:10.2217/14622416.7.7.1087
  5. Kang JWZivkovic AMAre eggs good again? A precision nutrition perspective on the effects of eggs on cardiovascular risk, taking into account plasma lipid profiles and TMAOJ Nutr Biochem2022;100:108906 PMID: 34801688 doi:10.1016/j.jnutbio.2021.108906
  6. Ferguson JFAllayee HGerszten REet al; American Heart Association Council on Functional Genomics and Translational Biology, Council on Epidemiology and Prevention, and Stroke CouncilNutrigenomics, the microbiome, and gene-environment interactions: new directions in cardiovascular disease research, prevention, and treatment: a scientific statement from the American Heart AssociationCirc Cardiovasc Genet2016;9(3):291-313 PMID: 27095829 doi:10.1161/HCG.0000000000000030
  7. Costa VCasamassimi ACiccodicola ANutritional genomics era: opportunities toward a genome-tailored nutritional regimenJ Nutr Biochem2010;21(6): 457-467 PMID: 20233651 doi:10.1016/j.jnutbio.2009.10.012
  8. Simopoulos APNutrigenetics/NutrigenomicsAnnu Rev Public Health2010;31(1):53-68 PMID: 20070200 doi:10.1146/annurev.publhealth.031809.130844
  9. Lucock MDSynergy of genes and nutrients: the case of homocysteineCurr Opin Clin Nutr Metab Care2006;9(6):748-756 PMID: 17053430 doi:10.1097/01.mco.0000247468.18790.1e
  10. Pratley REBaier LPan DAet alEffects of an Ala54Thr polymorphism in the intestinal fatty acid-binding protein on responses to dietary fat in humansJ Lipid Res2000;41(12):2002-2008 PMID: 11108733 doi:10.1016/S0022-2275(20)32361-0
  11. Ågren JJVidgren HMValve RSLaakso MUusitupa MIPostprandial responses of individual fatty acids in subjects homozygous for the threonine- or alanine-encoding allele in codon 54 of the intestinal fatty acid binding protein 2 geneAm J Clin Nutr2001;73(1):31-35 PMID: 11124746 doi:10.1093/ajcn/73.1.31
  12. Oakes JLIderaabdullah FYMaternal nutrition and epigenetic perturbation: modeling trends to translationCurr Pediatr Rep2013;1(4):257-265 doi:10.1007/s40124-013-0025-5
  13. Arab LIndividualized nutritional recommendations: do we have the measurements needed to assess risk and make dietary recommendations? Proc Nutr Soc2004;63(1):167-172 PMID: 15070447 doi:10.1079/PNS2003325
  14. Ideraabdullah FYZeisel SHDietary modulation of the epigenomePhysiol Rev2018;98(2):667-695 PMID: 29442595 doi:10.1152/physrev.00010.2017
  15. Hales CNBarker DJThe thrifty phenotype hypothesisBr Med Bull2001;60(1): 5-20 PMID: 11809615 doi:10.1093/bmb/60.1.5
  16. Roseboom Tde Rooij SPainter RThe Dutch famine and its long-term consequences for adult healthEarly Hum Dev2006;82(8):485-491 PMID: 16876341 doi:10.1016/j.earlhumdev.2006.07.001
  17. Painter RCde Rooij SRBossuyt PMet alEarly onset of coronary artery disease after prenatal exposure to the Dutch famineAm J Clin Nutr2006;84(2):322-327 PMID: 16895878 doi:10.1093/ajcn/84.2.322
  18. Veenendaal MVCostello PMLillycrop KAet alPrenatal famine exposure, health in later life and promoter methylation of four candidate genesJ Dev Orig Health Dis2012;3(6):450-457 PMID: 25084298 doi:10.1017/S2040174412000396
  19. Tobi EWGoeman JJMonajemi Ret alDNA methylation signatures link prenatal famine exposure to growth and metabolism. [published correction appears in Nat Commun. 2015;6:7740]Nat Commun.2014;5(1):5592 PMID: 25424739 doi:10.1038/ncomms6592
  20. Dominguez-Salas PMoore SEBaker MSet alMaternal nutrition at conception modulates DNA methylation of human metastable epiallelesNat Commun.2014;5(1):3746 PMID: 24781383 doi:10.1038/ncomms4746
  21. Claus SPSwann JRNutrimetabonomics:applications for nutritional sciences, with specific reference to gut microbial interactionsAnnu Rev Food Sci Technol2013;4(1):381-399 PMID: 23297777 doi:10.1146/annurev-food-030212-182612
  22. Ha EEVan Camp AGBauer RCGenetics-driven discovery of novel regulators of lipid metabolismCurr Opin Lipidol2019;30(3):157-164 PMID: 30985365 doi:10.1097/MOL.0000000000000605
  23. Minihane AMNutrient gene interactions in lipid metabolismCurr Opin Clin Nutr Metab Care2009;12(4):357-363 PMID: 19455028 doi:10.1097/MCO.0b013e32832c94a5
  24. Lynch SVPedersen OThe human intestinal microbiome in health and diseaseN Engl J Med2016;375(24):2369-2379 PMID: 27974040 doi:10.1056/NEJMra1600266
  25. Wang RTang RLi BMa XSchnabl BTilg HGut microbiome, liver immunology, and liver diseasesCell Mol Immunol2021;18(1):4-17 PMID: 33318628 doi:10.1038/s41423-020-00592-6
  26. Mills SStanton CLane JASmith GJRoss RPPrecision nutrition and the microbiome, part I: current state of the scienceNutrients.2019;11(4):923 PMID: 31022973 doi:10.3390/nu11040923
  27. König IRFuchs OHansen Gvon Mutius EKopp MVWhat is precision medicine? Eur Respir J.2017;50(4):1700391 PMID: 29051268 doi:10.1183/13993003.00391-2017
  28. Panagiotou GNielsen JNutritional systems biology: definitions and approachesAnnu Rev Nutr2009;29(1):329-339 PMID: 19575602 doi:10.1146/annurev-nutr-080508-141138