Laurence D Parnell1, Jose M Ordovas2,3,4, Chao-Qiang Lai1. 1. Agricultural Research Service, USDA. 2. Jean Mayer-USDA Human Nutrition Research Center on Aging at Tufts University, Boston, Massachusetts, USA. 3. IMDEA Food Institute, CEI UAM + CSIC. 4. Centro Nacional de Investigaciones Cardiovasculares (CNIC), Madrid, Spain.
Abstract
PURPOSE OF REVIEW: Postprandial lipemia (PPL), the prolonged increase in plasma triglyceride-rich lipoproteins following food consumption, is an independent risk factor for cardiovascular disease. Genetic variation, environment and the interplay between these direct an individual's postprandial lipid response. From such interplay, inducible and reversible epigenetic changes arise. Increasing evidence suggests epigenetic variation contributes to postprandial response in lipids and risk. RECENT FINDINGS: Diet and exercise are central agents affecting postprandial lipemia - triglyceride, but heterogeneity of the findings warrant more and larger studies. Several epigenetic loci identified from a human intervention study account for a substantial proportion of PPL phenotype variation, but the burden to conduct an intervention study of postprandial responses likely limits translation to personalized nutrition. SUMMARY: The impact of both DNA methylation patterns and environmental factors such as diet, exercise, sleep and medication on PPL is multifaceted. Discovery of interactions that modify the association between CpG (oligodeoxydinucleotide) methylation and postprandial phenotypes is unfolding.
PURPOSE OF REVIEW: Postprandial lipemia (PPL), the prolonged increase in plasma triglyceride-rich lipoproteins following food consumption, is an independent risk factor for cardiovascular disease. Genetic variation, environment and the interplay between these direct an individual's postprandial lipid response. From such interplay, inducible and reversible epigenetic changes arise. Increasing evidence suggests epigenetic variation contributes to postprandial response in lipids and risk. RECENT FINDINGS: Diet and exercise are central agents affecting postprandial lipemia - triglyceride, but heterogeneity of the findings warrant more and larger studies. Several epigenetic loci identified from a human intervention study account for a substantial proportion of PPL phenotype variation, but the burden to conduct an intervention study of postprandial responses likely limits translation to personalized nutrition. SUMMARY: The impact of both DNA methylation patterns and environmental factors such as diet, exercise, sleep and medication on PPL is multifaceted. Discovery of interactions that modify the association between CpG (oligodeoxydinucleotide) methylation and postprandial phenotypes is unfolding.
Authors: Diana C Mantilla-Escalante; María-Carmen López de Las Hazas; Judit Gil-Zamorano; Lorena Del Pozo-Acebo; M Carmen Crespo; Roberto Martín-Hernández; Andrea Del Saz; Joao Tomé-Carneiro; Fernando Cardona; Isabel Cornejo-Pareja; Almudena García-Ruiz; Olivier Briand; Miguel A Lasunción; Francesco Visioli; Alberto Dávalos Journal: Nutrients Date: 2019-06-13 Impact factor: 5.717
Authors: Juan F Alcala-Diaz; Antonio P Arenas-de Larriva; Jose D Torres-Peña; Fernando Rodriguez-Cantalejo; Oriol A Rangel-Zuñiga; Elena M Yubero-Serrano; Francisco M Gutierrez-Mariscal; Magdalena P Cardelo; Raul M Luque; Jose M Ordovas; Pablo Perez-Martinez; Javier Delgado-Lista; Jose Lopez-Miranda Journal: Front Nutr Date: 2022-06-17
Authors: Chao-Qiang Lai; Laurence D Parnell; Caren E Smith; Tao Guo; Sergi Sayols-Baixeras; Stella Aslibekyan; Hemant K Tiwari; Marguerite R Irvin; Carl Bender; David Fei; Bertha Hidalgo; Paul N Hopkins; Devin M Absher; Michael A Province; Roberto Elosua; Donna K Arnett; Jose M Ordovas Journal: Am J Clin Nutr Date: 2020-11-11 Impact factor: 7.045