Javascript must be enabled to continue!
NUTRITIONAL EPIGENETICS
View through CrossRef
Introduction: in recent years great progress has been made in the understanding of epigenetic mechanisms in the regulation of gene expression as a consequence of gene-environment interactions. Nutrition, as well as other environmental factors, represent a crucial factor that can induce epigenetic modifications not only in directly exposed organisms, but also in subsequent generations through transgenerational inheritance of epigenetic traits.
Objective: to detail current information related to epigenetic regulation, the most predominant epigenetic mechanisms, the influence of nutrition on the epigenetic state, as well as related patterns, behaviors and properties.
Methodology: a total of 52 articles were analyzed in this review, including review and original articles, as well as clinical cases, of which 31 bibliographies were used because the other articles were not relevant to this study. The sources of information were PubMed, Google Scholar and Cochrane; the terms used to search for information in Spanish, Portuguese and English were: epigenetics, nutrition, genes, methylation, DNA.
Results: epigenetics studies heritable changes in gene expression that do not alter the DNA sequence, but rather its regulation. These changes, such as DNA methylation and histone modifications, affect health and the development of diseases such as cancer and metabolic disorders. Environmental factors, such as diet, influence epigenetic regulation. Nutrients such as omega-3 fatty acids and polyphenols can modify these mechanisms, promoting protective effects against chronic diseases. Thus, nutritional epigenetics becomes a key area for the development of therapies and preventive strategies.
Conclusions: epigenetics shows how environmental factors, such as diet and lifestyle, influence gene expression without altering the DNA sequence, through mechanisms such as DNA methylation, histone modifications and gene silencing. These processes explain how cells with the same DNA can have different phenotypes. Nutrients present in diets such as Mediterranean or DASH, as well as bioactive compounds such as polyphenols, carotenoids, omega-3 fatty acids and selenium, modulate epigenetic regulation and have protective effects against chronic diseases such as cancer, cardiovascular disease and obesity. These advances offer new therapeutic possibilities, highlighting the potential of nutritional epigenetics in the prevention and treatment of diseases, as well as in the improvement of health and healthy aging.
KEYWORDS: epigenetics, nutrition, genes, methylation, DNA.
Title: NUTRITIONAL EPIGENETICS
Description:
Introduction: in recent years great progress has been made in the understanding of epigenetic mechanisms in the regulation of gene expression as a consequence of gene-environment interactions.
Nutrition, as well as other environmental factors, represent a crucial factor that can induce epigenetic modifications not only in directly exposed organisms, but also in subsequent generations through transgenerational inheritance of epigenetic traits.
Objective: to detail current information related to epigenetic regulation, the most predominant epigenetic mechanisms, the influence of nutrition on the epigenetic state, as well as related patterns, behaviors and properties.
Methodology: a total of 52 articles were analyzed in this review, including review and original articles, as well as clinical cases, of which 31 bibliographies were used because the other articles were not relevant to this study.
The sources of information were PubMed, Google Scholar and Cochrane; the terms used to search for information in Spanish, Portuguese and English were: epigenetics, nutrition, genes, methylation, DNA.
Results: epigenetics studies heritable changes in gene expression that do not alter the DNA sequence, but rather its regulation.
These changes, such as DNA methylation and histone modifications, affect health and the development of diseases such as cancer and metabolic disorders.
Environmental factors, such as diet, influence epigenetic regulation.
Nutrients such as omega-3 fatty acids and polyphenols can modify these mechanisms, promoting protective effects against chronic diseases.
Thus, nutritional epigenetics becomes a key area for the development of therapies and preventive strategies.
Conclusions: epigenetics shows how environmental factors, such as diet and lifestyle, influence gene expression without altering the DNA sequence, through mechanisms such as DNA methylation, histone modifications and gene silencing.
These processes explain how cells with the same DNA can have different phenotypes.
Nutrients present in diets such as Mediterranean or DASH, as well as bioactive compounds such as polyphenols, carotenoids, omega-3 fatty acids and selenium, modulate epigenetic regulation and have protective effects against chronic diseases such as cancer, cardiovascular disease and obesity.
These advances offer new therapeutic possibilities, highlighting the potential of nutritional epigenetics in the prevention and treatment of diseases, as well as in the improvement of health and healthy aging.
KEYWORDS: epigenetics, nutrition, genes, methylation, DNA.
Related Results
Epigenetics in the public sphere: interdisciplinary perspectives
Epigenetics in the public sphere: interdisciplinary perspectives
AbstractDespite the high public interest in epigenetics, few scholars have empirically investigated the forms, reasons and consequences of the public circulation of epigenetics. Us...
Narrating novelty and reaffirming responsibilisation: epigenetics on YouTube
Narrating novelty and reaffirming responsibilisation: epigenetics on YouTube
Interest in epigenetics continues to grow, with the field often framed as relevant to health. Congruent with this, mediatisations of epigenetics exist that can be expected to help ...
Ethical implications of epigenetics in the era of personalized medicine
Ethical implications of epigenetics in the era of personalized medicine
Abstract
Given the increasing research activity on epigenetics to monitor human diseases and its connection with lifestyle and environmental expositions, the fiel...
Public knowledge and opinion of epigenetics and epigenetic concepts
Public knowledge and opinion of epigenetics and epigenetic concepts
AbstractThe field of epigenetics is currently one of the most rapidly expanding in biology and has resulted in increasing public interest in its applications to human health. Epige...
Mothers’ and fathers’ cognitive and affective responses to epigenetics concepts
Mothers’ and fathers’ cognitive and affective responses to epigenetics concepts
Abstract
Advances in our understanding of epigenetics present new opportunities to improve children’s health through the counseling of parents about epigenetics conc...
Epigenetics in Osteoarthritis Related Pain: An Update
Epigenetics in Osteoarthritis Related Pain: An Update
Osteoarthritis (OA) is the most common form of arthritis worldwide and is a major cause of pain and disability in elderly people.[1] The discrepancies between pain in OA and severi...
Multidisciplinary provision of food and nutritional care to hospitalised adult in-patients: A scoping review protocol v1
Multidisciplinary provision of food and nutritional care to hospitalised adult in-patients: A scoping review protocol v1
Objective: The review will examine the evidence and characteristics of multidisciplinary care interventions in food and nutritional care provision for adult in-patients. Introduct...
Pengaruh pendidikan gizi terhadap pengetahuan, praktik gizi seimbang dan status gizi pada anak sekolah dasar
Pengaruh pendidikan gizi terhadap pengetahuan, praktik gizi seimbang dan status gizi pada anak sekolah dasar
Background : The prevalence of nutritional problem in school aged children was high, beside Indonesia has Nutritional Balance Guidelines. Socialization of this guidelines in nutrit...

