Can we use the epigenetic bioactivity of caloric restriction and phytochemicals to promote healthy ageing?

Επιστημονική δημοσίευση - Άρθρο Περιοδικού uoadl:3026717 30 Αναγνώσεις

Μονάδα:
Ερευνητικό υλικό ΕΚΠΑ
Τίτλος:
Can we use the epigenetic bioactivity of caloric restriction and phytochemicals to promote healthy ageing?
Γλώσσες Τεκμηρίου:
Αγγλικά
Περίληψη:
In 2011, the Centers for Disease Control and Prevention reported that half of Americans are using food supplements, intended to provide them with nutrients that they believe they consume in insufficient quantities. Dietary supplements were repeatedly said to be unnecessary if one eats a balanced diet but within the booming "silver economy", sales of vitamins, minerals and supplements totalled nearly $23 billion in the US last year (Euro monitor International). Seventy eight "antioxidant" supplements trials including 296-707 participants were reviewed by the Cochrane Database System Review. It was concluded that beta-carotene and vitamin E supplements, instead of promoting longevity, were increasing mortality and so may high doses of vitamin A. Several nutrition interventions with or without edible phytochemicals, fasting regimens, and food supplements have now been tried to prevent the development of many different types of tumors. Most were known as antioxidants and are now repurposed because they were shown to change the epigenome. Epigenetic marks are enzymatic tags deposited on the genome which do not change the DNA sequence but change gene expression. They are reversible and epigenetic dietary interventions are thus suggested for the prevention of ageing, ageing related diseases and for breaking the vicious circle of the trans-generational epigenetic inheritance of the metabolic disorders. It is a pressing issue because more and more children are exposed to parents' obesity and are at risk of developing type 2 diabetes. Why is it relevant to propose epigenetic "Nutricures" to prevent diseases linked with ageing? To answer this question we produce this review, whose scope is to underline the importance of the nutritional contribution for a correct functioning of epigenetics. Almost all chromatin-modifying enzymes utilize co-factors, which are crucial metabolites for core metabolism pathways. Because the cellular concentrations of these metabolites fluctuate as a function of the metabolic status of the cell, the activity of most epigenetic enzymes depends on the cell metabolism and thus nutrition. Through one selected representative example, sirtuins, and their metabolic co-factor, nicotinamide, we illustrate the nutrition and epigenetic connections. Then we describe the epigenetic activities of some polyphenols. Finally we underline that with globalization there is a continuing trend changing the variety of food items that we consume. Each may have bioactive effects that may combine with additional epigenetic effects of pollutants such as pesticides. We plead likewise that because they are bioactive, "Nutricures" and food supplements should undergo better evaluation before marketing. This journal is © The Royal Society of Chemistry.
Έτος δημοσίευσης:
2014
Συγγραφείς:
Christodoulou, M.S.
Thomas, A.
Poulain, S.
Vidakovic, M.
Lahtela-Kakkonen, M.
Matulis, D.
Bertrand, P.
Bartova, E.
Blanquart, C.
Mikros, E.
Fokialakis, N.
Passarella, D.
Benhida, R.
Martinet, N.
Περιοδικό:
MedChemComm
Εκδότης:
Royal Society of Chemistry
Τόμος:
5
Αριθμός / τεύχος:
12
Σελίδες:
1804-1820
Λέξεις-κλειδιά:
anthocyanin; butein; catechol derivative; curcumin; delphinidin; DNA methyltransferase 1; DNA methyltransferase 3A; DNA methyltransferase 3B; everolimus; flavonoid; green tea extract; hepatocyte nuclear factor 3beta; isoflavone derivative; lignan derivative; metformin; nicotinamide; polyphenol derivative; pomegranate extract; rapamycin; resveratrol; sirtuin 1; sirtuin 2; sirtuin 3; sirtuin 4; sirtuin 5; sirtuin 6; sirtuin 7; temsirolimus; tyrosol; unindexed drug, aging; antiinflammatory activity; antineoplastic activity; antioxidant activity; autophagy; biological activity; biosynthesis; caloric restriction; cell aging; cell metabolism; diet supplementation; enzyme activation; enzyme regulation; epigenetics; familial colon polyposis; food contamination; food intake; gene mutation; gene overexpression; glucose metabolism; head and neck cancer; health hazard; human; insulin metabolism; ketogenic diet; lymphatic leukemia; lymphocytoma; maternal nutrition; Mediterranean diet; metabolic syndrome X; non insulin dependent diabetes mellitus; nonhuman; nutritional assessment; obesity; oxidative stress; pellagra; phytochemistry; prostate cancer; protein binding; protein function; protein localization; protein structure; protein targeting; Review; upregulation
Επίσημο URL (Εκδότης):
DOI:
10.1039/c4md00268g
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