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Short-term vegan diet associated with reductions in biological age estimates

Vegan Diet
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Eating a vegan diet for eight weeks is associated with reductions in biological age estimations based on levels of DNA methylation—a type of chemical modification of DNA (known as an epigenetic modification) that alters gene expression but not DNA itself.

Previous research has reported that increased DNA methylation levels are associated with aging. The new findings, which are based on a small, randomized, controlled trial of 21 pairs of adult identical twins, are published in BMC Medicine.

Varun Dwaraka, Christopher Gardner and colleagues investigated the molecular effects of a short-term vegan diet by instructing one half of each twin pair to eat an omnivorous diet for eight weeks—including between 170 and 225 grams of meat, one egg, and one and a half servings of dairy each day—and the other half to eat a vegan diet for the same length of time.

The sample was 77% women (32), and participants were 40 years old on average and had an average body mass index of 26 kilograms per meters squared. For the first four weeks of the study, participants ate meals that had been prepared for them, and for the second four weeks, participants ate meals that they had prepared themselves, after receiving nutrition classes from health educators.

The authors investigated the impacts of diet on levels of DNA methylation by analyzing collected from participants at baseline, week four, and week eight of the study. They used DNA methylation levels to infer the biological ages of participants and their .

By the end of the study, the authors observed decreases in estimates of biological age—known as epigenetic aging clocks—in participants who ate a vegan diet but not among those that ate an omnivorous diet. They also observed decreases in the ages of the heart, hormone, liver, and inflammatory and metabolic systems of participants who ate a vegan, but not an omnivorous diet, for eight weeks.

The authors caution that the extent to which the differences observed between participants who ate different diets can be attributed to their dietary compositions is unclear. They note that participants who ate a lost two kilograms more on average than those who ate an omnivorous diet due to differences in the calorie contents of meals provided during the initial four weeks of the study.

They suggest that these weight loss variations could have contributed to the observed differences in epigenetic age between both groups. Further research is needed to investigate the relationship between dietary composition, weight and aging, in addition to the long-term effects of vegan diets, they add.

More information: Varun Dwaraka, Unveiling the epigenetic impact of vegan vs. omnivorous diets on aging: insights from the Twins Nutrition Study (TwiNS), BMC Medicine (2024). DOI: 10.1186/s12916-024-03513-w. www.biomedcentral.com/articles … 6/s12916-024-03513-w

Journal information: BMC Medicine
Provided by BioMed Central
Citation: Short-term vegan diet associated with reductions in biological age estimates (2024, July 28) retrieved 28 July 2024 from https://medicalxpress.com/news/2024-07-short-term-vegan-diet-reductions.html
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