Health and Healthcare Systems

Study shows how exercise may change more than just your waistline

Exercise can decrease the risk of metabolic disease.

Exercise can decrease the risk of metabolic disease. Image: Anupam Mahapatra/Unsplash

Press Office
Share:
Our Impact
What's the World Economic Forum doing to accelerate action on Health and Healthcare Systems?
The Big Picture
Explore and monitor how SDG 03: Good Health and Well-Being is affecting economies, industries and global issues
A hand holding a looking glass by a lake
Crowdsource Innovation
Get involved with our crowdsourced digital platform to deliver impact at scale
Stay up to date:

SDG 03: Good Health and Well-Being

This article is part of: Centre for Health and Healthcare
  • Physical exercise is known to help reduce the likelihood of becoming obese, but it can also change us at a molecular level, according to new research.
  • A study of twins has found that those who were more physically active had lower signs of metabolic disease.
  • This suggests metabolic diseases are strongly influenced by how a person interacts with their environment as opposed to just their inherited genetics.

Consistent exercise can change not just waistlines but the very molecules in the human body that influence how genes behave, a new study of twins indicates.

The Washington State University study, published in the journal Scientific Reports, found that the more physically active siblings in identical twin pairs had lower signs of metabolic disease, measured by waist size and body mass index.

This also correlated with differences in their epigenomes, the molecular processes that are around DNA and independent of DNA sequence, but influence gene expression.

The more active twins had epigenetic marks linked to lowered metabolic syndrome, a condition that can lead to heart disease, stroke and type 2 diabetes.

Have you read?

Since the identical twins have the same genetics, the study suggests that markers of metabolic disease are strongly influenced by how a person interacts with their environment as opposed to just their inherited genetics.

“The findings provide a molecular mechanism for the link between physical activity and metabolic disease,” said Michael Skinner, WSU biologist and the study’s corresponding author.

“Physical exercise is known to reduce the susceptibility to obesity, but now it looks like exercise through epigenetics is affecting a lot of cell types, many of them involved in metabolic disease.”

The researchers collected cheek swabs of 70 pairs of identical twins who also participated in an exercise study through the Washington State Twin Registry. A team led by WSU Professor and Registry Director Glenn Duncan collected data on the twins at several different points in time from 2012 to 2019.

They used fitness trackers to measure physical activity and measured the participants’ waistlines and body mass indexes. The twins also answered survey questions about their lifestyle and neighborhoods.

Many of the twin pairs were found to be discordant, meaning they differed from each other, on measures of physical activity, neighborhood walkability and body mass index.

An analysis by Skinner’s lab of the cells in the discordant twins’ cheek swabs revealed epigenetic differences too.

Exercise can change molecules in the human body.
Exercise can change molecules in the human body. Image: Public domain

The twin in the discordant pair with a high level of physical activity, defined as more than 150 minutes a week of exercise, had epigenetic alterations in areas called DNA methylation regions that correlated with reduced body mass index and waist circumference.

Those regions are also associated with over fifty genes that have already been identified as specific to vigorous physical activity and metabolic risk factors.

Scientists have previously noted that the majority of identical twins develop different diseases as they get older even though they have the same genes. Epigenetics may help explain the reason why, said Skinner.

Discover

What is the World Economic Forum doing to encourage healthy living in cities?

“If genetics and DNA sequence were the only driver for biology, then essentially twins should have the same diseases. But they don’t,” said Skinner. “So that means there has to be an environmental impact on the twins that is driving the development of disease.”

In addition to Skinner and Duncan, co-authors include Jennifer Thorson, Eric Nilsson and Daniel Beck from WSU School of Biological Sciences as well as Ally Avery from the WSU Elson S. Floyd College of Medicine in Spokane.

Loading...
Don't miss any update on this topic

Create a free account and access your personalized content collection with our latest publications and analyses.

Sign up for free

License and Republishing

World Economic Forum articles may be republished in accordance with the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Public License, and in accordance with our Terms of Use.

The views expressed in this article are those of the author alone and not the World Economic Forum.

Share:
World Economic Forum logo
Global Agenda

The Agenda Weekly

A weekly update of the most important issues driving the global agenda

Subscribe today

You can unsubscribe at any time using the link in our emails. For more details, review our privacy policy.

Market failures cause antibiotic resistance. Here's how to address them

Katherine Klemperer and Anthony McDonnell

April 25, 2024

2:12

About Us

Events

Media

Partners & Members

  • Join Us

Language Editions

Privacy Policy & Terms of Service

© 2024 World Economic Forum