News by Topic

Click on a topic below to see the latest headline

Customize "My Headlines" by Topic

Choose the topics of most interest to you to follow under "My Headlines".

Subscribe

Sign up for newsletters, news feeds, social media and other news sources.

Resources for News Media

Are you a reporter working on a story? Here's where you find help from Duke.

Exposure to Air Pollution Increases the Risk of Obesity

Exposure to Air Pollution Increases the Risk of Obesity

If findings of rat study are verified in humans, urgent action needed

print |
Beijing under smog
Palaces, avenues, buildings, parks, and scenery around China's Capital Forbidden City under the pollution of present day Beijing in September 2013. Image by Yinan Chen via Wikimedia Commons

Durham, NC - Laboratory rats who breathed Beijing’s highly polluted air gained weight and experienced cardio-respiratory and metabolic dysfunctions after three to eight weeks of exposure. 

A study appearing in the March issue of the Journal of the Federation of American Societies for Experimental Biology (FASEB) placed pregnant rats and their offspring in two chambers, one exposed to outdoor Beijing air and the other containing an air filter that removed most of the air pollution particles.

After only 19 days, the lungs and livers of pregnant rats exposed to the polluted air were heavier and showed increased tissue inflammation. These rats had 50 percent higher LDL cholesterol; 46 percent higher triglycerides; and 97 percent higher total cholesterol. Their insulin resistance level, a precursor of Type 2 diabetes, was higher than their clean air-breathing counterparts. 

All of these measures support the study’s conclusion that air pollution exposure results in metabolic dysfunction, a precursor to obesity. Indeed, pollution-exposed rats were significantly heavier at the end of their pregnancy even though the rats in both groups were fed the same diet.

Similar results were shown in the rat offspring, which were kept in the same chambers as their mothers. 

However, the results showed that the negative effects of air pollution were less pronounced after three weeks than they were at eight weeks, suggesting that long-term exposure may be needed to generate the continuous inflammatory and metabolic changes that ultimately increase body weight. At eight weeks old, female and male rats exposed to the pollution were 10 percent and 18 percent heavier, respectively, than those exposed to clean air.

The results of this study, which was funded by several agencies of the Chinese government, are consistent with other studies that show air pollution induces oxidative stress and inflammation in the organs and circulatory system. The findings also echo previous studies linking air pollution with increased insulin resistance and altered fat tissue.

“Since chronic inflammation is recognized as a factor contributing to obesity and since metabolic diseases such as diabetes and obesity are closely related, our findings provide clear evidence that chronic exposure to air pollution increases the risk for developing obesity,” said Junfeng “Jim” Zhang, a professor of global and environmental health at Duke University and Duke Kunshan University and a senior author of the paper. 

“If translated and verified in humans, these findings will support the urgent need to reduce air pollution, given the growing burden of obesity in today’s highly polluted world,” Zhang said.

This study was supported by grants from the National Natural Science Foundation of China (#21190051 and #21477119), the Open Fund of the State key Joint Laboratory of Environmental Simulation and pollution Control (#13K03ESPCP), and the China Postdoctoral Science Foundation (#201003010). 

CITATION:  "Chronic Exposure to Air Pollution Particles Increases the Risk of Obesity and Metabolic Syndrome: Findings from a Natural Experiment in Beijing," Yongjie Wei, Junfeng (Jim) Zhang, Zhigang Li, Andrew Gow, Kian Fan Chung, Min Hu, Zhongsheng Sun, Limin Zeng, Tong Zhu, Guang Jia, Xiaoqian Li, Marlyn Duarte, Xiaoyan Tang. Journal of the Federation of American Societies for Experimental Biology (FASEB), March 2016.
DOI: 10.1096/fj.201500142
http://www.fasebj.org/content/early/2016/02/18/fj.201500142.abstract

More Information

Contact: Susan Gallagher
Phone: (919) 681-7817

© 2016 Office of News & Communications
615 Chapel Drive, Box 90563, Durham, NC 27708-0563
(919) 684-2823; After-hours phone (for reporters on deadline): (919) 812-6603

More Information

Contact: Susan Gallagher
Phone: (919) 681-7817