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BPA substitute can trigger fat cell formation: Chemical used in BPA-free products exhibits similar endocrine-disrupting effects

Date:
March 22, 2016
Source:
The Endocrine Society
Summary:
Exposure to a substitute chemical often used to replace bisphenol A in plastics can encourage the formation of fat cells, according to a new study.
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Exposure to a substitute chemical often used to replace bisphenol A in plastics can encourage the formation of fat cells, according to a new study published in the Endocrine Society's journal Endocrinology.

The replacement chemical, bisphenol S, has a slightly different chemical structure than bisphenol A (BPA), a known endocrine disruptor. As of 2014, nearly 100 epidemiological studies have been published tying BPA to health problems, according to the Introductory Guide to Endocrine-disrupting Chemicals published by the Society and IPEN, a global network that supports sound chemicals management.

Concerns about BPA's health effects have encouraged some consumers to purchase food containers labeled "BPA-free." BPA-free products often contain bisphenol S (BPS) or other substitutes, but researchers have raised concerns that these replacements also interfere with the body's hormones and may pose similar threats to public health.

"Our research indicates BPS and BPA have comparable effects on fat cells and their metabolism," said the study's senior author, Ella Atlas, PhD, of Health Canada, the federal department responsible for helping Canadians maintain and improve their health. "The study is the first to show that BPS exposure can induce the formation of human fat cells."

The Canadian researchers created a human cell model to test the effects of BPS exposure. They used human cells called preadipocytes -- undifferentiated cells that can develop into fat cells -- taken from the hip, thigh or abdomen of female volunteers. Groups of cells were exposed to various concentrations of BPS during a 14-day period. For comparison purposes, some cells were exposed to the chemical dexamethasone instead because it triggers a known rate of fat cell formation and accumulation of lipids, or fat-like substances that collect in the blood and tissue.

Researchers found that the cells exposed to the smallest amounts of BPS as well as the cells exposed to the highest concentrations exhibited the largest accumulation of lipids, while moderate amounts had a smaller effect. Exposure to even tiny amounts of endocrine-disrupting chemicals can interfere with the functioning of hormones, since small changes in hormone levels are designed to trigger adjustments in metabolism, respiration, heart rate and other bodily functions.

"Since BPS is one of the replacement chemicals used in consumer products that are marketed as BPA-free, it is important to examine whether BPS acts as an endocrine-disrupting chemical," Atlas said. "This study shows that BPS and BPA have similar effects on fat cell formation, lipid accumulation and expression of genes important for lipid metabolism."

Other authors of the study include Jonathan G. Boucher and Shaimaa Ahmed of Health Canada's Environmental Health Science and Research Bureau in Ottawa, Canada.


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Materials provided by The Endocrine Society. Note: Content may be edited for style and length.


Journal Reference:

  1. Jonathan G. Boucher, Shaimaa Ahmed, Ella Atlas. Bisphenol S Induces Adipogenesis in Primary Human Preadipocytes From Female Donors. Endocrinology, 2016; en.2015-1872 DOI: 10.1210/en.2015-1872

Cite This Page:

The Endocrine Society. "BPA substitute can trigger fat cell formation: Chemical used in BPA-free products exhibits similar endocrine-disrupting effects." ScienceDaily. ScienceDaily, 22 March 2016. <www.sciencedaily.com/releases/2016/03/160322133814.htm>.
The Endocrine Society. (2016, March 22). BPA substitute can trigger fat cell formation: Chemical used in BPA-free products exhibits similar endocrine-disrupting effects. ScienceDaily. Retrieved March 18, 2024 from www.sciencedaily.com/releases/2016/03/160322133814.htm
The Endocrine Society. "BPA substitute can trigger fat cell formation: Chemical used in BPA-free products exhibits similar endocrine-disrupting effects." ScienceDaily. www.sciencedaily.com/releases/2016/03/160322133814.htm (accessed March 18, 2024).

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