Tuesday, January 29, 2013

When food 'porn' holds no allure: The science behind satiety

Jan. 28, 2013 ? New research from the University of British Columbia is shedding light on why enticing pictures of food affect us less when we're full.

"We've known that insulin plays a role in telling us we're satiated after eating, but the mechanism by which this happens is unclear," says Stephanie Borgland, an assistant professor in UBC's Dept. of Anesthesiology, Pharmacology and Therapeutics and the study's senior author.

In the new study published online this week in Nature Neuroscience, Borgland and colleagues found that insulin -- prompted by a sweetened, high-fat meal -- affects the ventral tegmental area (VTA) of the brain, which is responsible for reward-seeking behaviour. When insulin was applied to the VTA in mice, they no longer gravitated towards environments where food had been offered.

"Insulin dulls the synapses in this region of the brain and decreases our interest in seeking out food," says Borgland, "which in turn causes us to pay less attention to food-related cues."

"There has been a lot of discussion around the environmental factors of the obesity epidemic," Borgland adds, pointing to fast food advertising bans in Quebec, Norway, the U.K., Greece and Sweden. "This study helps explain why pictures or other cues of food affect us less when we're satiated -- and may help inform strategies to reduce environmental triggers of overeating."

The VTA has also been shown to be associated with addictive behaviours, including illicit drug use. Borgland says better understanding of the mechanism in this region of the brain could, in the long run, inform diagnosis and treatment.

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The above story is reprinted from materials provided by University of British Columbia.

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Journal Reference:

  1. Gwena?l Labou?be, Shuai Liu, Carine Dias, Haiyan Zou, Jovi C Y Wong, Subashini Karunakaran, Susanne M Clee, Anthony G Phillips, Benjamin Boutrel, Stephanie L Borgland. Insulin induces long-term depression of ventral tegmental area dopamine neurons via endocannabinoids. Nature Neuroscience, 2013; DOI: 10.1038/nn.3321

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Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/living_well/~3/KcUUFehxAmI/130128143014.htm

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