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Your brain on nicotine: Nicotine receptors affect social behavior

New research in the FASEB Journal suggests that activation of nicotinic receptors within the prefrontal region of the mouse brain helps establish appropriate ranking between competing motivations

2011-06-30
(Press-News.org) Bethesda, MD—If you think nicotine receptors are only important to smokers trying to kick the tobacco habit, think again. New research published in the FASEB Journal (http://www.fasebj.org) suggests that these receptors also play an important role in social interaction and the ability to choose between competing motivations. Specifically, scientists from France show that the nicotinic receptors in the prefrontal cortex are essential for social interaction in mice and that this area of the brain is necessary for adapted and balanced social interactions to occur. This new knowledge could one day lead to novel treatments for ADHD, schizophrenia, and depression, among other illnesses.

"One of the main aims would be to understand and help people to make good decisions for themselves (and for others) and to maintain, during old age, such abilities in the social domain as well as in other aspects of our lives," said Sylvie Granon, a researcher involved in the work from the Université Paris Sud XI and CNRS UMR 8620, Centre de Neurosciences Paris-Sud, Orsay, France.

To make this discovery, Granon and colleagues introduced mice into an open space and tested their will to interact with other mice of the same sex or to explore a novel place. The respective times spent for either social contact or novelty exploration were measured and quantitatively evaluated. Researchers then removed the prefrontal cortex in otherwise normal mice, which resulted in mice with significant social deficits. Those genetically modified to lack the nicotinic receptor gene for a widespread subunit called beta2 subtype, seemed to favor social contact rather than the investigation of a novel environment. When the beta2 nicotinic receptor in the brain was re-expressed, a normal balance between social contact and novelty seeking was restored.

"This research can be summed up by saying that it's the real-life equivalent of Chatty Cathy marrying the Marlboro Man," said Gerald Weissmann, M.D., Editor-in-Chief of the FASEB Journal. "Who could have guessed that there may be a biological explanation for 'social butterflies.' The explanation was found in an area of the brain that for decades has been considered a locus for nicotine addiction."

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Receive monthly highlights from the FASEB Journal by e-mail. Sign up at http://www.faseb.org/fjupdate.aspx. The FASEB Journal (http://www.fasebj.org) is published by the Federation of the American Societies for Experimental Biology (FASEB) and celebrates its 25th anniversary in 2011. Over the past quarter century, the journal has been recognized by the Special Libraries Association as one of the top 100 most influential biomedical journals of the past century and is the most cited biology journal worldwide according to the Institute for Scientific Information.

FASEB comprises 24 societies with more than 100,000 members, making it the largest coalition of biomedical research associations in the United States. FASEB enhances the ability of scientists and engineers to improve—through their research—the health, well-being and productivity of all people. FASEB's mission is to advance health and welfare by promoting progress and education in biological and biomedical sciences through service to our member societies and collaborative advocacy.

Details: Maria Elena Avale, Jonathan Chabout, Stéphanie Pons, Pierre Serreau, Fabrice De Chaumont, Jean-Christophe Olivo-Marin, Jean-Pierre Bourgeois, Uwe Maskos, Jean-Pierre Changeux, and Sylvie Granon. Prefrontal nicotinic receptors control novel social interaction between mice. FASEB J. July 2011 25:2145-2155; doi:10.1096/fj.10-178558 ; http://www.fasebj.org/content/25/7/2145.abstract

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[Press-News.org] Your brain on nicotine: Nicotine receptors affect social behavior
New research in the FASEB Journal suggests that activation of nicotinic receptors within the prefrontal region of the mouse brain helps establish appropriate ranking between competing motivations