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Published in: Brain Structure and Function 6/2016

01-07-2016 | Original Article

Statistical modeling implicates neuroanatomical circuit mediating stress relief by ‘comfort’ food

Authors: Yvonne M. Ulrich-Lai, Anne M. Christiansen, Xia Wang, Seongho Song, James P. Herman

Published in: Brain Structure and Function | Issue 6/2016

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Abstract

A history of eating highly palatable foods reduces physiological and emotional responses to stress. For instance, we have previously shown that limited sucrose intake (4 ml of 30 % sucrose twice daily for 14 days) reduces hypothalamic–pituitary–adrenocortical (HPA) axis responses to stress. However, the neural mechanisms underlying stress relief by such ‘comfort’ foods are unclear, and could reveal an endogenous brain pathway for stress mitigation. As such, the present work assessed the expression of several proteins related to neuronal activation and/or plasticity in multiple stress- and reward-regulatory brain regions of rats after limited sucrose (vs. water control) intake. These data were then subjected to a series of statistical analyses, including Bayesian modeling, to identify the most likely neurocircuit mediating stress relief by sucrose. The analyses suggest that sucrose reduces HPA activation by dampening an excitatory basolateral amygdala—medial amygdala circuit, while also potentiating an inhibitory bed nucleus of the stria terminalis principle subdivision-mediated circuit, resulting in reduced HPA activation after stress. Collectively, the results support the hypothesis that sucrose limits stress responses via plastic changes to the structure and function of stress-regulatory neural circuits. The work also illustrates that advanced statistical methods are useful approaches to identify potentially novel and important underlying relationships in biological datasets.
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Metadata
Title
Statistical modeling implicates neuroanatomical circuit mediating stress relief by ‘comfort’ food
Authors
Yvonne M. Ulrich-Lai
Anne M. Christiansen
Xia Wang
Seongho Song
James P. Herman
Publication date
01-07-2016
Publisher
Springer Berlin Heidelberg
Published in
Brain Structure and Function / Issue 6/2016
Print ISSN: 1863-2653
Electronic ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-015-1092-x

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