Literature DB >> 25995480

Basolateral amygdala response to food cues in the absence of hunger is associated with weight gain susceptibility.

Xue Sun1, Nils B Kroemer2, Maria G Veldhuizen3, Amanda E Babbs4, Ivan E de Araujo3, Darren R Gitelman5, Robert S Sherwin6, Rajita Sinha7, Dana M Small8.   

Abstract

In rodents, food-predictive cues elicit eating in the absence of hunger (Weingarten, 1983). This behavior is disrupted by the disconnection of amygdala pathways to the lateral hypothalamus (Petrovich et al., 2002). Whether this circuit contributes to long-term weight gain is unknown. Using fMRI in 32 healthy individuals, we demonstrate here that the amygdala response to the taste of a milkshake when sated but not hungry positively predicts weight change. This effect is independent of sex, initial BMI, and total circulating ghrelin levels, but it is only present in individuals who do not carry a copy of the A1 allele of the Taq1A polymorphism. In contrast, A1 allele carriers, who have decreased D2 receptor density (Blum et al., 1996), show a positive association between caudate response and weight change. Regardless of genotype, however, dynamic causal modeling supports unidirectional gustatory input from basolateral amygdala (BLA) to hypothalamus in sated subjects. This finding suggests that, as in rodents, external cues gain access to the homeostatic control circuits of the human hypothalamus via the amygdala. In contrast, during hunger, gustatory inputs enter the hypothalamus and drive bidirectional connectivity with the amygdala. These findings implicate the BLA-hypothalamic circuit in long-term weight change related to nonhomeostatic eating and provide compelling evidence that distinct brain mechanisms confer susceptibility to weight gain depending upon individual differences in dopamine signaling.
Copyright © 2015 the authors 0270-6474/15/357964-13$15.00/0.

Entities:  

Keywords:  TaqIA; fMRI; feeding; metabolism; obesity; satiety

Mesh:

Substances:

Year:  2015        PMID: 25995480      PMCID: PMC4438134          DOI: 10.1523/JNEUROSCI.3884-14.2015

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  77 in total

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5.  D2 dopamine receptor gene and obesity.

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7.  Sleep Deprivation Selectively Upregulates an Amygdala-Hypothalamic Circuit Involved in Food Reward.

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8.  Hedonic Eating: Sex Differences and Characterization of Orexin Activation and Signaling.

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10.  Sex specific recruitment of a medial prefrontal cortex-hippocampal-thalamic system during context-dependent renewal of responding to food cues in rats.

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