Literature DB >> 24828650

Hyperlipidemic diet causes loss of olfactory sensory neurons, reduces olfactory discrimination, and disrupts odor-reversal learning.

Nicolas Thiebaud1, Melissa C Johnson2, Jessica L Butler1, Genevieve A Bell1, Kassandra L Ferguson1, Andrew R Fadool1, James C Fadool3, Alana M Gale4, David S Gale4, Debra A Fadool5.   

Abstract

Currently, 65% of Americans are overweight, which leads to well-supported cardiovascular and cognitive declines. Little, however, is known concerning obesity's impact on sensory systems. Because olfaction is linked with ingestive behavior to guide food choice, its potential dysfunction during obesity could evoke a positive feedback loop to perpetuate poor ingestive behaviors. To determine the effect of chronic energy imbalance and reveal any structural or functional changes associated with obesity, we induced long-term, diet-induced obesity by challenging mice to high-fat diets: (1) in an obesity-prone (C57BL/6J) and obesity-resistant (Kv1.3(-/-)) line of mice, and compared this with (2) late-onset, genetic-induced obesity in MC4R(-/-) mice in which diabetes secondarily precipitates after disruption of the hypothalamic axis. We report marked loss of olfactory sensory neurons and their axonal projections after exposure to a fatty diet, with a concomitant reduction in electro-olfactogram amplitude. Loss of olfactory neurons and associated circuitry is linked to changes in neuronal proliferation and normal apoptotic cycles. Using a computer-controlled, liquid-based olfactometer, mice maintained on fatty diets learn reward-reinforced behaviors more slowly, have deficits in reversal learning demonstrating behavioral inflexibility, and exhibit reduced olfactory discrimination. When obese mice are removed from their high-fat diet to regain normal body weight and fasting glucose, olfactory dysfunctions are retained. We conclude that chronic energy imbalance therefore presents long-lasting structural and functional changes in the operation of the sensory system designed to encode external and internal chemical information and leads to altered olfactory- and reward-driven behaviors.
Copyright © 2014 the authors 0270-6474/14/346970-15$15.00/0.

Entities:  

Keywords:  chemical senses; circuitry; metabolism; obesity; olfactory; sensory

Mesh:

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Year:  2014        PMID: 24828650      PMCID: PMC4019806          DOI: 10.1523/JNEUROSCI.3366-13.2014

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


  75 in total

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5.  Cell cycle analysis of a cell proliferation-associated human nuclear antigen defined by the monoclonal antibody Ki-67.

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8.  A contextual model for axonal sorting into glomeruli in the mouse olfactory system.

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9.  Axon guidance of mouse olfactory sensory neurons by odorant receptors and the beta2 adrenergic receptor.

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10.  Identification of programmed cell death in situ via specific labeling of nuclear DNA fragmentation.

Authors:  Y Gavrieli; Y Sherman; S A Ben-Sasson
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Review 1.  Neuromodulation in Chemosensory Pathways.

Authors:  Jeremy C McIntyre; Nicolas Thiebaud; John P McGann; Takaki Komiyama; Markus Rothermel
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Review 7.  A narrative review of obesity and hearing loss.

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Journal:  Int J Obes (Lond)       Date:  2017-02-06       Impact factor: 5.095

8.  Margatoxin-bound quantum dots as a novel inhibitor of the voltage-gated ion channel Kv1.3.

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9.  Olfactory and Gustatory Function After Bariatric Surgery.

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