Chronic Hyperpalatable Diet Impairs Hippocampal-dependent Memories by Disrupting Glutamatergic and Fractalkine Axis Signaling

Author:

Ribeiro Roberta1,Silva Emanuele Guimarães2,Moreira Felipe Caixeta2,Gomes Giovanni Freitas3,Cussat Gabriela Reis1,Silva Barbara Stehling Ramos1,Silva Maria Carolina Machado1,Fernandes Heliana Barros4,Oliveira Carolina Sena1,Guarnieri Leonardo Oliveira2,Lopes Victoria4,Ferreira Cláudia Natália4,Faria Ana Maria Caetano2,Maioli Tatiani Uceli2,Ribeiro Fabíola Mara2,Miranda Aline Silva4,Moraes Grace Schenatto Pereira2,Oliveira Antônio Carlos Pinheiro1,Vieira Luciene Bruno1

Affiliation:

1. Federal University of Minas Gerais

2. ICB, University of Minas Gerais

3. University of São Paulo

4. University of Minas Gerais

Abstract

Abstract Chronic consumption of hyperpalatable and hypercaloric foods has been pointed out as a factor associated with cognitive decline and memory impairment in obesity. In this context, the integration between peripheral and central inflammation may play a significant role in the negative effects of an obesogenic environment on memory. However, little is known about how obesity-related peripheral inflammation affects specific neurotransmission systems involved with memory regulation. Here, we test the hypothesis that chronic exposure to a highly palatable diet may cause neuroinflammation, glutamatergic dysfunction, and memory impairment. For that, we exposed C57BL/6J mice to a high sugar and butter diet (HSB) for 12 weeks, and we investigated its effects on behavior, glial activation, blood-brain barrier permeability, pro-inflammatory features, glutamatergic alterations, plasticity, and fractalkine-CX3CR1 axis. Our results revealed that HSB diet induced a decrease in memory reconsolidation and extinction, as well as an increase in hippocampal glutamate levels. Although our data indicated a peripheral pro-inflammatory profile, we did not observe hippocampal neuroinflammatory features. Furthermore, we also observed that the HSB diet increased hippocampal fractalkine levels, a key chemokine associated with neuroprotection and inflammatory regulation. Then, we hypothesized that the elevation on glutamate levels may saturate synaptic communication, partially limiting plasticity, whereas fractalkine levels increase as a strategy to decrease glutamatergic damage.

Publisher

Research Square Platform LLC

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