The timeline of neuronal and glial alterations in experimental obesity.

Daiane F Engel, Licio A Velloso

Journal: Neuropharmacology 2022;208():108983

PMID: 35143850

Abstract

In experimental models, hypothalamic dysfunction is a key component of the pathophysiology of diet-induced obesity. Early after the introduction of a high-fat diet, neurons, microglia, astrocytes and tanycytes of the mediobasal hypothalamus undergo structural and functional changes that impact caloric intake, energy expenditure and systemic glucose tolerance. Inflammation has emerged as a central component of this response, and as in other inflammatory conditions, there is a time course of events that determine the fate of distinct cells involved in the central regulation of whole-body energy homeostasis. Here, we review the work that identified key mechanisms, cellular players and temporal features of diet-induced hypothalamic abnormalities. This article is part of the special Issue on 'Cross Talk between Periphery and the Brain'.

Copyright © 2022 Elsevier Ltd. All rights reserved.

Address: School of Pharmacy, Federal University of Ouro Preto, Brazil.; Laboratory of Cell Signaling, Obesity and Comorbidities Research Center, University of Campinas, Brazil. Electronic address: [email protected].
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