A Treasure Trove of Hypothalamic Neurocircuitries Governing Body Weight Homeostasis

Author:

Vianna Claudia R.1,Coppari Roberto1

Affiliation:

1. Department of Internal Medicine, Division of Hypothalamic Research, The University of Texas Southwestern Medical Center, Dallas, Texas 75390-9077

Abstract

Abstract Changes in physical activities and feeding habits have transformed the historically rare disease of obesity into a modern metabolic pandemic. Obesity occurs when energy intake exceeds energy expenditure over time. This energy imbalance significantly increases the risk for cardiovascular disease and type 2 diabetes mellitus and as such represents an enormous socioeconomic burden and health threat. To combat obesity, a better understanding of the molecular mechanisms and neurocircuitries underlying normal body weight homeostasis is required. In the 1940s, pioneering lesion experiments unveiled the importance of medial and lateral hypothalamic structures. In the 1980s and 1990s, several neuropeptides and peripheral hormones critical for appropriate feeding behavior, energy expenditure, and hence body weight homeostasis were identified. In the 2000s, results from metabolic analyses of genetically engineered mice bearing mutations only in selected neuronal groups greatly advanced our knowledge of the peripheral/brain feedback-loop modalities by which central neurons control energy balance. In this review, we will summarize these recent progresses with particular emphasis on the biochemical identities of hypothalamic neurons and molecular components underlying normal appetite, energy expenditure, and body weight homeostasis. We will also parse which of those neurons and molecules are critical components of homeostatic adaptive pathways against obesity induced by hypercaloric feeding.

Publisher

The Endocrine Society

Subject

Endocrinology

Reference81 articles.

1. Obesity and the regulation of energy balance.;Spiegelman;Cell,2001

2. Human genetics illuminates the paths to metabolic disease.;O'Rahilly;Nature,2009

3. Minireview: molecular targets for obesity therapy in the brain.;Obici;Endocrinology,2009

4. Maternal high-fat diet triggers lipotoxicity in the fetal livers of nonhuman primates.;McCurdy;J Clin Invest,2009

5. Diet-induced obesity causes severe but reversible leptin resistance in arcuate melanocortin neurons.;Enriori;Cell Metab,2007

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