Neuroprotective effects of leptin in the context of obesity and metabolic disorders

As the population of the world ages, the prevalence of neurodegenerative disease continues to rise, accompanied by increases in disease burden related to obesity and metabolic disorders. Thus, it will be essential to develop tools for preventing and slowing the progression of these major disease ent...

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Main Authors: Cecilia Davis, Jeremy Mudd, Meredith Hawkins
Format: Article
Language:English
Published: Elsevier 2014-12-01
Series:Neurobiology of Disease
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0969996114001016
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spelling doaj-f8a8c8f7920742a395bc9268d2b0f3012021-03-22T12:41:13ZengElsevierNeurobiology of Disease1095-953X2014-12-01726171Neuroprotective effects of leptin in the context of obesity and metabolic disordersCecilia Davis0Jeremy Mudd1Meredith Hawkins2Diabetes Research Center, Albert Einstein College of Medicine, USADiabetes Research Center, Albert Einstein College of Medicine, USACorresponding author at: Belfer Building, Room 709, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY 10461, USA.; Diabetes Research Center, Albert Einstein College of Medicine, USAAs the population of the world ages, the prevalence of neurodegenerative disease continues to rise, accompanied by increases in disease burden related to obesity and metabolic disorders. Thus, it will be essential to develop tools for preventing and slowing the progression of these major disease entities. Epidemiologic studies have shown strong associations between obesity, metabolic dysfunction, and neurodegeneration, while animal models have provided insights into the complex relationships between these conditions. Experimentally, the fat-derived hormone leptin has been shown to act as a neuroprotective agent in various animal models of dementia, toxic insults, ischemia/reperfusion, and other neurodegenerative processes. Specifically, leptin minimizes neuronal damage induced by neurotoxins and pro-apoptotic conditions. Leptin has also demonstrated considerable promise in animal models of obesity and metabolic disorders via modulation of glucose homeostasis and energy intake. However, since obesity is known to induce leptin resistance, we hypothesize that resistance to the neuroprotective effects of leptin contributes to the pathogenesis of obesity-associated neurodegenerative diseases. This review aims to explore the literature pertinent to the role of leptin in the protection of neurons from the toxic effects of aging, obesity and metabolic disorders, to investigate the physiological state of leptin resistance and its causes, and to consider how leptin might be employed therapeutically in the prevention and treatment of neurodegenerative disease.http://www.sciencedirect.com/science/article/pii/S0969996114001016LeptinNeurodegenerationObesityDiabetesLeptin resistanceMetabolic disorder
collection DOAJ
language English
format Article
sources DOAJ
author Cecilia Davis
Jeremy Mudd
Meredith Hawkins
spellingShingle Cecilia Davis
Jeremy Mudd
Meredith Hawkins
Neuroprotective effects of leptin in the context of obesity and metabolic disorders
Neurobiology of Disease
Leptin
Neurodegeneration
Obesity
Diabetes
Leptin resistance
Metabolic disorder
author_facet Cecilia Davis
Jeremy Mudd
Meredith Hawkins
author_sort Cecilia Davis
title Neuroprotective effects of leptin in the context of obesity and metabolic disorders
title_short Neuroprotective effects of leptin in the context of obesity and metabolic disorders
title_full Neuroprotective effects of leptin in the context of obesity and metabolic disorders
title_fullStr Neuroprotective effects of leptin in the context of obesity and metabolic disorders
title_full_unstemmed Neuroprotective effects of leptin in the context of obesity and metabolic disorders
title_sort neuroprotective effects of leptin in the context of obesity and metabolic disorders
publisher Elsevier
series Neurobiology of Disease
issn 1095-953X
publishDate 2014-12-01
description As the population of the world ages, the prevalence of neurodegenerative disease continues to rise, accompanied by increases in disease burden related to obesity and metabolic disorders. Thus, it will be essential to develop tools for preventing and slowing the progression of these major disease entities. Epidemiologic studies have shown strong associations between obesity, metabolic dysfunction, and neurodegeneration, while animal models have provided insights into the complex relationships between these conditions. Experimentally, the fat-derived hormone leptin has been shown to act as a neuroprotective agent in various animal models of dementia, toxic insults, ischemia/reperfusion, and other neurodegenerative processes. Specifically, leptin minimizes neuronal damage induced by neurotoxins and pro-apoptotic conditions. Leptin has also demonstrated considerable promise in animal models of obesity and metabolic disorders via modulation of glucose homeostasis and energy intake. However, since obesity is known to induce leptin resistance, we hypothesize that resistance to the neuroprotective effects of leptin contributes to the pathogenesis of obesity-associated neurodegenerative diseases. This review aims to explore the literature pertinent to the role of leptin in the protection of neurons from the toxic effects of aging, obesity and metabolic disorders, to investigate the physiological state of leptin resistance and its causes, and to consider how leptin might be employed therapeutically in the prevention and treatment of neurodegenerative disease.
topic Leptin
Neurodegeneration
Obesity
Diabetes
Leptin resistance
Metabolic disorder
url http://www.sciencedirect.com/science/article/pii/S0969996114001016
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