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Brain Glycogen Metabolism / edited by Mauro DiNuzzo, Arne Schousboe.

Contributor(s): SpringerLink (Online service) | DiNuzzo, Mauro, editor literario | Schousboe, Arne, editor literario
Material type: materialTypeLabelE-bookSeries: (Advances in Neurobiology, 2190-5215 ; 23); (Biomedical and Life Sciences (Springer-11642)).Publisher: Cham, Switzerland : Springer International Publishing, 2019Edition: First edition.Description: 1 recurso en línea (VIII, 443 páginas) : 85 ilustraciones, 61 ilustraciones a color.ISBN: 9783030274801.Subject: Índice glucémicoOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
1. Introduction or Preface -- 2. Structure and regulation of glycogen synthase in the brain -- 3. Structure and regulation of glycogen phosphorylase in the brain -- 4. Regional distribution of glycogen in the brain -- 5. Metabolism of glycogen in the brain white matter -- 6. Metabolism of glycogen in the brain gray matter -- 7. Contribution of glycogen to brain energy metabolism -- 8. Brain glycogen, compartmentation and ion/transmitter homeostasis -- 9. Role of brain glycogen in learning and memory -- 10. Brain glycogen content and turnover during sleep-wake cycle -- 11. Brain glycogen metabolism in response to exercise -- 12. Brain glycogen metabolism in neuronal excitability and epilepsy -- 13. Brain glycogen metabolism in hypoglycemia and diabetes. .
In: Springer eBooksAbstract: This book aims to provide a state-of-the-art summary of what is currently known about brain glycogen metabolism, detailing the recent advances in our understanding of why glycogen is so critical for normal brain function. The role of glycogen in cellular neurophysiology remains largely unclear and its specific contribution to the energy demand of brain cells is still elusive.Glycogen is the sole cerebral glucose reserve and is emerging as a fundamental component of brain energy metabolism. Pharmacological or genetic manipulation of glycogen metabolism in the brain impairs memory formation and increases susceptibility to epileptic seizures and cortical spreading depression. Glycogen is also directly implicated in abnormal neuronal excitability and mental retardation that characterize brain disorders like Lafora disease and Pompe disease. .
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud QP701 2019 EB (Browse shelf(Opens below)) Acceso electrónico eBook25022123
Total holds: 0

1. Introduction or Preface -- 2. Structure and regulation of glycogen synthase in the brain -- 3. Structure and regulation of glycogen phosphorylase in the brain -- 4. Regional distribution of glycogen in the brain -- 5. Metabolism of glycogen in the brain white matter -- 6. Metabolism of glycogen in the brain gray matter -- 7. Contribution of glycogen to brain energy metabolism -- 8. Brain glycogen, compartmentation and ion/transmitter homeostasis -- 9. Role of brain glycogen in learning and memory -- 10. Brain glycogen content and turnover during sleep-wake cycle -- 11. Brain glycogen metabolism in response to exercise -- 12. Brain glycogen metabolism in neuronal excitability and epilepsy -- 13. Brain glycogen metabolism in hypoglycemia and diabetes. .

This book aims to provide a state-of-the-art summary of what is currently known about brain glycogen metabolism, detailing the recent advances in our understanding of why glycogen is so critical for normal brain function. The role of glycogen in cellular neurophysiology remains largely unclear and its specific contribution to the energy demand of brain cells is still elusive.Glycogen is the sole cerebral glucose reserve and is emerging as a fundamental component of brain energy metabolism. Pharmacological or genetic manipulation of glycogen metabolism in the brain impairs memory formation and increases susceptibility to epileptic seizures and cortical spreading depression. Glycogen is also directly implicated in abnormal neuronal excitability and mental retardation that characterize brain disorders like Lafora disease and Pompe disease. .

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