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Brain Lipids in Synaptic Function and Neurological Disease: Clues to Innovative Therapeutic Strategies for Brain Disorders

Autor Jacques Fantini, Nouara Yahi
en Limba Engleză Hardback – 2 iul 2015
Lipids are the most abundant organic compounds found in the brain, accounting for up to 50% of its dry weight. The brain lipidome includes several thousands of distinct biochemical structures whose expression may greatly vary according to age, gender, brain region, cell type, as well as subcellular localization. In synaptic membranes, brain lipids specifically interact with neurotransmitter receptors and control their activity. Moreover, brain lipids play a key role in the generation and neurotoxicity of amyloidogenic proteins involved in the pathophysiology of neurological diseases. The aim of this book is to provide for the first time a comprehensive overview of brain lipid structures, and to explain the roles of these lipids in synaptic function, and in neurodegenerative diseases, including Alzheimer’s, Creutzfeldt-Jakob’s and Parkinson’s. To conclude the book, the authors present new ideas that can drive innovative therapeutic strategies based on the knowledge of the role of lipids in brain disorders.


  • Written to provide a "hands-on" approach for readers
  • Biochemical structures explained with molecular models, and molecular mechanisms explained with simple drawings
  • Step-by-step guide to memorize and draw lipid structures
  • Each chapter features a content summary, up-to-date references for additional study, and a key experiment with an explanation of the technique
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Specificații

ISBN-13: 9780128001110
ISBN-10: 0128001119
Pagini: 398
Dimensiuni: 191 x 235 x 23 mm
Greutate: 0.98 kg
Editura: ELSEVIER SCIENCE

Public țintă

Neuroscience graduate students, post-doctoral fellows, experienced researchers new to neuroscience, and senior researchers that want technique updates

Cuprins

Part I. Brain Lipids1. Chemical basis of lipid biochemistry2. Brain membranes3. Lipid metabolism and oxidation in neurons and glial cells4. Variations of brain lipid content
Part II. Brain Lipids and Synaptic Functions5. A molecular view of the synapse6. Protein-lipid interactions in the brain7. Lipid regulation of receptor function
Part III. Brain Lipids and Neurodegenerative Disease8. Common mechanisms in neurodegenerative diseases9. Creutzfeldt-Jakob’s disease10. Parkinson’s disease11. Alzheimer’s disease
Part IV. Brain Pathogens and Amyloidogenic Proteins: The Lipid Connection12. Viral and bacterial diseases13. A unifying theory14. Therapeutic strategies for neurodegenerative diseases