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Molecular Mechanisms of Synaptogenesis

Author : Alexander Dityatev
Publisher : Springer Science & Business Media
Page : 504 pages
File Size : 31,84 MB
Release : 2006-11-24
Category : Medical
ISBN : 038732562X

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This book provides a new compilation of information that link changes in the basic structure of synapses and brain diseases. The book shows that specific secreted proteins, and short peptide mimicking the function of neural cell adhesion molecules can significantly enhance the formation of synapses in the brain. It describes recent advances in research that lay necessary scientific groundwork to develop pharmacological treatments.

Molecular Mechanisms of Synaptogenesis

Author : Alexander Dityatev
Publisher : Springer
Page : 497 pages
File Size : 29,83 MB
Release : 2006-08-16
Category : Medical
ISBN : 9780387325606

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This book provides a new compilation of information that link changes in the basic structure of synapses and brain diseases. The book shows that specific secreted proteins, and short peptide mimicking the function of neural cell adhesion molecules can significantly enhance the formation of synapses in the brain. It describes recent advances in research that lay necessary scientific groundwork to develop pharmacological treatments.

Neural Plasticity and Memory

Author : Federico Bermudez-Rattoni
Publisher : CRC Press
Page : 368 pages
File Size : 39,97 MB
Release : 2007-04-17
Category : Psychology
ISBN : 1420008412

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A comprehensive, multidisciplinary review, Neural Plasticity and Memory: From Genes to Brain Imaging provides an in-depth, up-to-date analysis of the study of the neurobiology of memory. Leading specialists share their scientific experience in the field, covering a wide range of topics where molecular, genetic, behavioral, and brain imaging techniq

The Sticky Synapse

Author : Michael Hortsch
Publisher : Springer Science & Business Media
Page : 451 pages
File Size : 50,82 MB
Release : 2009-06-07
Category : Medical
ISBN : 0387927085

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The molecular mechanisms, which are responsible for the functional differences between the various types of neuronal synapses, have become one of the central themes of modern neurobiology. It is becoming increasingly clear that a misregulation of synaptogenesis and synaptic remodeling and dysfunctional neuronal synapses are at the heart of several human diseases, both neurological disorders and psychiatric conditions. As synapses present specialized cellular junctions between neurons and their target cells, it may not come as a surprise that neural cell adhesion molecules (CAMs) are of special importance for the genesis and the maintenance of synaptic connections. Genes encoding adhesive molecules make up a significant portion of the human genome, and neural CAMs even have been postulated to be a major factor in the evolution of the human brain. These are just some of the many reasons why we thought a book on neural CAMs and their role in establishing and maintaining neuronal synapses would be highly appropriate for summarizing our current state of knowledge. Without question, over the near future, additional adhesive proteins will join the ranks of synaptic CAMs and our knowledge, and how these molecules enable neurons and their targets to communicate effectively will grow.

Molecular Mechanisms of Synaptic Plasticity

Author : Giuseppina Martella
Publisher : Mdpi AG
Page : 0 pages
File Size : 27,9 MB
Release : 2023-08-28
Category : Science
ISBN : 9783036587158

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The human brain has hundreds of billions of neurons, and at least 7 million dendrites have been hypothesized to exist for each neuron, with over 100 trillion neuron-neuron, neuron-muscle, and neuron-endocrine cell synapses [1,2]. Our body continually receives stimuli from the outer environment, and our brain's ability to respond to these stimuli is ensured through synaptic processes, motivating the foundations of this Special Issue. This reprint aims to underline the role of synaptic plasticity phenomena in our body and clarify the mechanism operated by neurons to guarantee these phenomena. The collection in the Issue comprises 14 papers, including 8 reviews and 6 original works, one of which is a protocol for differentiating neurons from human stem cells, and 5 are preclinical works.

Synapse Development and Maturation

Author : Pasko Rakic
Publisher : Academic Press
Page : 560 pages
File Size : 11,46 MB
Release : 2020-05-29
Category : Psychology
ISBN : 0128236736

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Synapse Development and Maturation, the latest release in the Comprehensive Developmental Neuroscience series, presents the latest information on the genetic, molecular and cellular mechanisms of neural development. The book provides a much-needed update that underscores the latest research in this rapidly evolving field, with new section editors discussing the technological advances that are enabling the pursuit of new research on brain development. This volume focuses on the synaptogenesis and developmental sequences in the maturation of intrinsic and synapse-driven patterns. Features leading experts in various subfields as section editors and article authors Presents articles that have been peer reviewed to ensure accuracy, thoroughness and scholarship Includes coverage of mechanisms which regulate synapse formation and maintenance during development Covers neural activity, from cell-intrinsic maturation, to early correlated patterns of activity

Investigation of the Molecular Mechanisms that Mediate Neural Circuit Formation

Author : Katherine Watters
Publisher :
Page : 38 pages
File Size : 45,41 MB
Release : 2016
Category : Neural circuitry
ISBN :

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Thought, perception, and behavior rely on the faithful transfer of information between neurons, the cells of the nervous system. To ensure proper neural circuit formation, neurons must form connections with the proper neuronal partner, a process called synaptic partner recognition. Next, the neuron must recruit synaptic components to the correct membrane, a process called synaptic assembly. These two processes must be tightly linked for proper nervous system function, and defects in either may result in developmental neurological disorders. The VanHoven laboratory uses the genetic model organism Caenhorabditis elegans and the transgenic fluorescent marker NLG-1 GRASP. NLG-1 GRASP fluorescently labels synapses that form between the PHB chemosensory neurons and the AVA interneurons in vivo. Previously the VanHoven laboratory revealed that the ligand-receptor pair UNC-6/Netrin and UNC-40/DCC act in a juxtacrine manner to specify synaptic partner recognition between PHB and AVA neurons. Here, we study two other genes required in neural circuit formation: the transmembrane receptor clr-1/Receptor Protein Tyrosine Phosphatase (RPTP) and the small vesicle transporter protein unc-69/Small Coiled-Coil (SCOCO). We find that both CLR-1/RPTP and UNC-69/SCOCO are required for proper PHB to AVA synaptogenesis, act in the previously described UNC-6/Netrin UNC-40/DCC pathway, and likely function downstream of UNC-6/Netrin. Further characterization of how CLR-1/RPTP and UNC-69/SCOCO mediate nervous system development will help us to understand the logic of neural circuit formation as well as aid in the development of treatments for neurological disorders.

Synaptic Plasticity

Author : Michael R. Kreutz
Publisher : Springer Science & Business Media
Page : 611 pages
File Size : 16,88 MB
Release : 2012-02-18
Category : Medical
ISBN : 3709109310

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This book introduces the current concepts of molecular mechanisms in synaptic plasticity and provides a comprehensive overview of cutting-edge research technology used to investigate the molecular dynamics of the synapses. It explores current concepts on activity-dependent remodeling of the synaptic cytoskeleton and presents the latest ideas on the different forms of plasticity in synapses and dendrites. Synaptic Plasticity in Health and Disease not only supplies readers with extensive knowledge on the latest developments in research, but also with important information on clinical and applied aspects. Changes in spine synapses in different brain disease states, so-called synaptopathies, are explained and described by experts in the field. By outlining basic research findings as well as physiological and pathophysiological impacts on synaptic plasticity, the book represents an essential state-of-the-art work for scientists in the fields of biochemistry, molecular biology and the neurosciences, as well as for doctors in neurology and psychiatry alike.

Cellular Migration and Formation of Neuronal Connections

Author :
Publisher : Academic Press
Page : 1081 pages
File Size : 12,81 MB
Release : 2013-05-06
Category : Science
ISBN : 0123973473

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The genetic, molecular, and cellular mechanisms of neural development are essential for understanding evolution and disorders of neural systems. Recent advances in genetic, molecular, and cell biological methods have generated a massive increase in new information, but there is a paucity of comprehensive and up-to-date syntheses, references, and historical perspectives on this important subject. The Comprehensive Developmental Neuroscience series is designed to fill this gap, offering the most thorough coverage of this field on the market today and addressing all aspects of how the nervous system and its components develop. Particular attention is paid to the effects of abnormal development and on new psychiatric/neurological treatments being developed based on our increased understanding of developmental mechanisms. Each volume in the series consists of review style articles that average 15-20pp and feature numerous illustrations and full references. Volume 2 offers 56 high level articles devoted mainly to Formation of Axons and Dendrites, Migration, Synaptogenesis, Developmental Sequences in the Maturation of Intrinsic and Synapse Driven Patterns. Series offers 144 articles for 2904 full color pages addressing ways in which the nervous system and its components develop Features leading experts in various subfields as Section Editors and article Authors All articles peer reviewed by Section Editors to ensure accuracy, thoroughness, and scholarship Volume 2 sections include coverage of mechanisms which regulate: the formation of axons and dendrites, cell migration, synapse formation and maintenance during development, and neural activity, from cell-intrinsic maturation to early correlated patterns of activity