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E-book

Title Molecular sensors for cardiovascular homeostasis / edited by Donna H. Wang
Published New York : Springer, ©2007

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Description 1 online resource (viii, 212 pages) : illustrations
Contents Contributors -- Part 1. The DEG/ENaC family -- 1. The role of DEG/ENaC ion channels in sensory mechanotransduction / Dafni Bazopoulou, Giannis Voglis, and Nektarios Tavernarakis -- 2. ASICs function as cardiac lactic acid sensors during myocardial ischemia / Christopher J. Benson and Edwin W. McCleskey -- 3. Molecular components of neural sensory transduction DEG/ENac proteins in baro and chemoreceptors / François M. Abboud, Yongjun Lu, and Mark W. Chapleau -- Part II. The TRP family -- 4. TRP channels as molecular sensors of physical stimuli / Roger G. O'Neill -- 5. TRPV1 in central cardiovascular control : discerning the C-fiber afferent pathway / Michael C. Andersen, Mark W. Doyle, Timothy W. Bailey, and Young-Ho Jin -- 6. TRPV1 as a molecular transducer for salt and water homeostasis / Donna H. Wang and Jeffrey R. Sachs -- 7. Functional interaction between ATP and TRPV1 receptors / Makoto Tominaga and Tomoko Moriyama -- 8. TRPV4 and hypotonic stress / David M. Cohen -- Part III. Other ion channels and biosensors -- 9. Ion channels in shear stress sensing in vascular endothelium : ion channels in vascular mechanotransduction / Abdul I. Barakat, Deborah K. Lieu, and Andrea Gojova -- 10. Redox signaling in oxygen sensing by vessels / Andrea Olschewski and E. Kenneth Weir -- 11. Impedance spectroscopy and quartz crystal microbalance : noninvasive tools to analyze ligand-receptor interactions at functionalized surfaces and of cell monolayers / Andreas Hinz and Hans-Joachim Galla -- Index
Summary Molecular Sensors for Cardiovascular Homeostasis Donna H. Wang, MD, FAHA, FAAN Biological homeostasis is maintained via intact function of an array of molecules detecting changes of microenvironments inside and outside of the biological system. These molecules including cell membrane proteins and ion channels are intimately involved in a variety of sensory pathways and respond to environmental stimuli, including altered temperature, pH, mechanical and osmotic stress, intra- and extracellular messengers, as well as changes in energy consumption. All of these modalities are involved in systemic, cellular, and molecular regulation. A better understanding of the structural, functional, and physiological properties of these proteins/ion channels would provide insight into mechanisms underlying disease processes, as well as facilitate fabrication of precisely defined, nanostructured interfacial architectures or molecular electronics that express and measure the activities of these proteins/channels. Molecular Sensors for Cardiovascular Homeostasis reveals state-of-the-science of several newly discovered ion channel families and their role in the pathogenesis of cardiovascular diseases. This work offers comprehensive and up-to-date information for a deeper understanding of the relationship between macro- and micro-environments, ion channels, and pathophysiological responses, and for developing novel therapies for treating devastating cardiovascular illnesses. Molecular Sensors for Cardiovascular Homeostasis is essential reading for neuroscientists, molecular biologists, cardiovascular researchers, electrophysiologists, cardiologists, pathologists, neurosurgeons, and researchers and students interested in biomedical engineering, nanotechnology, and design and development of medical devices. Key Topics: Degenerin Ion Channel Family Transient Receptor Potential Ion Channel Family Ion Channels in Mechanotransduction Redox Signaling in Oxygen Sensing Molecular Electronics as Biosensors Neural Sensory Transduction Baro- and Chemo-Receptors Cardiac lactic Acid Sensors Central Cardiovascular Control Salt and Water Homeostasis Osmotic Sensing Ligand-Receptor Interfacing About the Editor: Dr. Donna H. Wang is a Professor in the Department of Medicine, Neuroscience Program, and Cell & Molecular Biology Program at Michigan State University. She also serves as the Director of Investigative Medicine and the Vice Chair for Basic Research for the Department of Medicine. Dr. Wang is an Established Investigator of the American Heart Association, a Fellow of the American Heart Association Council for High Blood Pressure Research, a Fellow of Cardiovascular Section of the American Physiological Society, and a Fellow of the American Academy of Nanomedicine. She serves on many national and international scientific and policy review panels and committees, including US National Institutes of Health, American Heart Association, and the Wellcome Trust of UK
Analysis geneeskunde
medicine
volksgezondheid
public health
biomedische techniek
biomedical engineering
cardiologie
cardiology
humane genetica
human genetics
Medicine (General)
Geneeskunde (algemeen)
Bibliography Includes bibliographical references and index
Notes English
Print version record
In Springer e-books
Subject Cardiovascular system.
Homeostasis.
Cardiovascular system -- Diseases -- Pathogenesis
Cardiovascular system -- Diseases.
Cardiovascular system -- Physiology
Cardiovascular Physiological Phenomena
Cardiovascular System
Homeostasis
Cardiovascular Diseases
Biosensing Techniques
Homeostasis -- physiology
Ion Channels -- physiology
Signal Transduction -- physiology
Homeostasis.
Cardiovascular system -- Diseases -- Pathogenesis.
Cardiovascular Physiology.
Biosensing Techniques.
Homeostasis -- physiology.
Ion Channels -- physiology.
Signal Transduction -- physiology.
Cardiovascular system.
Cardiovascular system -- Diseases
Cardiovascular system
Homeostasis
Form Electronic book
Author Wang, Donna H
ISBN 9780387475301
0387475303
9780387475288
0387475281