Signaling at the Cell Surface in the Circulatory and Ventilatory Systems
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Signaling at the Cell Surface in the Circulatory and Ventilatory Systems

 eBook
Sofort lieferbar | Lieferzeit: Sofort lieferbar I
ISBN-13:
9781461419914
Veröffentl:
2011
Einband:
eBook
Seiten:
982
Autor:
Marc Thiriet
Serie:
3, Biomathematical and Biomechanical Modeling of the Circulatory and Ventilatory Systems
eBook Typ:
PDF
eBook Format:
Reflowable eBook
Kopierschutz:
Digital Watermark [Social-DRM]
Sprache:
Englisch
Beschreibung:

This multidisciplinary review of signaling pathways that regulate circulatory and respiratory function focuses on those involved in cell signaling, from sensors and receptors on the cell surface to intracellular effectors that trigger molecule synthesis.

The volumes in this authoritative series present a multidisciplinary approach to modeling and simulation of flows in the cardiovascular and ventilatory systems, especially multiscale modeling and coupled simulations. The cardiovascular and respiratory systems are tightly coupled, as their primary function is to supply oxygen to and remove carbon dioxide from the body's cells. Because physiological conduits have deformable and reactive walls, macroscopic flow behavior and prediction must be coupled to nano- and microscopic events in a corrector scheme of regulated mechanisms when the vessel lumen caliber varies markedly. Therefore, investigation of flows of blood and air in physiological conduits requires an understanding of the biology, chemistry, and physics of these systems together with the mathematical tools to describe their functioning.

Volume 3 is devoted to the set of mediators of the cell surface, especially ion and molecular carriers and catalytic receptors that, once liganded and activated, initiate signal transduction pathways. Intracellular cascades of chemical reactions trigger the release of substances stored in cellular organelles and/or gene transcription and protein synthesis. Primary mediators are included in models of regulated cellular processes, but multiple secondary signaling components are discarded to allow simple, representative modeling and to manage their inverse problems.

Introduction.- 1. Signal Transduction.- 2. Ion Carriers.- 3. Main Sets of Ion Channels and Pumps.- 4. Transmembrane Compound Carriers.- 5. Receptors of Cell-Matrix Mass Transfer.- 6. Receptors.- 7. G-Protein-Coupled Receptors.- 8. Receptor Protein Kinases.- 9. Receptor Tyrosine Phosphatases.- 10. Morphogen Receptors.- 11. Receptors of the Immune System.- Concluding Remarks.

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