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The Calcium Channel: Structure, Function and Implications : Stresa/Italy, May 11-14, 1988

Author: Martin Morad; Winifred G Nayler; Stanislav Kazda; Matthias Schramm
Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 1988.
Series: Bayer AG Centenary Symposium.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
This is the first book to summarize experimental results from the new, rapidly expanding field of research into the calcium channel in cell membrane. Calcium is an ubiquitous messenger of various cellular functions. Its fundamental role in the regulation of cardiac contractions has long been recognized. Drugs counteracting some actions of calcium ions, namely calcium antagonists, have since become essential to  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Martin Morad; Winifred G Nayler; Stanislav Kazda; Matthias Schramm
ISBN: 9783642739149 3642739148
OCLC Number: 851754107
Description: 1 online resource (xxvii, 643 pages 312 illustrations).
Contents: The Function of the Ca-Channel --
The Structure of the Ca-Channel --
Ca-Channels in the Cardiovascular and Endocrine System --
Neuropharmacology of Ca-Channels --
Endogenous Ligands and Antibodies --
Calcium, Aging and Disease --
Subject Index.
Series Title: Bayer AG Centenary Symposium.
Responsibility: edited by Martin Morad, Winifred G. Nayler, Stanislav Kazda, Matthias Schramm.
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Abstract:

This is the first book to summarize experimental results from the new, rapidly expanding field of research into the calcium channel in cell membrane. Calcium is an ubiquitous messenger of various cellular functions. Its fundamental role in the regulation of cardiac contractions has long been recognized. Drugs counteracting some actions of calcium ions, namely calcium antagonists, have since become essential to research. In the last decade it has been established that calcium ions reach their target intracellular system by passing through specialized calcium channels in the membrane. Recently improved experimental techniques combined with the discovery of highly specific Ca channel ligands have dramatically enlarged our knowledge of the molecular structure and function of such channels. The contributions by leading world specialists shed new light on both basic science and possible clinical implications for cardiovascular pharmacology, endocrinology and neuropharmacology.

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