A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich a… Mehr…
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich and ever-growing array of instruments and reagents to explore the biophysical and structural basis of sodium channel behavior. Armed with these tools, researchers have made increasingly dramatic discoveries about sodium channels, culminating most recently in crystal structures of voltage-gated sodium channels from bacteria. These structures, along with those from other channels, give unprecedented insight into the structural basis of sodium channel function. This volume of the Handbook of Experimental Pharmacology will explore sodium channels from the perspectives of their biophysical behavior, their structure, the drugs and toxins with which they are known to interact, acquired and inherited diseases that affect sodium channels and the techniques with which their biophysical and structural properties are studied. eBook Springer PDF, Springer, 15.04.2014, Springer, 2014<
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A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich a… Mehr…
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich and ever-growing array of instruments and reagents to explore the biophysical and structural basis of sodium channel behavior. Armed with these tools, researchers have made increasingly dramatic discoveries about sodium channels, culminating most recently in crystal structures of voltage-gated sodium channels from bacteria. These structures, along with those from other channels, give unprecedented insight into the structural basis of sodium channel function. This volume of the Handbook of Experimental Pharmacology will explore sodium channels from the perspectives of their biophysical behavior, their structure, the drugs and toxins with which they are known to interact, acquired and inherited diseases that affect sodium channels and the techniques with which their biophysical and structural properties are studied. Books > Biomedicine eBook, Springer Shop<
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A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich a… Mehr…
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich and ever-growing array of instruments and reagents to explore A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich and ever-growing array of instruments and reagents to explore Business & Industrial > Science & Laboratory, Springer<
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich a… Mehr…
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich and ever-growing array of instruments and reagents to explore the biophysical and structural basis of sodium channel behavior. Armed with these tools, researchers have made increasingly dramatic discoveries about sodium channels, culminating most recently in crystal structures of voltage-gated sodium channels from bacteria. These structures, along with those from other channels, give unprecedented insight into the structural basis of sodium channel function. This volume of the Handbook of Experimental Pharmacology will explore sodium channels from the perspectives of their biophysical behavior, their structure, the drugs and toxins with which they are known to interact, acquired and inherited diseases that affect sodium channels and the techniques with which their biophysical and structural properties are studied. eBook Springer PDF, Springer, 15.04.2014, Springer, 2014<
Nr. 39176082. Versandkosten:, Sofort per Download lieferbar, DE. (EUR 0.00)
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich a… Mehr…
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich and ever-growing array of instruments and reagents to explore the biophysical and structural basis of sodium channel behavior. Armed with these tools, researchers have made increasingly dramatic discoveries about sodium channels, culminating most recently in crystal structures of voltage-gated sodium channels from bacteria. These structures, along with those from other channels, give unprecedented insight into the structural basis of sodium channel function. This volume of the Handbook of Experimental Pharmacology will explore sodium channels from the perspectives of their biophysical behavior, their structure, the drugs and toxins with which they are known to interact, acquired and inherited diseases that affect sodium channels and the techniques with which their biophysical and structural properties are studied. Books > Biomedicine eBook, Springer Shop<
new in stock. Versandkosten:zzgl. Versandkosten. (EUR 0.00)
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich a… Mehr…
A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich and ever-growing array of instruments and reagents to explore A number of techniques to study ion channels have been developed since the electrical basis of excitability was first discovered. Ion channel biophysicists have at their disposal a rich and ever-growing array of instruments and reagents to explore Business & Industrial > Science & Laboratory, Springer<
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Detailangaben zum Buch - Voltage Gated Sodium Channels
EAN (ISBN-13): 9783642415883 ISBN (ISBN-10): 3642415881 Erscheinungsjahr: 2014 Herausgeber: Springer Berlin
Buch in der Datenbank seit 2014-05-28T08:43:42+02:00 (Berlin) Detailseite zuletzt geändert am 2024-04-23T00:40:22+02:00 (Berlin) ISBN/EAN: 3642415881
ISBN - alternative Schreibweisen: 3-642-41588-1, 978-3-642-41588-3 Alternative Schreibweisen und verwandte Suchbegriffe: Autor des Buches: ruben peter Titel des Buches: volta, chan, gate, gated
Daten vom Verlag:
Autor/in: Peter C. Ruben Titel: Handbook of Experimental Pharmacology; Voltage Gated Sodium Channels Verlag: Springer; Springer Berlin 295 Seiten Erscheinungsjahr: 2014-04-15 Berlin; Heidelberg; DE Sprache: Englisch 309,23 € (DE) 317,90 € (AT) 354,00 CHF (CH) Available VIII, 295 p. 58 illus., 36 illus. in color.
EA; E107; eBook; Nonbooks, PBS / Medizin/Pharmazie; Pharmakologie; Verstehen; channelopathies; drug binding; selectivity; structure/function relationships; toxins; voltage-dependent gating; Protein Structure; B; Pharmacology; Neuroscience; Cardiology; Membrane Trafficking; Proteins; Biomedical and Life Sciences; Neurowissenschaften; Kardiologie, Angiologie; Zellbiologie (Zytologie); Biochemie; BB
channels.- Regulation/modulation of sensory neuron sodium channels.- Ubiquitylation of voltage-gated sodium channels.- Probing gating mechanisms of sodium channel using pore blockers.- Animal toxins influence voltage-gated sodium channel function.- Voltage-sensor trapping toxins: Iso form-specific ligands for sodium channels.- Pharmacological insights and quirks of bacterial sodium channels.- The role of non-pore-forming β subunits in physiology and pathophysiology of voltage-gated sodium channels.- The role of late INa in development of cardiac arrhythmias.- Proton modulation of cardiac INa: A potential arrhythmogenic trigger.- Altered sodium channel gating as molecular basis for pain: Contribution of activation, inactivation and resurgent currents. Gives unprecedented insight into the structural basis of sodium channel function Explores sodium channels from the perspectives of their biophysical behavior Written by leading experts in the field Includes supplementary material: sn.pub/extras
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