Voltage Gated Sodium Channels

Voltage Gated Sodium Channels
Author: Peter C. Ruben
Publisher: Springer Science & Business Media
Total Pages: 328
Release: 2014-04-15
Genre: Medical
ISBN: 3642415881

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.

Voltage-gated Sodium Channels: Structure, Function and Channelopathies

Voltage-gated Sodium Channels: Structure, Function and Channelopathies
Author: Mohamed Chahine
Publisher: Springer
Total Pages: 448
Release: 2018-06-04
Genre: Medical
ISBN: 3319902849

This book provides a timely state-of-the-art overview of voltage-gated sodium channels, their structure-function, their pharmacology and related diseases. Among the topics discussed are the structural basis of Na+ channel function, methodological advances in the study of Na+ channels, their pathophysiology and drugs and toxins interactions with these channels and their associated channelopathies.

Calcium Entry Channels in Non-Excitable Cells

Calcium Entry Channels in Non-Excitable Cells
Author: Juliusz Ashot Kozak
Publisher: CRC Press
Total Pages: 343
Release: 2017-07-14
Genre: Science
ISBN: 149875273X

Calcium Entry Channels in Non-Excitable Cells focuses on methods of investigating the structure and function of non-voltage gated calcium channels. Each chapter presents important discoveries in calcium entry pathways, specifically dealing with the molecular identification of store-operated calcium channels which were reviewed by earlier volumes in the Methods in Signal Transduction series. Crystallographic and pharmacological approaches to the study of calcium channels of epithelial cells are also discussed. Calcium ion is a messenger in most cell types. Whereas voltage gated calcium channels have been studied extensively, the non-voltage gated calcium entry channel genes have only been identified relatively recently. The book will fill this important niche.

Voltage-Gated Ion Channels as Drug Targets

Voltage-Gated Ion Channels as Drug Targets
Author: David J. Triggle
Publisher: John Wiley & Sons
Total Pages: 492
Release: 2006-08-21
Genre: Science
ISBN: 3527607749

Edited by the most prominent person in the field and top researchers at US pharmaceutical companies, this is a unique resource for drug developers and physiologists seeking a molecular-level understanding of ion channel pharmacology. After an introduction to the topic, the authors evaluate the structure and function of ion channels, as well as related drug interaction. A section on assay technologies is followed by a section each on calcium, sodium and potassium channels. Further chapters cover genetic and acquired channelopathies, before the book closes with a look at safety issues in ion channel drug development. For medicinal and pharmaceutical chemists, biochemists, molecular biologists and those working in the pharmaceutical industry.

Ion Channels in Health and Sickness

Ion Channels in Health and Sickness
Author: Fatima Shad Kaneez
Publisher: BoD – Books on Demand
Total Pages: 204
Release: 2018-10-10
Genre: Science
ISBN: 1789842271

Ion channels are proteins that make pores in the membranes of excitable cells present both in the brain and the body. These cells are not only responsible for converting chemical and mechanical stimuli into the electrical signals but are also liable for monitoring vital functions. All our activities, from the blinking of our eyes to the beating of our heart and all our senses from smell to sight, touch, taste and hearing are regulated by the ion channels. This book will take us on an expedition describing the role of ion channels in congenital and acquired diseases and the challenges and limitations scientist are facing in the development of drugs targeting these membrane proteins.

Neuronal Dynamics

Neuronal Dynamics
Author: Wulfram Gerstner
Publisher: Cambridge University Press
Total Pages: 591
Release: 2014-07-24
Genre: Computers
ISBN: 1107060834

This solid introduction uses the principles of physics and the tools of mathematics to approach fundamental questions of neuroscience.

Multiple Sclerosis As A Neuronal Disease

Multiple Sclerosis As A Neuronal Disease
Author: Stephen Waxman
Publisher: Elsevier
Total Pages: 495
Release: 2005-05-27
Genre: Medical
ISBN: 0080489419

This book examines the role of neurons in multiple sclerosis (MS) and the changes that occur in neurons as a result of MS. It places MS in a new and important perspective that not only explains the basis for symptom production, remission, and progress in MS, but also promises to open up new therapeutic possibilities.* Brings together the latest information from clinical, pathological, imaging, molecular, and pharmacological realms to explore the neurobiology of Multiple Sclerosis* Places MS in a new and important perspective that promises to open up new therapeutic avenues* Superbly illustrated and referenced

Handbook of Ion Channels

Handbook of Ion Channels
Author: Jie Zheng
Publisher: CRC Press
Total Pages: 682
Release: 2015-02-25
Genre: Medical
ISBN: 1466551429

The New Benchmark for Understanding the Latest Developments of Ion ChannelsIon channels control the electrical properties of neurons and cardiac cells, mediate the detection and response to sensory stimuli, and regulate the response to physical stimuli. They can often interact with the cellular environment due to their location at the surface of ce