img Leseprobe Leseprobe

Ion Channels as Targets in Drug Discovery

Gary Stephens (Hrsg.), Edward Stevens (Hrsg.)

PDF
ca. 213,99
Amazon iTunes Thalia.de Weltbild.de Hugendubel Bücher.de ebook.de kobo Osiander Google Books Barnes&Noble bol.com Legimi yourbook.shop Kulturkaufhaus ebooks-center.de
* Affiliatelinks/Werbelinks
Hinweis: Affiliatelinks/Werbelinks
Links auf reinlesen.de sind sogenannte Affiliate-Links. Wenn du auf so einen Affiliate-Link klickst und über diesen Link einkaufst, bekommt reinlesen.de von dem betreffenden Online-Shop oder Anbieter eine Provision. Für dich verändert sich der Preis nicht.

Springer International Publishing img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Nichtklinische Fächer

Beschreibung

This book is built around ion channel research and, more specifically, ion channels as important therapeutic drug targets. Under the editorial leadership of Gary Stephens in academic research and Edward Stevens from industry, the aim is to bring these strands together to provide a cutting-edge translational reference on ion channel drug discovery.  Exploiting our knowledge of ion channel structure and function has clear current and future potential to intervene and correct the pathophysiology associated with debilitating conditions, including cardiovascular disease, diabetes, cystic fibrosis, pain, epilepsy, and neurodegenerative disorders. Individual chapters have a disease focus, also providing a “case study story” that will also appeal to a clinical audience, while background information on a given ion channel is presented to provide a solid reference for undergraduate and postgraduate teaching.

Weitere Titel in dieser Kategorie
Cover Habits
Youna Vandaele
Cover Primate Anatomy
Friderun Ankel-Simons
Cover Stroke Genetics
Pankaj Sharma

Kundenbewertungen

Schlagwörter

glycine receptor, hyperpolarization-activated cyclic nucleotide-gated channel, translational neuroscience, NMDA receptor, nicotinic acetylcholine receptor, GABA receptor, voltage-gated sodium channel, acid sensitive ion channel, neurologic disease, choloride channel, kainite receptor, voltage-gated potassium channel, transcroptomics, transient receptor potential channel, ionotropic purinergic receptor, ionotropic serotonin receptor, AMPA receptor, channelopathy, voltage-gated calcium channel, ionotropic glutamate receptor