Effects of channel modulation and pH on IsK inhibition by the novel class III antiarrhythmic azimilide (NE-10064)

Author:

Herzer Tobias,Wagner Carsten A.,Waldegger Siegfried,Lang Florian,Busch Andreas E.

Publisher

Elsevier BV

Subject

Pharmacology

Reference16 articles.

1. MinK channels: a minimal channel protein with a maximal impact;Busch;Cell. Physiol. Biochem.,1993

2. Regulation of the slowly activating, voltage-dependent potassium expressed in Xenopus oocytes;Busch;J. Physiol.,1992

3. The novel class III antiarrhythmics NE-10064 and NE-10133 inhibit IsK channels expressed in Xenopus oocytes and IKs in guinea pig cardiac myocytes;Busch;Biochem. Biophys. Res. Comm.,1994

4. Blockade of human IsK channels expressed in Xenopus oocytes by the novel class III antiarrhythmic NE-10064;Busch;Eur. J. Pharmacol.,1994

5. Cloning and expression of the delayed rectifier IsK channel from neonatal rat heart and diethylstilbestrol-primed rat uterus;Folander,1990

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