» Articles » PMID: 2043041

In Vitro Testing of Triamterene Derivatives for Antiarrhythmic Activity

Overview
Specialty Pharmacy
Date 1991 Jan 1
PMID 2043041
Citations 2
Authors
Affiliations
Soon will be listed here.
Abstract

A series of para-substituted triamterene derivatives (Table 1) were evaluated for their antiarrhythmic properties in vitro. Pharmacological evaluation of the compounds and some class-I- (quinidine, lidocaine, and propafenone) as well as class-III-antiarrhythmic drugs ((+/-)-sotalol and amiodarone) was carried out by measuring the functional refractory period (FRP), the maximal driving frequency (MDF) and the force of myocardial contractions (FC) of electrically stimulated guinea pig atria. The increase in FRP and the decrease in MDF was most pronounced with the class-I-antiarrhythmic drugs, but these compounds showed the typical negative inotropic effects, too. For the class-III-antiarrhythmics only a weak influence on FRP and MDF could be demonstrated, while FC was not altered in the presence of (+/-)-sotalol and amiodarone. Neutral substituted triamterenes like compounds 2-5 as well as most of the benzyltriamterene derivatives showed similar or stronger effects on FRP and MDF as (+/-)-sotalol and amiodarone. With the exception of 4 and 5, these effects were combined with an increase of FC. Compounds 6 and 7, well known-potent diuretics, showed no influence to FRP, MDF and FC. Therefore, we conclude different mechanisms for the antikaliuretic and cardiac activity.

Citing Articles

Blockade of epithelial Na+ channels by triamterenes - underlying mechanisms and molecular basis.

Busch A, Suessbrich H, Kunzelmann K, Hipper A, Greger R, Waldegger S Pflugers Arch. 1996; 432(5):760-6.

PMID: 8772124 DOI: 10.1007/s004240050196.


Propafenone. A reappraisal of its pharmacology, pharmacokinetics and therapeutic use in cardiac arrhythmias.

Bryson H, Palmer K, Langtry H, Fitton A Drugs. 1993; 45(1):85-130.

PMID: 7680987 DOI: 10.2165/00003495-199345010-00008.