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June 1, 2000Journal of Cardiovascular Electrophysiology306 citations

Evidence for a Cardiac Ion Channel Mutation Underlying Drug‐Induced QT Prolongation and Life‐Threatening Arrhythmias

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CNCarlo NapolitanoPSPeter J. SchwartzABArthur Brown

Key Result

Mutational analysis of a patient with cisapride-induced cardiac arrest revealed a heterozygous KvLQT1 mutation, demonstrating that drug-induced QT prolongation may depend on a genetic substrate.

Study Design

Type

Case Report (n=3)

Structured PICO

Does a genetic mutation in LQTS-related genes underlie drug-induced QT prolongation and life-threatening arrhythmias?

P
Population
An elderly female patient with documented cardiac arrest related to cisapride and transiently prolonged QT interval, her two adult asymptomatic sons, and Xenopus oocytes used as an in vitro expression system.
I
Intervention
Mutational analysis of known LQTS-related genes and in vitro expression of mutated KvLQT1 protein.
C
Comparator
Wild-type (WT) KvLQT1 gene/channel.
O
Outcome
Identification of genetic mutation and in vitro cellular phenotype (loss of current).surrogate

This study provides evidence that some cases of drug-induced QT prolongation and arrhythmias depend on a genetic substrate, specifically mutations in LQTS-related genes like KvLQT1.

Abstract

The aim of this study was to test the hypothesis that some cases of drug-induced arrhythmias depend on genetic predisposition. Excessive prolongation of the QT interval and life-threatening arrhythmias (torsades de pointes or ventricular fibrillation) may occur in response to a variety of cardiac and noncardiac drugs, with detrimental effects on patient safety and the investments made by the pharmaceutical industry. Moss and Schwartz hypothesized that some drug-induced arrhythmias might represent cases of "forme fruste" of the congenital long QT syndrome (LQTS). The availability of molecular screening techniques for LQTS genes allowed us to test this hypothesis. An elderly female patient with documented cardiac arrest related to cisapride, a prokynetic drug that blocks I(Kr), and transiently prolonged QT interval underwent mutational analysis of the known LQTS-related genes performed by single-strand conformational polymorphism and DNA sequencing. Double-electrode voltage clamp in Xenopus oocytes as the expression system was used to study the in vitro cellular phenotype caused by the genetic defect in coexpression with the wild-type (WT) gene. Molecular analysis revealed a heterozygous mutation leading to substitution of a highly conserved amino acid in the pore region of KvLQT1. This mutation was present not only in the patient with ventricular fibrillation but also in her two adult asymptomatic sons who have a normal QT interval. In vitro expression of the mutated KvLQT1 protein showed a severe loss of current with a dominant negative effect on the WT-KvLQT1 channel. Our findings demonstrate that some cases of drug-induced QT prolongation may depend on a genetic substrate. Molecular screening may allow identification among family members of gene carriers potentially at risk if treated with I(Kr) blockers. Evolving technology may lead to rapid screening for mutations of candidate genes that cause drug-induced life-threatening arrhythmias and allow early identification of individuals at risk.

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Cite This Study

Napolitano et al. (2000) conducted a case report in Drug-induced QT prolongation and life-threatening arrhythmias (n=3). Mutational analysis of LQTS-related genes was evaluated on Identification of genetic mutation and in vitro cellular phenotype. Mutational analysis of a patient with cisapride-induced cardiac arrest revealed a heterozygous KvLQT1 mutation, demonstrating that drug-induced QT prolongation may depend on a genetic substrate.

synapsesocial.com/papers/6a0cfb6632f3c40b5ccbb01fhttps://doi.org/10.1111/j.1540-8167.2000.tb00033.x
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