PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 25, 2021Cureus15 citationsOpen Access

QT Dispersion and Drug-Induced Torsade de Pointes

AFAri FriedmanJMJeremy MilesJLJared Liebelt

Key Result

Amiodarone had significantly greater QT dispersion (0.050s) than dofetilide (0.037s) and sotalol (0.034s) (p=0.006), showing its lower TdP risk is not due to reduced repolarization heterogeneity.

Key Points

  • The study aims to analyze QT dispersion differences between amiodarone and other class III antiarrhythmics and investigate the etiology of drug-induced TdP.
  • Retrospective, observational study at Montefiore Medical Center (2005-2015)
  • Included adults >18 years on amiodarone, dofetilide, or sotalol with prolonged QT interval
  • QTc dispersion analyzed using Bazett and Framingham formulas, with ANOVA for comparisons
  • Average QT dispersion for amiodarone was 0.050, dofetilide 0.037, and sotalol 0.034 (p=0.006)
  • Average QTc dispersion by Bazett was 0.053 for amiodarone, 0.038 for dofetilide, 0.037 for sotalol (p=0.008)
  • QTc dispersion by Framingham showed similar results: amiodarone 0.049, dofetilide 0.036, sotalol 0.035 (p=0.009)

Study Design

Type

Observational (n=77)

Blinding

Blinded observers

Multicenter

No

Structured PICO

Does amiodarone reduce QT dispersion compared to dofetilide or sotalol in patients with prolonged QT intervals?

P
Population
77 adults >18 years prescribed amiodarone, dofetilide, or sotalol with prolonged QT interval (≥450 ms in males, ≥470 ms in females) on 12-lead ECG, mean age 63.1, 54% male, at a single US center.
I
Intervention
Amiodarone
C
Comparator
Dofetilide or sotalol
O
Outcome
QT dispersion and QTc dispersion (calculated by Bazett and Framingham formulas) measured on 12-lead ECGsurrogate

Main Result

p-value: p=0.006

Limitations

  • Retrospective nature of the study
  • Differences in baseline characteristics among groups (greater number of prior MI, HFrEF, and CKD in the amiodarone group)
  • Doses of anti-arrhythmic medications were unknown at the time of ECG
  • Unable to account for other medications patients were taking that may have had QT-prolonging effects
  • Variable timing of ECG acquisition relative to medication use
  • Retrospective nature making it difficult to control for unknown confounding factors
  • Difference in baseline characteristics among groups (greater prior MI, HFrEF, and CKD in the amiodarone group)
  • Unknown doses of anti-arrhythmic medications
  • Unable to account for other QT-prolonging medications

Abstract

Background Amiodarone causes less drug-induced torsade de pointes (TdP) compared to other class III antiarrhythmics. Two theories proposed for this finding include that amiodarone has less repolarization heterogeneity, and/or decreases early after depolarization (EADs). Corrected QT (QTc) dispersion as measured on a surface electrocardiogram (ECG) represents spatial heterogeneity of ventricular repolarization. Objective The purpose of this study was to analyze the difference in QT dispersion between amiodarone and other class III antiarrhythmics and to determine the etiology of TdP. Methods This was a retrospective, observational study at Montefiore Medical Center between January 2005 and January 2015. Inclusion criteria were adults >18 years on amiodarone, dofetilide, or sotalol with prolonged QT interval on 12-lead ECG. ECGs were reviewed by three blinded observers. QTc was calculated using the Bazett and Framingham formulas. QTc dispersion was calculated by subtracting the shortest from the longest QTc. Analysis of variance (ANOVA) was applied for comparison between antiarrhythmic groups with Bonferroni correction for multiple comparisons. Results A total of 447 ECGs were reviewed and 77 ECGs met inclusion criteria. The average QT dispersion for amiodarone, dofetilide, and sotalol was 0.050, 0.037, and 0.034, respectively (p=0.006) and the average QTc dispersion by Bazett was 0.053, 0.038, and 0.037 (p=0.008) and by Framingham was 0.049, 0.036, and 0.035 (p=0.009), respectively. Conclusion Our results show that given the increase in QT dispersion seen with amiodarone, heterogeneous ventricular repolarization as measured by QTc dispersion likely does not account for the lower incidence of drug-induced TdP seen with amiodarone. The ability of amiodarone to decrease EADs via sodium-channel blockade is more likely the explanation for its lower incidence of drug-induced TdP.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Friedman et al. (2021) conducted an observational in Prolonged QT interval (n=77). Amiodarone vs. Dofetilide and Sotalol was evaluated on QT dispersion (seconds) (p=0.006). Amiodarone had significantly greater QT dispersion (0.050s) than dofetilide (0.037s) and sotalol (0.034s) (p=0.006), showing its lower TdP risk is not due to reduced repolarization heterogeneity.

synapsesocial.com/papers/6a1c5d3eea84844e355fc9c6https://doi.org/10.7759/cureus.12895
Ask AI
Helpful
Bookmark
Share
View Full Paper