Effect of moderate potassium-elevating treatment in long QT syndrome: the TriQarr Potassium Study.
Study Design
- Study Type
- Other
- Sample Size
- 19
- Population
- lqts with a disease-causing kcnq1 or kcnh2 variant
- Duration
- 1 weeks
- Intervention
- Effect of moderate potassium-elevating treatment in long QT syndrome: the TriQarr Potassium Study. 50 mg
- Comparator
- baseline
- Primary Outcome
- cardiac repolarisation
- Effect Direction
- Neutral
- Risk of Bias
- Unclear
Abstract
BACKGROUND: In long QT syndrome (LQTS), beta blockers prevent arrhythmias. As a supplement, means to increase potassium has been suggested. We set to investigate the effect of moderate potassium elevation on cardiac repolarisation. METHODS: Patients with LQTS with a disease-causing KCNQ1 or KCNH2 variant were included. In addition to usual beta-blocker treatment, patients were prescribed (1) 50 mg spironolactone (low dose) or (2) 100 mg spironolactone and 3 g potassium chloride per day (high dose+). Electrocardiographic measures were obtained at baseline and after 7 days of treatment. RESULTS: Twenty patients were enrolled (10 low dose and 10 high dose+). One patient was excluded due to severe influenza-like symptoms, and 5 of 19 patients completing the study had mild side effects. Plasma potassium in low dose did not increase in response to treatment (4.26±0.22 to 4.05±0.19 mmol/L, p=0.07). Also, no change was observed in resting QTcF (QT interval corrected using Fridericia's formula) before versus after treatment (478±7 vs 479±7 ms, p=0.9). In high dose+, potassium increased significantly from 4.08±0.29 to 4.48±0.54 mmol/L (p=0.001). However, no difference in QTcF was observed comparing before (472±8 ms) versus after (469±8 ms) (p=0.66) high dose+ treatment. No patients developed hyperkalaemia. CONCLUSION: In patients with LQTS, high dose+ treatment increased plasma potassium by 0.4 mmol/L without cases of hyperkalaemia. However, the potassium increase did not shorten the QT interval and several patients had side effects. Considering the QT interval as a proxy for arrhythmic risk, our data do not support that potassium-elevating treatment has a role as antiarrhythmic prophylaxis in patients with LQTS with normal-range potassium levels. TRIAL REGISTRATION NUMBER: NCT03291145.
TL;DR
The data do not support that potassium-elevating treatment has a role as antiarrhythmic prophylaxis in patients with LQTS with normal-range potassium levels, and the potassium increase did not shorten the QT interval and several patients had side effects.
Used In Evidence Reviews
Similar Papers
Journal of internal medicine · 2005
Chronic fatigue syndrome: assessment of increased oxidative stress and altered muscle excitability in response to incremental exercise.
Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association · 2018
Elevated potassium levels in patients with chronic kidney disease: occurrence, risk factors and clinical outcomes-a Danish population-based cohort study.
Dermatologic clinics · 2010
Innovative use of spironolactone as an antiandrogen in the treatment of female pattern hair loss.
American journal of kidney diseases : the official journal of the National Kidney Foundation · 2001
Hypokalemia, metabolic alkalosis, and hypertension: Cushing's syndrome in a patient with metastatic prostate adenocarcinoma.
American family physician · 2019
Clinically Relevant Drug-Drug Interactions in Primary Care.
Pharmacoepidemiology and drug safety · 2011