Key result
Off-label use of chloroquine, hydroxychloroquine, azithromycin, and lopinavir/ritonavir for COVID-19 risks prolonging the QT interval and inducing severe arrhythmias by targeting the hERG channel.
Why the study?
Off-label drugs used for COVID-19 can cause cardiotoxicity and ventricular arrhythmias by blocking the hERG channel, requiring a better understanding of their biochemical and molecular interactions.
Does the off-label use of chloroquine, hydroxychloroquine, azithromycin, and lopinavir/ritonavir increase the risk of QT prolongation and arrhythmias in COVID-19 patients?
Does the off-label use of chloroquine, hydroxychloroquine, azithromycin, and lopinavir/ritonavir increase the risk of QT prolongation and arrhythmias in COVID-19 patients?
Clinicians must weigh the risks of QT prolongation and fatal arrhythmias against the unproven benefits when using off-label drugs like chloroquine and hydroxychloroquine for COVID-19.
Warrants QT monitoring with these off-label COVID-19 therapies; leaves open precise arrhythmia incidence from prospective trials.
Coronavirus disease-2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), poses an enormous challenge to the medical system, especially the lack of safe and effective COVID-19 treatment methods, forcing people to look for drugs that may have therapeutic effects as soon as possible. Some old drugs have shown clinical benefits after a few small clinical trials that attracted great attention. Clinically, however, many drugs, including those currently used in COVID-19, such as chloroquine, hydroxychloroquine, azithromycin, and lopinavir/ritonavir, may cause cardiotoxicity by acting on cardiac potassium channels, especially hERG channel through their off-target effects. The blocking of the hERG channel prolongs QT intervals on electrocardiograms; thus, it might induce severe ventricular arrhythmias and even sudden cardiac death. Therefore, while focusing on the efficacy of COVID-19 drugs, the fact that they block hERG channels to cause arrhythmias cannot be ignored. To develop safer and more effective drugs, it is necessary to understand the interactions between drugs and the hERG channel and the molecular mechanism behind this high affinity. In this review, we focus on the biochemical and molecular mechanistic aspects of drug-related blockade of the hERG channel to provide insights into QT prolongation caused by off-label use of related drugs in COVID-19, and hope to weigh the risks and benefits when using these drugs.
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Zheng et al. (2020) conducted a review in COVID-19. Chloroquine, hydroxychloroquine, azithromycin, and lopinavir/ritonavir was evaluated. Off-label use of chloroquine, hydroxychloroquine, azithromycin, and lopinavir/ritonavir for COVID-19 risks prolonging the QT interval and inducing severe arrhythmias by targeting the hERG channel.