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A Novel Strategy to Mitigate the Hyperinflammatory Response to COVID-19 by Targeting Leukotrienes
Colin D Funk1,2, Ali Ardakani2
1Department of Biomedical and Molecular Sciences, Queen's University, Kingston, ON, Canada.
Abstract:
SARS-CoV-2 causing coronavirus disease 2019 (COVID-19) has wreaked havoc during the global pandemic of 2020 infecting millions and leaving over a half million dead. As a new virus, not previously in the human population, but with similarities to other coronaviruses causing severe acute respiratory distress syndrome (SARS/ARDS), and no known treatments, the race to re-purpose existing drugs and to enlist novel therapeutics is underway. In the half-year since the first cases, we have acquired substantial knowledge of this virus and the clinical course of COVID-19 progression. Results from early clinical trials have revealed two treatments (remdesivir, dexamethasone) that mitigate disease progression but clearly, there is much room for improvement. Initial case reports indicated many succumb to COVID-19 of hypoxic respiratory failure due to ARDS. However, ensuing studies revealed an atypical, immune cell-sequestered, vasculature-inflamed state leading to multiorgan thrombotic complications and end organ failure likely due to hyperinflammatory host responses. This Perspective focuses on a potential mechanism for a key COVID-19 disease progression turning point related to vascular and airway inflammation. The leukotriene lipid mediators have been overlooked with discussion centering on cytokine storms unleashing the deadly form of COVID-19. Leukotrienes possess some of the most potent known activities on immune cell trafficking and vascular leakage. We offer a simple treatment paradigm using two generic drugs targeting the hyperinflammatory response that characterizes the turning point from mild to severe/critical COVID-19 by targeting leukotriene biosynthesis with zileuton (Zyflo® controlled release formulation) and antagonism of the cysteinyl leukotriene 1 receptor with montelukast (Singulair®).
Insights
This study identifies leukotrienes as key mediators in severe COVID-19 progression, proposing zileuton and montelukast as potential treatments to target vascular and airway inflammation, improving outcomes beyond current therapies.
Area of Science:
- Immunology
- Pharmacology
- Virology
Background:
- Coronavirus disease 2019 (COVID-19) caused by SARS-CoV-2 has led to a global health crisis.
- Initial treatments show limited efficacy, with many patients succumbing to acute respiratory distress syndrome (ARDS) or multiorgan failure.
- Hyperinflammatory host responses, particularly vascular and airway inflammation, are implicated in severe COVID-19 progression.
Purpose of the Study:
- To investigate the role of leukotriene lipid mediators in COVID-19 pathogenesis.
- To propose a novel therapeutic strategy targeting leukotriene pathways for severe COVID-19.
- To identify a turning point in COVID-19 progression amenable to intervention.
Main Methods:
- Review of existing literature on COVID-19 pathophysiology and inflammatory mediators.
- Focus on the overlooked role of leukotrienes in immune cell trafficking and vascular leakage.
- Proposal of a treatment paradigm using existing generic drugs.
Main Results:
- Leukotrienes are potent mediators of immune cell migration and vascular permeability, contributing to severe COVID-19.
- Atypical inflammation involving vasculature and airways is a key feature of severe disease.
- Current treatments like remdesivir and dexamethasone offer partial mitigation but room for improvement exists.
Conclusions:
- Targeting leukotriene biosynthesis with zileuton and cysteinyl leukotriene 1 receptor antagonism with montelukast offers a potential treatment strategy.
- This approach addresses the hyperinflammatory response driving severe COVID-19 progression.
- Generic drugs targeting leukotrienes may improve outcomes for patients with severe COVID-19.
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