Visible blue light inactivates SARS-CoV-2 variants and inhibits Delta replication in differentiated human airway
Abstract:
The emergence of SARS-CoV-2 variants that evade host immune responses has prolonged the COVID-19 pandemic. Thus, the development of an efficacious, variant-agnostic therapeutic for the treatment of early SARS-CoV-2 infection would help reduce global health and economic burdens. Visible light therapy has the potential to fill these gaps. In this study, visible blue light centered around 425 nm efficiently inactivated SARS-CoV-2 variants in cell-free suspensions and in a translationally relevant well-differentiated tissue model of the human large airway. Specifically, 425 nm light inactivated cell-free SARS-CoV-2 variants Alpha, Beta, Delta, Gamma, Lambda, and Omicron by up to 99.99% in a dose-dependent manner, while the monoclonal antibody bamlanivimab did not neutralize the Beta, Delta, and Gamma variants. Further, we observed that 425 nm light reduced virus binding to host ACE-2 receptor and limited viral entry to host cells in vitro . Further, the twice daily administration of 32 J/cm 2 of 425 nm light for three days reduced infectious SARS-CoV-2 Beta and Delta variants by >99.99% in human airway models when dosing began during the early stages of infection. In more established infections, logarithmic reductions of infectious Beta and Delta titers were observed using the same dosing regimen. Finally, we demonstrated that the 425 nm dosing regimen was well-tolerated by the large airway tissue model. Our results indicate that blue light therapy has the potential to lead to a well-tolerated and variant-agnostic countermeasure against COVID-19.
Insights
Visible blue light therapy effectively inactivates SARS-CoV-2 variants, including Omicron, by up to 99.99%. This variant-agnostic approach shows promise for treating COVID-19, reducing global health burdens.
Area of Science:
- Virology
- Photomedicine
- Infectious Diseases
Background:
- SARS-CoV-2 variants pose a significant challenge to pandemic control due to immune evasion.
- Existing therapeutics like monoclonal antibodies have limitations against emerging variants.
- A variant-agnostic therapeutic is needed to mitigate the global health and economic impact of COVID-19.
Approach:
- Investigated the efficacy of visible blue light (425 nm) against SARS-CoV-2 variants.
- Utilized cell-free suspensions and a human large airway tissue model for testing.
- Assessed virus inactivation, binding to ACE-2 receptors, and viral entry into host cells.
Key Points:
- 425 nm blue light inactivated multiple SARS-CoV-2 variants (Alpha, Beta, Delta, Gamma, Lambda, Omicron) by up to 99.99% in a dose-dependent manner.
- Blue light reduced viral binding to ACE-2 receptors and limited viral entry in vitro.
- Twice-daily 425 nm light administration significantly reduced infectious virus in human airway models, even in established infections.
Conclusions:
- Visible blue light therapy demonstrates potent, variant-agnostic inactivation of SARS-CoV-2.
- This therapeutic approach is well-tolerated in human airway models.
- Blue light therapy presents a promising, safe, and effective countermeasure against COVID-19.
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