Mechanisms of Plasma Ozone and UV-C Sterilization of SARS-CoV-2 Explored through Atomic Force Microscopy.
Jinseung BaePetr BednarRong ZhuCheolwoo BongMoon Soo BakSarah StainerKyoungjun KimJunghun LeeChulsoo YoonYugyeong LeeOmobolaji Taye OjowaMaximilian LehnerPeter HinterdorferDaniel RuzekSungsu ParkYoo Jin OhPublished in: ACS applied materials & interfaces (2024)
Ultraviolet-C (UV-C) radiation and ozone gas are potential mechanisms employed to inactivate the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), each exhibiting distinct molecular-level modalities of action. To elucidate these disparities and deepen our understanding, we delve into the intricacies of SARS-CoV-2 inactivation via UV-C and ozone gas treatments, exploring their distinct molecular-level impacts utilizing a suite of advanced techniques, including biological atomic force microscopy (Bio-AFM) and single virus force spectroscopy (SVFS). Whereas UV-C exhibited no perceivable alterations in virus size or surface topography, ozone gas treatment elucidated pronounced changes in both parameters, intensifying with prolonged exposure. Furthermore, a nuanced difference was observed in virus-host cell binding post-treatment: ozone gas distinctly reduced SARS-CoV-2 binding to host cells, while UV-C maintained the status quo. The results derived from these methodical explorations underscore the pivotal role of advanced Bio-AFM techniques and SVFS in enhancing our understanding of virus inactivation mechanisms, offering invaluable insights for future research and applications in viral contamination mitigation.
Keyphrases
- sars cov
- atomic force microscopy
- respiratory syndrome coronavirus
- single molecule
- high speed
- particulate matter
- hydrogen peroxide
- room temperature
- induced apoptosis
- high resolution
- climate change
- aqueous solution
- healthcare
- single cell
- cell therapy
- air pollution
- combination therapy
- cell cycle arrest
- transcription factor
- binding protein
- oxidative stress
- radiation induced
- replacement therapy
- ionic liquid