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1.
Preprint in English | bioRxiv | ID: ppbiorxiv-502427

ABSTRACT

The novel coronavirus disease 2019 (COVID-19) infections have rapidly spread throughout the world, and the virus has acquired an ability to spread via aerosols even at long distances. Hand washing, face-masking, and social distancing are the primary preventive measures against infections. With mounting scientific evidence, World Health Organisation (WHO) declared COVID-19 an air-borne disease. This ensued the need to disinfect air to reduce the transmission. Ultraviolet C (UVC) comprising the light radiation of 200-280 nm range is a commonly used method for inactivation of pathogens. The heating, ventilation, and air conditioning (HVAC) systems are not beneficial in closed spaces due to poor or no ability to damage circulating viruses. Therefore, standard infection-prevention practices coupled with a strategy to reduce infectious viral load in air substantially might be helpful in reducing virus transmissibility. In this study, we implemented UV light-based strategies to combat COVID-19 and future pandemics. We tested various disinfection protocols by using UVC-based air purification systems and currently installed such a system in workspaces, rushed out places, hospitals and healthcare facilities for surface, air, and water disinfection. In this study, we designed a prototype device to test the dose of UVC required to inactivate SARS-CoV-2 in aerosols and demonstrate that the radiation rapidly destroys the virus in aerosols. The UVC treatment renders the virus non-infectious due to chemical modification of nucleic acid. We also demonstrate that UVC treatment alters the Spike protein conformation that may further affect the infectivity of the virus. We show by using a mathematical model based on the experimental data that UVC-based air disinfection strategy can substantially reduce the risk of virus transmission. The systematic treatment by UVC of air in the closed spaces via ventilation systems could be helpful in reducing the active viral load in the air.

2.
J Cosmet Dermatol ; 6(4): 258-61, 2007 Dec.
Article in English | MEDLINE | ID: mdl-18047611

ABSTRACT

Keloids are well-defined fibrous tissue overgrowths extending beyond the original defects. The purpose of our study was to compare the efficacy of liquid nitrogen cryosurgery alone with liquid nitrogen cryosurgery and intralesional triamcinolone acetonide combination. Study on 60 clinically diagnosed lesions of keloids from 21 patients was conducted to compare the efficacy of liquid nitrogen cryosurgery alone. The statistical analysis shows synergistic action of cryosurgery and corticosteroids may offer promise in the treatment.


Subject(s)
Anti-Inflammatory Agents/administration & dosage , Cryosurgery , Keloid/therapy , Nitrogen/administration & dosage , Triamcinolone Acetonide/administration & dosage , Adult , Combined Modality Therapy , Female , Humans , Injections, Intralesional , Keloid/drug therapy , Keloid/pathology , Keloid/surgery , Male , Middle Aged , Severity of Illness Index , Treatment Outcome
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