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Evaluation of Environmental Stability and Disinfectant Effectiveness for Human Coronavirus OC43 on Human Skin Surface

The environmental stability of human coronavirus OC43 (HCoV-OC43) on the surface of human skin and the effectiveness of disinfectant against HCoV-OC43, which are important to prevent contact transmission, have not been clarified in previous studies. Using previously generated models, we evaluated HC...

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Autores principales: Watanabe, Naoto, Hirose, Ryohei, Yamauchi, Katsuma, Miyazaki, Hajime, Bandou, Risa, Yoshida, Takuma, Doi, Toshifumi, Inoue, Ken, Dohi, Osamu, Yoshida, Naohisa, Uchiyama, Kazuhiko, Ishikawa, Takeshi, Takagi, Tomohisa, Konishi, Hideyuki, Ikegaya, Hiroshi, Nakaya, Takaaki, Itoh, Yoshito
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10100891/
https://www.ncbi.nlm.nih.gov/pubmed/36840603
http://dx.doi.org/10.1128/spectrum.02381-22
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author Watanabe, Naoto
Hirose, Ryohei
Yamauchi, Katsuma
Miyazaki, Hajime
Bandou, Risa
Yoshida, Takuma
Doi, Toshifumi
Inoue, Ken
Dohi, Osamu
Yoshida, Naohisa
Uchiyama, Kazuhiko
Ishikawa, Takeshi
Takagi, Tomohisa
Konishi, Hideyuki
Ikegaya, Hiroshi
Nakaya, Takaaki
Itoh, Yoshito
author_facet Watanabe, Naoto
Hirose, Ryohei
Yamauchi, Katsuma
Miyazaki, Hajime
Bandou, Risa
Yoshida, Takuma
Doi, Toshifumi
Inoue, Ken
Dohi, Osamu
Yoshida, Naohisa
Uchiyama, Kazuhiko
Ishikawa, Takeshi
Takagi, Tomohisa
Konishi, Hideyuki
Ikegaya, Hiroshi
Nakaya, Takaaki
Itoh, Yoshito
author_sort Watanabe, Naoto
collection PubMed
description The environmental stability of human coronavirus OC43 (HCoV-OC43) on the surface of human skin and the effectiveness of disinfectant against HCoV-OC43, which are important to prevent contact transmission, have not been clarified in previous studies. Using previously generated models, we evaluated HCoV-OC43 stability and disinfection effectiveness. Then we compared the results with those for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). The median survival time of HCoV-OC43 on the surface of human skin was 24.6 h (95% confidence interval, 19.7 to 29.6 h), which was higher than that of SARS-CoV-2 (10.8 h). Although the in vitro disinfectant effectiveness evaluation showed that HCoV-OC43 has a higher ethanol resistance than SARS-CoV-2, HCoV-OC43 on the skin surface was completely inactivated by a minimum of 50% ethanol within 5 s (the log reduction values were >4.0). Moreover, 1.0% chlorhexidine gluconate and 0.2% benzalkonium chloride showed relatively high disinfectant effectiveness, and the log reduction values when these disinfectants were applied for 15 s were >3.0. HCoV-OC43 is highly stable on the skin surface, which may increase the risk of contact transmission. Although HCoV-OC43 has relatively high ethanol resistance, appropriate hand hygiene practices with current alcohol-based disinfectants sufficiently reduce the risk of contact transmission. IMPORTANCE This study revealed the environmental stability of HCoV-OC43 and disinfectant effectiveness against HCoV-OC43, which had not been demonstrated in previous studies. HCoV-OC43 is highly stable on the surface of human skin, with a survival time of approximately 25 h. High stability of HCoV-OC43 may increase the risk of contact transmission. Furthermore, the in vitro disinfectant effectiveness evaluation showed that HCoV-OC43, which is classified as an envelope virus, has a relatively high ethanol resistance. This finding suggests that disinfectant effectiveness may vary greatly depending on the virus and that each virus targeted for infection control should be evaluated individually. HCoV-OC43 on the skin surface was rapidly inactivated by 50% ethanol, which suggests that appropriate hand hygiene practices with current alcohol-based disinfectants can sufficiently reduce the risk of HCoV-OC43 contact transmission.
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spelling pubmed-101008912023-04-14 Evaluation of Environmental Stability and Disinfectant Effectiveness for Human Coronavirus OC43 on Human Skin Surface Watanabe, Naoto Hirose, Ryohei Yamauchi, Katsuma Miyazaki, Hajime Bandou, Risa Yoshida, Takuma Doi, Toshifumi Inoue, Ken Dohi, Osamu Yoshida, Naohisa Uchiyama, Kazuhiko Ishikawa, Takeshi Takagi, Tomohisa Konishi, Hideyuki Ikegaya, Hiroshi Nakaya, Takaaki Itoh, Yoshito Microbiol Spectr Research Article The environmental stability of human coronavirus OC43 (HCoV-OC43) on the surface of human skin and the effectiveness of disinfectant against HCoV-OC43, which are important to prevent contact transmission, have not been clarified in previous studies. Using previously generated models, we evaluated HCoV-OC43 stability and disinfection effectiveness. Then we compared the results with those for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). The median survival time of HCoV-OC43 on the surface of human skin was 24.6 h (95% confidence interval, 19.7 to 29.6 h), which was higher than that of SARS-CoV-2 (10.8 h). Although the in vitro disinfectant effectiveness evaluation showed that HCoV-OC43 has a higher ethanol resistance than SARS-CoV-2, HCoV-OC43 on the skin surface was completely inactivated by a minimum of 50% ethanol within 5 s (the log reduction values were >4.0). Moreover, 1.0% chlorhexidine gluconate and 0.2% benzalkonium chloride showed relatively high disinfectant effectiveness, and the log reduction values when these disinfectants were applied for 15 s were >3.0. HCoV-OC43 is highly stable on the skin surface, which may increase the risk of contact transmission. Although HCoV-OC43 has relatively high ethanol resistance, appropriate hand hygiene practices with current alcohol-based disinfectants sufficiently reduce the risk of contact transmission. IMPORTANCE This study revealed the environmental stability of HCoV-OC43 and disinfectant effectiveness against HCoV-OC43, which had not been demonstrated in previous studies. HCoV-OC43 is highly stable on the surface of human skin, with a survival time of approximately 25 h. High stability of HCoV-OC43 may increase the risk of contact transmission. Furthermore, the in vitro disinfectant effectiveness evaluation showed that HCoV-OC43, which is classified as an envelope virus, has a relatively high ethanol resistance. This finding suggests that disinfectant effectiveness may vary greatly depending on the virus and that each virus targeted for infection control should be evaluated individually. HCoV-OC43 on the skin surface was rapidly inactivated by 50% ethanol, which suggests that appropriate hand hygiene practices with current alcohol-based disinfectants can sufficiently reduce the risk of HCoV-OC43 contact transmission. American Society for Microbiology 2023-02-22 /pmc/articles/PMC10100891/ /pubmed/36840603 http://dx.doi.org/10.1128/spectrum.02381-22 Text en Copyright © 2023 Watanabe et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Watanabe, Naoto
Hirose, Ryohei
Yamauchi, Katsuma
Miyazaki, Hajime
Bandou, Risa
Yoshida, Takuma
Doi, Toshifumi
Inoue, Ken
Dohi, Osamu
Yoshida, Naohisa
Uchiyama, Kazuhiko
Ishikawa, Takeshi
Takagi, Tomohisa
Konishi, Hideyuki
Ikegaya, Hiroshi
Nakaya, Takaaki
Itoh, Yoshito
Evaluation of Environmental Stability and Disinfectant Effectiveness for Human Coronavirus OC43 on Human Skin Surface
title Evaluation of Environmental Stability and Disinfectant Effectiveness for Human Coronavirus OC43 on Human Skin Surface
title_full Evaluation of Environmental Stability and Disinfectant Effectiveness for Human Coronavirus OC43 on Human Skin Surface
title_fullStr Evaluation of Environmental Stability and Disinfectant Effectiveness for Human Coronavirus OC43 on Human Skin Surface
title_full_unstemmed Evaluation of Environmental Stability and Disinfectant Effectiveness for Human Coronavirus OC43 on Human Skin Surface
title_short Evaluation of Environmental Stability and Disinfectant Effectiveness for Human Coronavirus OC43 on Human Skin Surface
title_sort evaluation of environmental stability and disinfectant effectiveness for human coronavirus oc43 on human skin surface
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10100891/
https://www.ncbi.nlm.nih.gov/pubmed/36840603
http://dx.doi.org/10.1128/spectrum.02381-22
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