Hironori Yoshiyama
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EBウイルス関連上皮性腫瘍の形成に及ぼす細胞分化と溶解感染誘導の重要性と治療応用
Open Date: 2021-04-01
Close Date: 2024-03-01
Grant: Close
ビトロ実験とビボ実験の統合的理解によるEBウイルス関連上皮性腫瘍形成過程の解明
Open Date: 2018-04-01
Close Date: 2021-03-31
Grant: Close
EBウイルスワクチン開発のための上咽頭癌地域集積性とウイルス遺伝子多型相関の研究
Open Date: 2016-04-01
Close Date: 2019-03-31
Grant: Close
Effect of H. pylori coinfection on genesis of EB virus associated gastric cancer
Open Date: 2014-04-01
Close Date: 2017-03-31
Grant: Close
Proteomic analysis and genotyping of nontuberculosis mycobacteria to investigate effects of traditional Chinese medicines against pathogenesis
Open Date: 2013-04-01
Close Date: 2017-03-31
Articles (9)
Effects of Strain Differences, Humidity Changes, and Saliva Contamination on the Inactivation of SARS-CoV-2 by Ion Irradiation
One of the methods to inactivate viruses is to denature viral proteins using released ions. However, there have been no reports detailing the effects of changes in humidity or contamination with body fluids on the inactivation of viruses. This study investigated the effects of humidity changes and saliva contamination on the efficacy of SARS-CoV-2 inactivation with ions using multiple viral strains. Virus solutions with different infectious titers were dropped onto a circular nitrocellulose membrane and irradiated with ions from 10 cm above the membrane. After the irradiation of ions for 60, 90, and 120 min, changes in viral infectious titers were measured. The effect of ions on virus inactivation under different humidity conditions was also examined using virus solutions containing 90% mixtures of saliva collected from 10 people. A decrease in viral infectivity was observed over time for all strains, but ion irradiation further accelerated the decrease in viral infectivity. Ion irradiation can inactivate all viral strains, but at 80% humidity, the effect did not appear until 90 min after irradiation. The presence of saliva protected the virus from drying and maintained infectiousness for a longer period compared with no saliva. In particular, the Omicron strain retained its infectivity titer longer than the other strains. Ion irradiation demonstrated a consistent reduction in the number of infectious viruses when compared to the control across varying levels of humidity and irradiation periods. This underscores the notable effectiveness of irradiation, even when the reduction effect is as modest as 50%, thereby emphasizing its crucial role in mitigating the rapid dissemination of SARS-CoV-2.
Year:
2024
Collaborators (7)
Hisashi Iizasa
Associate Professor
Shimane University Faculty of Medicine
Jun Nishikawa
Prof.
Yamaguchi University Graduate School of Medicine
Asuka Nanbo
Professor
Nagasaki University
Tomoharu Yasuda
Professor
Hiroshima University
Masanori Hatakeyama
University of Tokyo
Taro Takami
Yamaguchi University
Takahiro Yamasaki
Yamaguchi University Graduate School of Medicine

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