Inagaki Hiroko, Saito Akatsuki, Kaneko Chiho, Sugiyama Hironobu, Okabayashi Tamaki, Fujimoto Shouichi
M&N Collaboration Research Laboratory, Department of Medical Environment Innovation, Faculty of Medicine, University of Miyazaki, Miyazaki 889-1692, Japan.
Department of Veterinary Science, Faculty of Agriculture, University of Miyazaki, Miyazaki 889-2192, Japan.
Pathogens. 2021 Jun 15;10(6):754. doi: 10.3390/pathogens10060754.
More than 1 year has passed since social activities have been restricted due to the spread of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). More recently, novel SARS-CoV-2 variants have been spreading around the world, and there is growing concern that they may have higher transmissibility and that the protective efficacy of vaccines may be weaker against them. Immediate measures are needed to reduce human exposure to the virus. In this study, the antiviral efficacy of deep-ultraviolet light-emitting diode (DUV-LED) irradiation (280 ± 5 nm, 3.75 mW/cm) against three SARS-CoV-2 variants was evaluated. For the B.1.1.7, B.1.351, and P.1 variant strains, irradiation of the virus stocks for 1 s resulted in infectious titer reduction rates of 96.3%, 94.6%, and 91.9%, respectively, and with irradiation for 5 s, the rates increased to 99.9%, 99.9%, and 99.8%, respectively. We also tested the effect of pulsed DUV-LED irradiation (7.5 mW/cm, duty rate: 50%, frequency: 1 kHz) under the same output conditions as for continuous irradiation and found that the antiviral efficacy of pulsed and continuous irradiation was the same. These findings suggest that by further developing and optimizing the DUV-LED device to increase its output, it may be possible to instantly inactivate SARS-CoV-2 with DUV-LED irradiation.
自严重急性呼吸综合征冠状病毒2(SARS-CoV-2)传播导致社会活动受限以来,已经过去了一年多时间。最近,新型SARS-CoV-2变体在全球范围内传播,人们越来越担心它们可能具有更高的传播性,并且疫苗对它们的保护效力可能较弱。需要立即采取措施减少人类接触该病毒。在本研究中,评估了深紫外发光二极管(DUV-LED)照射(280±5 nm,3.75 mW/cm)对三种SARS-CoV-2变体的抗病毒效果。对于B.1.1.7、B.1.351和P.1变体毒株,对病毒株照射1秒导致感染滴度降低率分别为96.3%、94.6%和91.9%,照射5秒时,降低率分别升至99.9%、99.9%和99.8%。我们还在与连续照射相同的输出条件下测试了脉冲DUV-LED照射(7.5 mW/cm,占空比:50%,频率:1 kHz)的效果,发现脉冲照射和连续照射的抗病毒效果相同。这些发现表明,通过进一步开发和优化DUV-LED设备以提高其输出,有可能通过DUV-LED照射立即灭活SARS-CoV-2。