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Efficacy and Mechanisms of Murine Norovirus Inhibition by Pulsed-Light Technology

机译:脉冲光抑制鼠诺如病毒的功效及机理

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Pulsed light is a nonthermal processing technology recognized by the FDA for killing microorganisms on food surfaces, with cumulative fluences up to 12 J cm?2. In this study, we investigated its efficacy for inactivating murine norovirus 1 (MNV-1) as a human norovirus surrogate in phosphate-buffered saline, hard water, mineral water, turbid water, and sewage treatment effluent and on food contact surfaces, including high-density polyethylene, polyvinyl chloride, and stainless steel, free or in an alginate matrix. The pulsed-light device emitted a broadband spectrum (200 to 1,000 nm) at a fluence of 0.67 J cm?2 per pulse, with 2% UV at 8 cm beneath the lamp. Reductions in viral infectivity exceeded 3 log10 in less than 3 s (5 pulses; 3.45 J cm?2) in clear suspensions and on clean surfaces, even in the presence of alginate, and in 6 s (11 pulses; 7.60 J cm?2) on fouled surfaces except for stainless steel (2.6 log10). The presence of protein or bentonite interfered with viral inactivation. Analysis of the morphology, the viral proteins, and the RNA integrity of treated MNV-1 allowed us to elucidate the mechanisms involved in the antiviral activity of pulsed light. Pulsed light appeared to disrupt MNV-1 structure and degrade viral protein and RNA. The results suggest that pulsed-light technology could provide an effective alternative means of inactivating noroviruses in wastewaters, in clear beverages, in drinking water, or on food-handling surfaces in the presence or absence of biofilms.
机译:脉冲光是FDA认可的一种非热加工技术,用于杀死食物表面的微生物,累积通量高达12 J cm ?2 。在这项研究中,我们研究了其灭活鼠诺如病毒1(MNV-1)作为人类诺如病毒替代品在磷酸盐缓冲液,硬水,矿泉水,混浊水和污水处理废水中以及在食品接触表面(包括高浓度)中的功效。 -游离或藻酸盐基质中的高密度聚乙烯,聚氯乙烯和不锈钢。脉冲光设备以每脉冲0.67 J cm ?2 的能量通量发射宽带光谱(200至1,000 nm),灯下方8 cm处有2%的紫外线。在干净的悬浮液和干净的表面上,即使存在以下情况,在不到3秒钟(5个脉冲; 3.45 J cm ?2 )内,病毒感染性的降低也超过了3 log 10 。藻酸盐,并在6秒内(11个脉冲; 7.60 J cm ?2 )在除不锈钢(2.6 log 10 )以外的脏污表面上。蛋白质或膨润土的存在会干扰病毒的灭活。对形态,病毒蛋白和已处理的MNV-1的RNA完整性的分析使我们能够阐明与脉冲光的抗病毒活性有关的机制。脉冲光似乎破坏了MNV-1的结构并降解了病毒蛋白和RNA。结果表明,脉冲光技术可以为存在,不存在生物膜的情况下的废水,透明饮料,饮用水或食品处理表面上的诺如病毒灭活提供有效的替代方法。

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