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Analysis of the inactivation mechanism of bacteriophage by Atmospheric barrier discharge

机译:大气屏障放电噬菌体灭活机制分析

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The inactivation mechanism of virus and bacteria by atmospheric discharge plasma has been studied actively. However, predominant factors in the inactivation are not clear at all. Because the atmospheric discharge plasma includes a lot of possible inactivation factors such as active oxygen species, ozone and ultraviolet rays, it is difficult to analyze each effect separately. In this study, bacteriophage lambda was used as the simplest model biological samples to analyze the inactivation mechanism by atmospheric discharge plasma. When bacteriophage having only DNA and coat proteins is inactivated by DBD, damage should exist on DNA or coat proteins. In the experiment using bacteriophage, it is able to extract DNA from the bacteriophage so that the damaged coat proteins can be removed to avoid the effect of the proteins. And, DNA which is extracted from plasma-inactivated phage can be assayed its plaque forming activity. Using this assay, the damages on DNA and coat proteins have been determined separately. The results show that inactivation of lambda phage by atmospheric DBD was attributed to the damage mainly of coat protein. The damage of lambda DNA was negligible in the early stage of the inactivation.
机译:主动研究了气体排出等离子体病毒和细菌的灭活机制。然而,灭活中的主要因素根本不明确。因为大气排出等离子体包括许多可能的灭活因子,例如活性氧物种,臭氧和紫外线,因此难以分别分析各自的效果。在本研究中,噬菌体λ被用作最简单的模型生物样品,以通过大气排出等离子体分析灭活机制。当通过DBD灭活具有DNA和外壳蛋白质的噬菌体时,DNA或涂层蛋白质应存在损伤。在使用噬菌体的实验中,它能够从噬菌体中提取DNA,以便除去受损的涂层蛋白以避免蛋白质的效果。并且,从等离子体灭活噬菌体中提取的DNA可以测定其斑块形成活性。使用该测定,已分别确定DNA和涂层蛋白的损伤。结果表明,大气DBD的λ噬菌体灭活归因于外套蛋白的损伤。在灭活的早期阶段的损伤是可以忽略不计的。

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