Inactivation pathways of <i>Escherichia coli</i> and <i>Staphylococcus aureus</i> induced by transient spark discharge in liquids
Aleksandra Lavrikova, Nitin Chandra Teja Dadi, Helena Bujdáková, Karol Hensel
Abstract
Abstract Cold plasma finds considerable interest in biodecontamination. A major issue is to elucidate the pathways of plasma–bacteria interaction. The present work aims at studying inactivation mechanisms for planktonic bacteria Escherichia coli and Staphylococcus aureus induced by cold plasma generated by a transient spark discharge. Changes in bacterial viability, metabolic activity, membrane integrity, intracellular reactive oxygen species level, and cell morphology reveal different patterns of cellular damage of the bacteria. Our results emphasize the importance of cell membrane integrity and maintenance of intracellular redox balatnce to resist plasma treatment. The physicochemical properties of the plasma‐treated liquid (PTL) are monitored. Acidification and accumulation of various reactive species including •OH, H 2 O 2 , ONOOH, and NO 3 − in PTL play crucial roles in bacterial inactivation.