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Interaction of Atmospheric-Pressure Air Microplasmas with Amino Acids as Fundamental Processes in Aqueous Solution

机译:大气压空气血浆与氨基酸的相互作用作为水溶液中的基本过程

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摘要

Plasma medicine is a relatively new field that investigates potential applications of cold atmospheric-pressure plasmas in bioengineering, such as for bacterial inactivation and degradation of organic molecules in water. In order to enunciate mechanisms of bacterial inactivation at molecular or atomic levels, we investigated the interaction of atmospheric-pressure air microplasmas with amino acids in aqueous solution by using high-resolution mass spectrometry (HRMS). Results show that the oxidation effect of plasma-induced species on the side chains of the amino acids can be categorized into four types, namely hydroxylation, nitration, dehydrogenation and dimerization. In addition, relative activities of amino acids resulting from plasma treatment come in descending order as follows: sulfur-containing carbon-chain amino acids > aromatic amino acids > five-membered ring amino acids > basic carbon-chain amino acids. Since amino acids are building blocks of proteins vital to the growth and reproduction of bacteria, these results provide an insight into the mechanism of bacterial inactivation by plasma.
机译:等离子体医学是一个相对较新的领域,研究冷大气压等离子体在生物工程中的潜在应用,例如用于细菌灭活和水中有机分子的降解。为了阐明在分子或原子水平上细菌灭活的机制,我们使用高分辨率质谱法(HRMS)研究了大气压空气微等离子体与水溶液中氨基酸的相互作用。结果表明,血浆诱导的物种对氨基酸侧链的氧化作用可分为羟基化,硝化,脱氢和二聚化四种类型。此外,等离子体处理产生的氨基酸的相对活性按降序排列如下:含硫碳链氨基酸>芳香族氨基酸>五元环氨基酸>碱性碳链氨基酸。由于氨基酸是对细菌的生长和繁殖至关重要的蛋白质的基本组成部分,因此这些结果提供了对血浆细菌灭活机制的了解。

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