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Resistance of L. monocytogenes and S. Typhimurium towards Cold Atmospheric Plasma as Function of Biofilm Age

机译:单核细胞增生李斯特菌和鼠伤寒沙门氏菌对冷大气血浆的抗性与生物膜年龄的关系

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The biofilm mode of growth protects bacterial cells against currently applied disinfection methods for abiotic (food) contact surfaces. Therefore, innovative methods, such as Cold Atmospheric Plasma (CAP), should be investigated for biofilm inactivation. However, more knowledge is required concerning the influence of the biofilm age on the inactivation efficacy in order to comment on a possible application of CAP in the (food) processing industry. L. monocytogenes and S. Typhimurium biofilms with five different ages (i.e., 1, 2, 3, 7, and 10 days) were developed. For the untreated biofilms, the total biofilm mass and the cell density were determined. To investigate the biofilm resistance towards CAP treatment, biofilms with different ages were treated for 10 min and the remaining cell density was determined. Finally, for the one-day old reference biofilms and the most resistant biofilm age, complete inactivation curves were developed to examine the influence of the biofilm age on the inactivation kinetics. For L. monocytogenes , an increased biofilm age resulted in (i) an increased biomass, (ii) a decreased cell density prior to CAP treatment, and (iii) an increased resistance towards CAP treatment. For S. Typhimurium, similar results were obtained, except for the biomass, which was here independent of the biofilm age.
机译:生物膜的生长方式可以保护细菌细胞免受目前应用的非生物(食品)接触表面消毒方法的侵害。因此,应研究诸如冷大气等离子体(CAP)等创新方法来灭活生物膜。然而,需要更多的关于生物膜年龄对灭活功效的影响的知识,以便评论CAP在(食品)加工工业中的可能应用。已开发出具有五个不同年龄(即1、2、3、7和10天)的单核细胞增生李斯特菌和鼠伤寒沙门氏菌生物膜。对于未处理的生物膜,确定了总生物膜质量和细胞密度。为了研究生物膜对CAP处理的抵抗力,将不同年龄的生物膜处理10分钟,然后确定剩余的细胞密度。最后,对于一天之久的参考生物膜和最具抵抗力的生物膜年龄,制定了完整的灭活曲线以检查生物膜年龄对灭活动力学的影响。对于单核细胞增生李斯特菌,生物膜年龄的增加导致(i)生物量增加,(ii)CAP治疗前细胞密度降低,以及(iii)对CAP治疗的抵抗力增加。对于鼠伤寒沙门氏菌,除生物量外,获得了相似的结果,在此生物量与生物膜的年龄无关。

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