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Atmospheric Cold Plasma Inactivation of Salmonella and Escherichia coli on the Surface of Golden Delicious Apples

机译:美味金苹果表面沙门氏菌和大肠杆菌的大气冷血浆灭活

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摘要

The contamination of fruits with human pathogens is a reoccurring concern in the fresh produce industry. Atmospheric cold plasma (ACP) is a potential alternate to customary approaches for non-thermal decontamination of foods. In this study, the efficacy of a dielectric barrier discharge ACP system against Salmonella (Salmonella Typhimurium, ATCC 13311; Salmonella Choleraesuis, ATCC 10708) and Escherichia coli (ATCC 25922, ATCC 11775) was explored. For each bacteria, a two-strain mixture at 8 log10 CFU/ml was spot inoculated on the surface of Golden Delicious apples, air dried, and exposed to ACP at a fixed distance of 35 mm, input power of 200 W for 30, 60, 120, 180, and 240 s. Bacterial inactivation was achieved in all treatment times with highest reduction of 5.3 log10 CFU/cm2 for Salmonella and 5.5 log10 CFU/cm2 for E. coli. Our results showed that reductions were interrelated to exposure time and ranged from 1.3 to 5.3 and 0.6 to 5.5 log10 CFU/cm2 for Salmonella and E. coli, respectively. Salmonella and E. coli significantly decreased (>5.0 log) at 180 and 240 s as compared to 30, 60, and 120 s exposure. Microbial inactivation data was modeled by using Weibull distribution. These findings demonstrate the potential of ACP as a postharvest technology to effectively reduce pathogens on apples, with reference to Salmonella and E. coli.
机译:水果被人类病原体污染在新鲜农产品行业中屡见不鲜。大气冷等离子体(ACP)是食品非热净化常规方法的潜在替代方法。在这项研究中,探索了介电势垒放电ACP系统对沙门氏菌(鼠伤寒沙门氏菌,ATCC 13311;霍乱沙门氏菌,ATCC 10708)和大肠杆菌(ATCC 25922,ATCC 11775)的功效。对于每种细菌,将两种菌株的8 log10 CFU / ml的混合物点样接种在Golden Delicious苹果的表面上,风干,并以35 mm的固定距离暴露于ACP,200 W的输入功率持续30、60 ,120、180和240秒。在所有处理时间内均实现了细菌灭活,沙门氏菌的最大降低量为5.3 log10 CFU / cm 2 ,大肠杆菌的最大降低量为5.5 log10 CFU / cm 2 。我们的结果表明,沙门氏菌和大肠杆菌的减少与暴露时间相关,分别为1.3至5.3 log10 CFU / cm 2 。与30、60和120 s的暴露时间相比,沙门氏菌和大肠杆菌在180和240 s时显着减少(> 5.0 log)。微生物灭活数据通过使用威布尔分布建模。这些发现表明,相对于沙门氏菌和大肠杆菌,ACP作为一种有效地减少苹果病原体的收获后技术的潜力。

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