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Inactivation of Shiga-toxin-producing Escherichia coli, Salmonella enterica and natural microflora on tempered wheat grains by atmospheric cold plasma

机译:通过大气冷等离子体在钢模上产生滋生毒素的大肠杆菌,沙门氏菌和天然微生物的灭活

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Bacterial foodborne disease outbreaks implicating raw wheat products have focused much attention on decontaminating wheat grains used for manufacturing flour and other milled products. The present study investigated the effectiveness of atmospheric cold plasma (ACP) for destroying Shiga-toxin-producing Escherichia call, Salmonella enterica and natural microflora on tempered wheat grains. Portions (10 g) of grains were each inoculated with a 5-strain mixture of E. coli or S. enterica to obtain an initial count of similar to 7.0 log(10) CFU/g. Inoculated or non-inoculated wheat grains were sealed in plastic bags filled with atmospheric air and exposed to ACP (44 kV) dielectric barrier discharge for 0 (control), 5, 10, 15 and 20 min. Pathogen survivors were evaluated by washing wheat grains with sterile diluent, plating the wash solution on thin agar layer (TAL) media and appropriate selective (SEL) agar, and counting bacterial colonies after 48 h of incubation (35 degrees C). Non-inoculated grains were analyzed for yeast and molds, mesophiles, psychrotrophs, and Enterobacteriaceae. After 20 min, initial viable counts (log CFU/g) on TAL medium and SEL agar, respectively, decreased by 3.09 and 4.84 (for E. coli), and 4.40 and 4.32 (for S. enterica). A higher level of sub-lethal injury occurred in E. coli compared to S. enterica (P 0.05). After ACP treatment for 20 min, log CFU/g reductions of mesophiles psychrotrophs, and Enterobactericeae were 0.96, 2.14 and 1.38, respectively. In contrast, yeast and molds were totally destroyed (3.29 log CFU/g reduction) after only 10 min. ACP has good potential for killing both enteric pathogens and spoilage microorganisms on tempered wheat grains destined for the manufacture of wheat flour. Further research on the baking characteristics of flour manufactured from ACP-treated wheat grains is warranted.
机译:暗示原料麦产品的细菌食源性疾病爆发将重点关注用于制造粉末和其他研磨产品的净化麦类。本研究研究了大气冷等离子体(ACP)的有效性,用于破坏潮毒素的大肠杆菌,沙门氏菌和天然微生物在锻炼小麦籽粒上。各自的晶粒(10g)的晶粒被用大肠杆菌或S.肠的5-菌株混合物接种以获得类似于7.0对数(10)CFU / g的初始计数。在填充有大气空气的塑料袋中密封接种或非接种的小麦颗粒,暴露于ACP(44kV)介电阻挡排放0(对照),5,10,15和20分钟。通过用无菌稀释剂洗涤小麦颗粒来评估病原体幸存者,在薄琼脂层(TAL)介质(TAL)培养基(TAL)培养基上和适当的选择性(SEL)琼脂上,并在48小时孵育后计算细菌菌落(35℃)。分析非接种晶粒,用于酵母和霉菌,乳香,心理萎缩和肠杆菌薄膜。在20分钟后,分别在TAL培养基和SEL琼脂上初始活计数(Log CFU / g),减少3.09和4.84(大肠杆菌)和4.40和4.32(S. enterica)。与S.肠苷(P <0.05)相比,大肠杆菌发生了更高水平的亚致死损伤。 ACP治疗后20分钟后,MesophilessyscuroTrophes的Log CFU / g减少,肠比例分别为0.96,2.14和1.38。相比之下,只有10分钟,酵母和霉菌完全被破坏(3.29 log cfu / g还原)。 ACP有良好的潜力,可以杀死肠道病原体和腐败的微生物,并腐败用于制造小麦粉的磨光小麦粒。有关由ACP处理的小麦颗粒制造的面粉的烘焙特性的进一步研究。

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