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首页> 外文期刊>npj Science of Food >Cetylpyridinium chloride produces increased zeta-potential on Salmonella Typhimurium cells, a mechanism of the pathogen’s inactivation
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Cetylpyridinium chloride produces increased zeta-potential on Salmonella Typhimurium cells, a mechanism of the pathogen’s inactivation

机译:氯化甲苯吡啶鎓氯化物在沙门氏菌细胞上产生增加的Zeta潜力,该机制灭活的机制

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Cetylpyridinium chloride (CPC) is a quaternary ammonium sanitizer approved for fresh poultry animal carcass sanitization from microbial human pathogens, such as Salmonella enterica. Nonetheless, the interactions of CPC with Salmonella cells, and the mechanism of the sanitizer's neutralization by lecithin remains largely unknown. This study aimed to investigate the interaction of CPC with lecithin and Salmonella Typhimurium to determine the interactions of the sanitizer and neutralizer impacting the bacterium's survival. Application of 0.8% CPC is proposed to produce loss of microbial membrane integrity with loss of electrostatic repulsion between individual cells, resulting in the eventual emulsification of membrane lipids with cytoplasmic contents leakage. Our findings point to a two-phase interaction between CPC and lecithin impacting S. Typhimurium survival. The first consists of electrostatic attraction and charge neutralization between oppositely charged components of pathogen cell and CPC. The second involves formation of aggregates between sanitizer and pathogen, or between sanitizer, pathogen membrane lipids, and lecithin.? The Author(s) 2019.
机译:氯吡啶氯化氯吡啶(CPC)是一种季铵洗手液,用于从微生物人类病原体如沙门氏菌的新鲜家禽动物胴体待遇。尽管如此,CPC与沙门氏菌细胞的相互作用,并通过卵磷脂中和消毒剂的中和的机制仍然很大程度上。本研究旨在探讨CPC与卵磷脂和沙门氏菌的相互作用,以确定消毒剂和中和剂影响细菌存活的相互作用。提出了0.8%CPC的应用,以产生微生物膜完整性,在各个细胞之间的静电排斥损失,导致具有细胞质含量泄漏的膜脂质的最终乳化。我们的发现指出了CPC与卵磷脂影响的两相互作用,影响S. Typhimurium生存。首先由静电吸引和电荷中和在病原体细胞和CPC的相反电荷组分之间组成。第二个涉及在消毒剂和病原体之间形成聚集体,或在消毒剂,病原体膜脂质和卵磷脂之间形成。作者2019年。

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