College of Food Science and Biology, Hebei University of Science and Technology, No. 26 Yuxiang Street, Shijiazhuang, Hebei 050018, China.
College of Food Science and Biology, Hebei University of Science and Technology, No. 26 Yuxiang Street, Shijiazhuang, Hebei 050018, China.
J Proteomics. 2023 Aug 30;286:104952. doi: 10.1016/j.jprot.2023.104952. Epub 2023 Jun 29.
Acidic electrolyzed water is a relatively mature bactericide, which has a certain inhibitory effect on a variety of microorganisms, and is widely used in the field of food processing for cleaning, sterilization and disinfection. This study investigated the deactivation mechanisms of Listeria monocytogenes by Tandem Mass Tags quantitative proteomics analysis. Samples were treated through AS (Alkaline electrolytic water treatment for 1 min and Acid electrolytic water treatment for 4 min), SAS (Acid electrolyzed water treatment 3 min, Alkaline electrolyzed water treatment 1 min and Acid electrolyzed water treatment 1 min), S (Acid electrolytic water treatment for 5 min). Proteomic analysis showed that the mechanism of acid alkaline electrolyzed water treatment to eliminate the inactivation of the biofilm of L. monocytogenes was related to protein transcription and extension, RNA processing and synthesis, gene regulation, sugar and amino acid transport and metabolism, signal transduction and ATP binding. The study on the influence mechanism and action mechanism of the combination of acidic and alkaline electrolyzed water to remove L. monocytogenes biofilm is helpful to understand the development of the process of removing biofilm by electrolyzed water, and provides theoretical support for the treatment of other microbial contamination problems in food processing by electrolyzed water.
酸性电解水是一种相对成熟的杀菌剂,对多种微生物具有一定的抑制作用,广泛应用于食品加工领域的清洗、消毒和杀菌。本研究采用串联质谱标签定量蛋白质组学分析方法研究了李斯特菌的失活动力学。样品经过 AS(碱性电解水处理 1 分钟,酸性电解水处理 4 分钟)、SAS(酸性电解水处理 3 分钟,碱性电解水处理 1 分钟,酸性电解水处理 1 分钟)、S(酸性电解水处理 5 分钟)处理。蛋白质组学分析表明,酸碱电解水处理消除李斯特菌生物膜失活的机制与蛋白质转录和延伸、RNA 加工和合成、基因调控、糖和氨基酸的运输和代谢、信号转导和 ATP 结合有关。研究酸碱电解水联合去除李斯特菌生物膜的影响机制和作用机制,有助于了解电解水去除生物膜的过程发展,为电解水在食品加工中处理其他微生物污染问题提供理论支持。