Yan Pianpian, Chelliah Ramachandran, Jo Kyoung-Hee, Selvakumar Vijayalakshmi, Chen Xiuqin, Jo Hyeon-Yeong, Oh Deog Hwan
Department of Food Science and Biotechnology, College of Agriculture and Life Sciences, Kangwon National University, Chuncheon, South Korea.
SeouLin Bioscience Company and Limited, Seongnam-si, South Korea.
Front Microbiol. 2022 May 12;13:865918. doi: 10.3389/fmicb.2022.865918. eCollection 2022.
In the natural environment, most microorganisms live in mixed-species biofilms, in which the metabolism and growth of organisms are different from that in single-species biofilms. Adhesive bacteria and their biofilms on the surface of food processing equipment are the sources of cross-contamination, leading to the risk for humans. Slightly acidic electrolyzed water (SAEW) has been proposed as a novel sanitizer in the food and agriculture industry. In this study, we investigated the changes in the physical properties of SAEW under different conditions and the disinfection abilities of SAEW against spore-forming and non-spore-forming pathogens. Furthermore, we examined the disinfection abilities of SAEW after 12 months of shelf life on a mixed-species biofilm of Scott A and . The results showed that SAEW at 30 and 50 ppm achieved all-kill of the spore-forming pathogen within 30 s. Changes in the ACC and pH of the produced SAEW were generally affected by the storage conditions. Both spore-forming and non-spore-forming pathogens were not detected under treatment with 50 ppm SAEW for 5 min under HDPE-closed conditions throughout the whole storage period. Moreover, 25 mg/L SAEW can inactivate Scott A and biofilm cells in ~2.45 and 2.57 log CFU/mL in biofilms within 5-min treatment. However, the decline of the two bacteria in the mixed-species biofilm was 1.95 and 1.43 log CFU/mL, respectively. The changes in the cell membrane permeability of the mixed-species biofilm under treatment with SAEW were observed by using atomic force microscopy and confocal laser scanning microscopy. Scott A was more sensitive to SAEW in the mixed-species biofilm cells. These findings exhibited strong antibiofilm activities of SAEW in impairing biofilm cell membranes, decreasing cell density, and eliminating biofilm, which suggest that SAEW is an excellent antibacterial agent in the food processing industries.
在自然环境中,大多数微生物生活在混合物种生物膜中,其中生物的代谢和生长与单物种生物膜中的情况不同。食品加工设备表面的黏附细菌及其生物膜是交叉污染的来源,对人类构成风险。微酸性电解水(SAEW)已被提议作为食品和农业行业中的一种新型消毒剂。在本研究中,我们调查了不同条件下SAEW的物理性质变化以及SAEW对产孢和不产孢病原体的消毒能力。此外,我们还检测了SAEW在保质期12个月后对斯科特A和(此处原文不完整)混合物种生物膜的消毒能力。结果表明,30 ppm和50 ppm的SAEW在30秒内可实现对产孢病原体的全杀灭。所产生的SAEW的ACC和pH变化通常受储存条件影响。在整个储存期内,在高密度聚乙烯封闭条件下,用50 ppm SAEW处理5分钟后,未检测到产孢和不产孢病原体。此外,25 mg/L的SAEW在5分钟处理内可使生物膜中的斯科特A和(此处原文不完整)生物膜细胞分别失活约2.45和2.57 log CFU/mL。然而,混合物种生物膜中这两种细菌的数量分别下降了1.95和1.43 log CFU/mL。通过原子力显微镜和共聚焦激光扫描显微镜观察了SAEW处理下混合物种生物膜的细胞膜通透性变化。在混合物种生物膜细胞中,斯科特A对SAEW更敏感。这些发现表明SAEW在损害生物膜细胞膜、降低细胞密度和消除生物膜方面具有很强的抗生物膜活性,这表明SAEW是食品加工行业中一种优秀的抗菌剂。