Department of Biotechnology, Faculty of Engineering and Industrial Technology, Silpakorn University, Nakhon Pathom, Thailand.
J Appl Microbiol. 2020 Aug;129(2):266-277. doi: 10.1111/jam.14617. Epub 2020 Mar 11.
The aims of this study were to isolate and characterize novel Salmonella phages and to evaluate the effectiveness of phage cocktails used as antibacterial agents in dishwashing materials.
The effective phages, vB_STy-RN5i1 and vB_STy-RN29, were isolated from drain water samples collected from open markets using Salmonella Typhimurium as the host strain. These phages were identified as members of Podoviridae and Siphoviridae, respectively. Both phages infected at least six Salmonella serovars and rapidly lysed their host within one hour. They were stable at 4-45°C and at pH 6-9 for at least an hour while being evaluated in this study. The phage application results indicated that bacterial cells were reduced by 3⋅1 and 2⋅7 log CFU per ml at room temperature when they encountered the phage cocktail on scouring pads (SPs) and dishwashing sponges (DSs), respectively.
The isolated Salmonella phages, vB_STy-RN5i1 and vB_STy-RN29, had potential against Salm. Typhimurium and could reduce the occurrence of bacterial-cross-contamination from dishwashing materials, which have been reported to be a source of bacteria, to other kitchen utensils and food.
The successful reduction of bacterial contamination in dishwashing materials by the phage cocktail consisting of vB_STy-RN5i1 and vB_STy-RN29 reveals its potential to be an alternative antimicrobial agent for SPs and DSs.
本研究旨在分离和鉴定新型沙门氏菌噬菌体,并评估噬菌体鸡尾酒作为洗碗材料中抗菌剂的有效性。
使用鼠伤寒沙门氏菌作为宿主菌,从开放市场的排水水样中分离出有效的噬菌体 vB_STy-RN5i1 和 vB_STy-RN29,它们分别属于肌尾噬菌体科和长尾噬菌体科。这两种噬菌体可以感染至少六种沙门氏菌血清型,在一小时内迅速裂解其宿主菌。在本研究中,它们在 4-45°C 和 pH 值 6-9 下至少稳定 1 小时。噬菌体应用结果表明,当在擦洗垫(SP)和洗碗海绵(DS)上遇到噬菌体鸡尾酒时,细菌细胞分别减少了 3.1 和 2.7 个对数 CFU/ml。
分离到的沙门氏菌噬菌体 vB_STy-RN5i1 和 vB_STy-RN29 对鼠伤寒沙门氏菌具有潜在的作用,并且可以减少洗碗材料中细菌交叉污染的发生,这些材料已被报道为细菌的来源,会对其他厨房用具和食物造成污染。
噬菌体鸡尾酒由 vB_STy-RN5i1 和 vB_STy-RN29 组成,可以成功降低洗碗材料中的细菌污染,这表明它有潜力成为 SP 和 DS 的替代抗菌剂。