Center for Microbiology and Phage Therapy, Zewail City of Science and Technology, Giza 12578, Egypt.
Microbiology and Immunology Department, Faculty of Pharmacy, October University for Modern Sciences and Arts (MSA), Giza 11787, Egypt.
Viruses. 2023 Mar 31;15(4):912. doi: 10.3390/v15040912.
, the causative agent of several diseases in humans and animals, including salmonellosis, septicemia, typhoid fever, and fowl typhoid, poses a serious threat to global public health and food safety. Globally, reports of therapeutic failures are increasing because of the increase in bacterial antibiotic resistance. Thus, this work highlights the combined phage-antibiotic therapy as a promising approach to combating bacterial resistance. In this manner, the phage ZCSE9 was isolated, and the morphology, host infectivity, killing curve, combination with kanamycin, and genome analysis of this phage were all examined. Morphologically, phage ZCSE9 is a siphovirus with a relatively broad host range. In addition, the phage can tolerate high temperatures until 80 °C with one log reduction and a basic environment (pH 11) without a significant decline. Furthermore, the phage prevents bacterial growth in the planktonic state, according to the results of the time-killing curve. Moreover, using the phage at MOI 0.1 with kanamycin against five different serotypes reduces the required antibiotics to inhibit the growth of the bacteria. Comparative genomics and phylogenetic analysis suggested that phage ZCSE9, along with its close relatives phages vB_SenS_AG11 and wksl3, belongs to the genus . In conclusion, phage ZCSE9 and kanamycin form a robust heterologous antibacterial combination that enhances the effectiveness of a phage-only approach for combating .
, 一种能够引起人类和动物多种疾病的病原体,包括沙门氏菌病、败血症、伤寒和禽伤寒,对全球公共卫生和食品安全构成严重威胁。由于细菌对抗生素的耐药性不断增加,全球范围内治疗失败的报告越来越多。因此,这项工作强调了噬菌体-抗生素联合治疗作为一种有前途的对抗细菌耐药性的方法。在这种方式下,分离出了噬菌体 ZCSE9,并对该噬菌体的形态、宿主感染性、杀菌曲线、与卡那霉素的结合以及基因组进行了分析。形态学上,噬菌体 ZCSE9 是一种有尾噬菌体,具有相对较宽的宿主范围。此外,噬菌体可以耐受高达 80°C 的高温,对数减少,碱性环境(pH 值 11),没有明显下降。此外,根据杀菌曲线的结果,噬菌体可以防止浮游状态的细菌生长。此外,使用 MOI 为 0.1 的噬菌体和卡那霉素对五种不同血清型的 进行处理,可以减少抑制细菌生长所需的抗生素。比较基因组学和系统发育分析表明,噬菌体 ZCSE9 与其密切相关的噬菌体 vB_SenS_AG11 和 wksl3 一起属于 属。总之,噬菌体 ZCSE9 和卡那霉素形成了一种强大的异源抗菌组合,增强了噬菌体单独应用对抗 的有效性。