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一种新型的针对临床粪肠球菌和屎肠球菌的耐热性裂解噬菌体vB_EF_Enf3_CCASU-2024-3。

A novel thermostable lytic phage vB_EF_Enf3_CCASU-2024-3 against clinical Enterococcus faecium and Enterococcus faecalis.

作者信息

Amr Rana M, Bishr Amr S, Saad Bishoy T, Alshahrani Mohammad Y, Aboshanab Khaled M, Hassouna Nadia A

机构信息

Department of Microbiology and Immunology, Faculty of Pharmacy, Ain Shams University, Cairo, 11566, Egypt.

Department of Bioinformatics, HITS Solutions Co, Cairo, 11765, Egypt.

出版信息

AMB Express. 2025 Apr 26;15(1):65. doi: 10.1186/s13568-025-01871-z.

Abstract

Enterococci, Gram-positive bacteria, have become a major concern in healthcare settings due to their significant virulence and antibiotic resistance. This research focuses on isolating, phenotypic, and genotypic analysis of enterococci-specific lytic phages to be used as potential candidates in combating multidrug-resistant (MDR) Enterococcus clinical isolates. The virulence of Enterococcus isolates was analyzed by testing for gelatinase and biofilm formation. The phage(s) was isolated from a sewage sample, then purified, propagated, and physiochemically analyzed. The phage was examined using transmission electron microscopy, and the whole genome sequence (WGS) was performed. Sixety-five clinical enterococci including, 27 (41.5%), 33 (50.7%) 3 (4.6%), and 2 (3%) E. faecalis, E. faecium, E. avium, and E. durans, respectively were isolated. Linezolid, teicoplanin, chloramphenicol, and vancomycin exhibited the lowest resistance. Twenty-five (38.5%) isolates were both gelatinase- and biofilm-producers. A novel lytic vB_EF_Enf3 phage belonging to Caudoviricetes class, characterized by an icosahedral head with a diameter of 100 ± 5 nm and a tail measuring 70 ± 5 nm in length was isolated. The phage demonstrated good thermal stability, and viability across various pH levels and exhibited a broad- spectrum of activity against E. faecium and E. faecalis. The vB_EF_Enf3 phage (36,202 bp length) harbored 36 open reading frames (ORFs) with a GC content of 34.4% (GenBank accession, PP747318). In conclusion, a novel thermostable lytic bacteriophage vB_EF_Enf3, belonging to class Caudoviricetes, was isolated from sewage showing broad-spectrum potent lytic activity against E. faecium and E. faecalis and maintained stability under various extreme conditions, including temperature, and pH fluctuations.

摘要

肠球菌是革兰氏阳性菌,由于其显著的毒力和抗生素耐药性,已成为医疗环境中的主要关注点。本研究着重于对肠球菌特异性裂解噬菌体进行分离、表型和基因型分析,以用作对抗多重耐药(MDR)肠球菌临床分离株的潜在候选物。通过检测明胶酶和生物膜形成来分析肠球菌分离株的毒力。从污水样本中分离出噬菌体,然后进行纯化、增殖并进行物理化学分析。使用透射电子显微镜检查该噬菌体,并进行全基因组测序(WGS)。共分离出65株临床肠球菌,其中粪肠球菌27株(41.5%)、屎肠球菌33株(50.7%)、鸟肠球菌3株(4.6%)和耐久肠球菌2株(3%)。利奈唑胺、替考拉宁、氯霉素和万古霉素的耐药率最低。25株(38.5%)分离株同时产生明胶酶和生物膜。分离出一种新型裂解性vB_EF_Enf3噬菌体,属于有尾噬菌体目,其特征为具有直径100±5nm的二十面体头部和长度为70±5nm的尾部。该噬菌体表现出良好的热稳定性,在不同pH水平下均具有活性,并且对屎肠球菌和粪肠球菌表现出广谱活性。vB_EF_Enf3噬菌体(长度为36,202bp)含有36个开放阅读框(ORF),GC含量为34.4%(GenBank登录号,PP747318)。总之,从污水中分离出一种新型的耐热裂解性噬菌体vB_EF_Enf3,属于有尾噬菌体目,对屎肠球菌和粪肠球菌具有广谱强效裂解活性,并且在包括温度和pH波动在内的各种极端条件下均保持稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e46/12033158/2a4fe150b433/13568_2025_1871_Fig1_HTML.jpg

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