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一种裂解性噬菌体vB_SurP-PSU3的特性鉴定及其对生物膜的作用效果

Characterization of a Lytic Bacteriophage vB_SurP-PSU3 Infecting and Its Efficacy Against Biofilm.

作者信息

Kwon Hyemin, Park Seon Young, Kim Min-Soo, Kim Sang Guen, Park Se Chang, Kim Ji Hyung

机构信息

Department of Microbiology and Molecular Biology, College of Bioscience and Biotechnology, Chungnam National University, Daejeon, South Korea.

Infectious Disease Research Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, South Korea.

出版信息

Front Microbiol. 2022 Jul 18;13:925866. doi: 10.3389/fmicb.2022.925866. eCollection 2022.

Abstract

In response to the increasing nosocomial infections caused by antimicrobial-resistant coagulase-negative staphylococci (CoNS), bacteriophages (phages) have emerged as an alternative to antibiotics. , one of the representative species of the CoNS, is now considered a notable pathogen that causes nosocomial bloodstream infections, and its biofilm-forming ability increases pathogenicity and resistance to antimicrobial agents. In this study, a lytic phage infecting was newly isolated from wastewater collected from a sewage treatment plant and its biological and antimicrobial characteristics are described. The isolated phage, named vB_SurP-PSU3, was morphologically similar to and could simultaneously lyse some strains used in this study. The sequenced genome of the phage consisted of linear dsDNA with 18,146 bp and genome-based phylogeny revealed that vB_SurP-PSU3 belonged to the genus . Although its overall genomic arrangement and contents were similar to those of other members of the , the predicted endolysin of vB_SurP-PSU3 distinctly differed from the other members of the genus. The bacteriolytic activity of vB_SurP-PSU3 was evaluated using ATCC 49330, and the phage could efficiently inhibit the planktonic growth of the bacteria. Moreover, the anti-biofilm analysis showed that vB_SurP-PSU3 could prevent the formation of bacterial biofilm and degrade the mature biofilm . In an additional cytotoxicity assay of vB_SurP-PSU3, no significant adverse effects were observed on the tested cell. Based on these findings, the newly isolated phage vB_SurP-PSU3 could be classified as a new member of and could be considered an alternative potential biocontrol agent against infections and its biofilm.

摘要

为应对由耐抗菌药物的凝固酶阴性葡萄球菌(CoNS)引起的医院感染不断增加的情况,噬菌体已成为抗生素的一种替代物。CoNS的代表性菌种之一,目前被认为是引起医院血流感染的重要病原体,其形成生物膜的能力增加了致病性和对抗菌剂的耐药性。在本研究中,从污水处理厂收集的废水中新分离出一种感染该菌的裂解性噬菌体,并描述了其生物学和抗菌特性。分离出的噬菌体命名为vB_SurP-PSU3,其形态与该菌相似,并且可以同时裂解本研究中使用的一些该菌菌株。该噬菌体的测序基因组由18,146 bp的线性双链DNA组成,基于基因组的系统发育分析表明vB_SurP-PSU3属于该属。虽然其整体基因组排列和内容与该属的其他成员相似,但vB_SurP-PSU3预测的内溶素与该属的其他成员明显不同。使用该菌ATCC 49330评估了vB_SurP-PSU3的溶菌活性,该噬菌体可以有效抑制该菌的浮游生长。此外,抗生物膜分析表明vB_SurP-PSU3可以防止细菌生物膜的形成并降解成熟生物膜。在vB_SurP-PSU3的额外细胞毒性试验中,未观察到对受试细胞有明显的不良影响。基于这些发现,新分离的噬菌体vB_SurP-PSU3可被归类为该属的一个新成员,并可被认为是对抗该菌感染及其生物膜的一种潜在替代生物控制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef57/9340203/9eb8cd5532a1/fmicb-13-925866-g0001.jpg

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