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新型跨属噬菌体vB_SmaS_QH3的特性及其对……的抗菌效果评估

Characterization of the novel cross-genus phage vB_SmaS_QH3 and evaluation of its antibacterial efficacy against .

作者信息

Cheng Peng, Li Zian, Liu Lanmin, Li Ruizhe, Zhou Jianwu, Luo Xiaoqin, Mu Xiaoming, Sun Jingwei, Ma Jideng, A Xiangren

机构信息

Qinghai University, School of Clinical Medicine, Xining, China.

Department of Clinical Laboratory, Qinghai Provincial People's Hospital, Xining, China.

出版信息

Front Microbiol. 2025 Apr 11;16:1570665. doi: 10.3389/fmicb.2025.1570665. eCollection 2025.

Abstract

BACKGROUND

Bacteriophages, which are natural bacterial predators, demonstrate potential as safe and effective biological control agents against drug-resistant infections. This study aims to characterize the biological properties of the novel lytic phage vB_SmaS_QH3 and comprehensively evaluate its efficacy in preventing and controlling clinically multidrug resistance infections using both and models.

METHODS

The phage was isolated from hospital sewage using the multidrug resistant no. 3738 as the host. Transmission electron microscopy (TEM) was used to observe phage morphology, and the host range was determined via spot assays. Proliferation kinetics, including multiplicity of infection (MOI), adsorption rate, and one-step growth curves, were analyzed. Stability was assessed under various physicochemical conditions. Based on Illumina whole-genome sequencing data, bioinformatics tools were employed for gene annotation, functional prediction, and phylogenetic analysis. Antimicrobial activity was assessed using and models.

RESULTS

A lytic phage vB_SmaS_QH3 was isolated from hospital sewage. TEM revealed that it belongs to the class Caudoviricetes, featuring an icosahedral head (62 ± 3 nm) and a non-contractile long tail (121 ± 5 nm). Although the phage has a narrow host range, it exhibits cross-genus infectivity, lysing (11/81) and (3/24). The optimal MOI for phage vB_SmaS_QH3 is 0.01, with an adsorption rate of 49.16% within 20 min, a latent period of 40 min, a lytic period of 50 min, and a burst size of 41.67 plaque-forming units/cell. The phage remained stable at 4-60°C, at pH 3-11, and in chloroform, but it was completely inactivated following 20-min exposure to UV irradiation. Genomic analysis showed a linear double-stranded DNA genome of 43,085 bp with a GC content of 54.2%, containing 54 predicted ORFs, and no virulence or antibiotic resistance genes were detected. , vB_SmaS_QH3 effectively inhibited bacterial growth within 9 h. , it significantly improved the survival rate of larvae infected with , regardless of the treatment timing.

CONCLUSION

vB_SmaS_QH3 is a narrow host range lytic phage with a safe genome and excellent stability. It exhibits significant antibacterial activity both and , making it a promising candidate for therapeutic applications.

摘要

背景

噬菌体作为天然的细菌捕食者,具有成为安全有效的抗耐药感染生物控制剂的潜力。本研究旨在表征新型裂解性噬菌体vB_SmaS_QH3的生物学特性,并使用体外和体内模型全面评估其在预防和控制临床多重耐药感染方面的效果。

方法

以多重耐药的嗜麦芽窄食单胞菌3738号菌株为宿主,从医院污水中分离噬菌体。使用透射电子显微镜(TEM)观察噬菌体形态,并通过点滴试验确定宿主范围。分析增殖动力学,包括感染复数(MOI)、吸附率和一步生长曲线。在各种理化条件下评估稳定性。基于Illumina全基因组测序数据,使用生物信息学工具进行基因注释、功能预测和系统发育分析。使用体外和体内模型评估抗菌活性。

结果

从医院污水中分离出一种裂解性噬菌体vB_SmaS_QH3。TEM显示它属于有尾噬菌体目,具有二十面体头部(62±3nm)和非收缩性长尾(121±5nm)。虽然该噬菌体宿主范围较窄,但具有跨属感染性,可裂解嗜麦芽窄食单胞菌(81株中的11株)和铜绿假单胞菌(24株中的3株)。噬菌体vB_SmaS_QH3的最佳MOI为0.01,20分钟内吸附率为49.16%,潜伏期为40分钟,裂解期为50分钟,裂解量为41.67个噬菌斑形成单位/细胞。该噬菌体在4-60°C、pH 3-11和氯仿中保持稳定,但在紫外线照射下暴露20分钟后完全失活。基因组分析显示线性双链DNA基因组大小为43,085bp,GC含量为54.2%,包含54个预测的开放阅读框,未检测到毒力或抗生素抗性基因。体外,vB_SmaS_QH3在9小时内有效抑制细菌生长。体内,无论治疗时机如何,它都显著提高了感染嗜麦芽窄食单胞菌的秀丽隐杆线虫幼虫的存活率。

结论

vB_SmaS_QH3是一种宿主范围较窄的裂解性噬菌体,基因组安全且稳定性优异。它在体外和体内均表现出显著的抗菌活性,使其成为治疗应用的有前途的候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70fa/12023781/9840e86cb747/fmicb-16-1570665-g001.jpg

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