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噬菌体CSF的发现,一种新型的通用噬菌体,靶向多重耐药和潜在致病性葡萄球菌属及哺乳动物葡萄球菌属。

Discovery of phage CSF, a novel generalist bacteriophage targeting multidrug-resistant and potentially pathogenic Staphylococcus spp. and Mammaliicoccus spp.

作者信息

Ahmad Faizan, Viana Vitor Emanuel Lanes, de Rezende Rafael Reis, Martuchelle Samuel Sathler, Cabral Anderson Souza, Andrade-Oliveira Ana Luisa, Carvalho Isabella Monteiro, de Almada Estanislau Sandy, Rasheed Nohman, Zerbini Poliane Alfenas, Pereira Monalessa Fábia, Giambiagi-deMarval Marcia, Rossi Ciro César

机构信息

Departmento de Bioquímica e Biologia Molecular, Universidade Federal de Viçosa, Viçosa, MG, Brazil.

Departmento de Microbiologia, Universidade Federal de Viçosa, Viçosa, MG, Brazil.

出版信息

Arch Virol. 2025 Jul 29;170(8):188. doi: 10.1007/s00705-025-06370-x.

Abstract

Antimicrobial resistance is escalating among Staphylococcus species, which are major pathogens affecting both humans and animals. As therapeutic options continue to narrow, phage therapy is re-emerging as a promising strategy to combat resistant strains. In this study, we isolated from pig farm effluents a bacteriophage named CSF, infecting a Staphylococcus xylosus strain. The CSF phage demonstrated a broad host range, lysing mecA-positive, multidrug-resistant strains across nine species of the genera Staphylococcus and Mammaliicoccus. Notably, it also inhibited biofilm formation in strains that it could not infect directly, and this activity persisted at low virus concentrations and in combination with antibiotics. The phage maintained its lytic activity under extreme conditions of temperature, pH, and UV exposure, underscoring its resilience for practical use. Sequencing of the viral genome revealed that it is 140 kb in length and has a genetic composition consistent with a lytic lifestyle. Phylogenetic analysis showed that phage CSF is related to members of the family Herelleviridae that are found globally, suggesting a widespread distribution of related viral lineages. Importantly, the phage genome was found to lack bacterial virulence or antimicrobial resistance genes, suggesting its safety for biotechnological applications. Intergenomic comparisons indicated that CSF should be classified as a member of a new genus, expanding the known diversity of bacteriophages. These findings demonstrate potential of CSF for phage therapy and other biotechnological applications.

摘要

葡萄球菌属中的抗菌耐药性正在不断升级,该属是影响人类和动物的主要病原体。随着治疗选择的不断减少,噬菌体疗法正重新成为对抗耐药菌株的一种有前景的策略。在本研究中,我们从猪场废水中分离出一种名为CSF的噬菌体,它可感染一株木糖葡萄球菌。CSF噬菌体表现出广泛的宿主范围,能裂解葡萄球菌属和哺乳动物葡萄球菌属九个物种中的mecA阳性多药耐药菌株。值得注意的是,它还能抑制那些它无法直接感染的菌株形成生物膜,并且这种活性在低病毒浓度下以及与抗生素联合使用时依然存在。该噬菌体在温度、pH值和紫外线照射等极端条件下仍保持其裂解活性,这突出了其在实际应用中的稳定性。病毒基因组测序显示,其长度为140 kb,遗传组成与裂解性生活方式一致。系统发育分析表明,噬菌体CSF与在全球范围内发现的赫勒病毒科成员相关,这表明相关病毒谱系分布广泛。重要的是,发现该噬菌体基因组缺乏细菌毒力或抗菌耐药基因,这表明其在生物技术应用中的安全性。基因组间比较表明,CSF应归类为一个新属的成员,这扩大了已知的噬菌体多样性。这些发现证明了CSF在噬菌体疗法和其他生物技术应用中的潜力。

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