Isolation and Characterization of Three Pseudomonas aeruginosa Viruses with Therapeutic Potential
文献类型: 外文期刊
第一作者: Wang, Xiao
作者: Wang, Xiao;Tang, Jingjing;Xie, Zhen;Zhang, Fuhua;Hao, Xinwei;Sun, Sihuai;Liu, Xuan;Luo, Yi;Li, Mengyuan;Gu, Yanchao;Wang, Yao;Shen, Xihui;Xu, Lei;Dang, Wen;Chen, Qiwei
作者机构:
关键词: Pseudomonas aeruginosa; bacteriophage; phage therapy; biofilm; burst size
期刊名称:MICROBIOLOGY SPECTRUM ( 影响因子:3.7; 五年影响因子:5.9 )
ISSN: 2165-0497
年卷期: 2023 年 11 卷 3 期
页码:
收录情况: SCI
摘要: As one of the most common pathogens of opportunistic and hospital-acquired infections, Pseudomonas aeruginosa is associated with resistance to diverse antibiotics, which represents a significant challenge to current treatment modalities. Phage therapy is considered a promising alternative to conventional antimicrobials. The characterization and isolation of new bacteriophages and the concurrent evaluation of their therapeutic potential are fundamental for phage therapy. In this study, we employed an enrichment method and a double-layer agar overlay to isolate bacteriophages that infect P. aeruginosa strains PAO1 and PA14. Three phages (named PA_LZ01, PA_LZ02, and PA_LZ03) were isolated and showed icosahedral heads and contractile tails. Following full-genome sequencing, we found that phage PA_LZ01 contained a genome of 65,367bp in size and harbored 90 predicted open reading frames (ORFs), phage PA_LZ02 contained a genome of 57,243bp in size and harbored 75 predicted ORFs, and phage PA_LZ03 contained a genome of 57,367bp in size and carried 77 predicted ORFs. Further comparative analysis showed that phage PA_LZ01 belonged to the genus Pbunavirus genus, phage PA_LZ02 belonged to the genus Pamexvirus, and phage PA_LZ03 belonged to the family Mesyanzhinovviridae. Next, we demonstrated that these phages were rather stable at different temperatures and pHs. One-step growth curves showed that the burst size of PA_LZ01 was 15 PFU/infected cell, and that of PA_LZ02 was 50 PFU/infected cell, while the titer of PA_LZ03 was not elevated. Similarly, the biofilm clearance capacities of PA_LZ01 and PA_LZ02 were also higher than that of PA_LZ03. Therapeutically, PA_LZ01 and PA_LZ02 treatment led to decreased bacterial loads and inflammatory responses in a mouse model. In conclusion, we isolated three phages that can infect P. aeruginosa, which were stable in different environments and could reduce bacterial biofilms, suggesting their potential as promising candidates to treat P. aeruginosa infections. IMPORTANCE Phage therapy is a promising therapeutic option for treating bacterial infections that do not respond to common antimicrobial treatments. Biofilm-mediated infections are particularly difficult to treat with traditional antibiotics, and the emergence of antibiotic-resistant strains has further complicated the situation. Pseudomonas aeruginosa is a bacterial pathogen that causes chronic infections and is highly resistant to many antibiotics. The library of phages that target P. aeruginosa is expanding, and the isolation of new bacteriophages is constantly required. In this study, three bacteriophages that could infect P. aeruginosa were isolated, and their biological characteristics were investigated. In particular, the isolated phages are capable of reducing biofilms formed by P. aeruginosa. Further analysis indicates that treatment with PA_LZ01 and PA_LZ02 phages reduces bacterial loads and inflammatory responses in vivo. This study isolated and characterized bacteriophages that could infect P. aeruginosa, which offers a resource for phage therapy.
分类号:
- 相关文献
作者其他论文 更多>>
-
Analysis of the steady-state concentrations of reactive species and their role in contaminant degradation by the iron-biochar/persulfate advanced oxidation process: Comparison of probe compound and quenching agent methods
作者:Meng, Xukun;Peng, Guilong;Yan, Yuting;Wang, Xiao;Zhu, Jiangwei;Belver, Carolina;Gong, Wenwen;Blaney, Lee;Peng, Guilong
关键词:Reactive species; Persulfate; Steady-state concentration; Iron-biochar; Advanced oxidation processes
-
Effect of land use on soil nematode community composition and co-occurrence network relationship
作者:Liu, Xiaotong;Tian, Yijia;Wang, Xiao;Liang, Wenju;Zhang, Xiaoke;Liang, Siwei;Liu, Xiaotong;Tian, Yijia;Wang, Xiao;Liang, Wenju;Zhang, Xiaoke
关键词:soil nematode; trophic groups; community composition; co-occurrence network; land use
-
Effect of different pectin sources and structures on the stability of cyanidin-3-O-glucoside (C3G)
作者:Jiang, Xiyu;Verkerk, Ruud;Dekker, Matthijs;Bi, Jinfeng;Liu, Xuan;Liu, Meng;Xie, Huimin;Liu, Meng
关键词:Pectin structures; Binding percentage; Color; Particle size and zeta potential; Light and thermal degradation
-
Combined treatment of rice bran by solid-state fermentation and extrusion: Effect of processing sequence and microbial strains
作者:Wu, Songheng;Zhang, Yi;Chen, Bingjie;Wang, Xiao;Qiao, Yongjin;Qiao, Yongjin;Chen, Jianyu
关键词:Aspergillus oryzae; Lactiplantibacillus plantarum; Neurospora sitophila; Treatment order; Bioactive components; arabinoxylan
-
Visualizing plant intracellular inorganic orthophosphate distribution
作者:Guo, Meina;Ruan, Wenyuan;Li, Ruili;Xu, Lei;Zhang, Qianqian;Ren, Jianhao;Yi, Keke;Guo, Meina;Hani, Sahar;David, Pascale;Nussaume, Laurent;Zheng, Bingsong
关键词:
-
Multifunctional Dual Network Hydrogel Loaded with Novel Tea Polyphenol Magnesium Nanoparticles Accelerates Wound Repair of MRSA Infected Diabetes
作者:Hu, Xulin;Qian, Zhiyong;Hu, Xulin;Qian, Zhiyong;Hu, Xulin;Wang, Chun;Wang, Yao;Hu, Xulin;Wang, Chun;Wang, Yao;He, Jian;Qiao, Liang;Wang, Chun;Wang, Yao;Yu, Rongxin;Xu, Wei;Zhang, Xiangchun;Wang, Fan;Yang, Shuhao
关键词:diabetes wound healing; double network hydrogel; magnesium nanoparticles; MRSA biofilm; tea polyphenol
-
Genome-wide survey reveals the genetic background of Xinjiang Brown cattle in China
作者:Wang, Xiao;Liu, Wujun;Wang, Xiao;Gao, Liang;Ma, Zhen;Yuan, Lixin;Ye, Zhibing;Cui, Fanrong;Yan, Xiangmin;Guo, Xiaoping
关键词:Xinjiang Brown cattle; specific-locus amplified fragment-sequencing; genetic structure; genetic diversity; candidate genes; ancestry proportion