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vB-Ea-5: a lytic bacteriophage against multi-drug-resistant Enterobacter aerogenes

BACKGROUND AND OBJECTIVES: Multi-drug-resistant Enterobacter aerogenes is associated with various infectious diseases that cannot be easily treated by antibiotics. However, bacteriophages have potential therapeutic applications in the control of multi-drug-resistant bacteria. In this study, we aimed...

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Detalles Bibliográficos
Autores principales: Habibinava, Fatemeh, Zolfaghari, Mohammad Reza, Zargar, Mohsen, Shahrbabak, Salehe Sabouri, Soleimani, Mohammad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tehran University of Medical Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8408028/
https://www.ncbi.nlm.nih.gov/pubmed/34540158
http://dx.doi.org/10.18502/ijm.v13i2.5984
Descripción
Sumario:BACKGROUND AND OBJECTIVES: Multi-drug-resistant Enterobacter aerogenes is associated with various infectious diseases that cannot be easily treated by antibiotics. However, bacteriophages have potential therapeutic applications in the control of multi-drug-resistant bacteria. In this study, we aimed to isolate and characterize of a lytic bacteriophage that can lyse specifically the multi-drug-resistant (MDR) E. aerogenes. MATERIALS AND METHODS: Lytic bacteriophage was isolated from Qaem hospital wastewater and characterized morphologically and genetically. Next-generation sequencing was used to complete genome analysis of the isolated bacteriophage. RESULTS: Based on the transmission electron microscopy feature, the isolated bacteriophage (vB-Ea-5) belongs to the family Myoviridae. vB-Ea-5 had a latent period of 25 minutes, a burst size of 13 PFU/ml, and a burst time of 40 min. Genome sequencing revealed that vB-Ea-5 has a 135324 bp genome with 41.41% GC content. The vB-Ea-5 genome codes 212 ORFs 90 of which were categorized into several functional classes such as DNA replication and modification, transcriptional regulation, packaging, structural proteins, and a host lysis protein (Holin). No antibiotic resistance and toxin genes were detected in the genome. SDS-PAGE of vB-Ea-5 proteins exhibited three major and four minor bands with a molecular weight ranging from 18 to 50 kD. CONCLUSION: Our study suggests vB-Ea-5 as a potential candidate for phage therapy against MDR E. aerogenes infections.