Characterization of a virulent bacteriophage LK1 specific for Citrobacter freundii isolated from sewage water

Waqas Nasir Chaudhry1, Irshad Ul Haq, Saadia Andleeb

  • 1Atta ur Rahman School of Applied Biosciences (ASAB), National University of Sciences & Technology (NUST) H-12 Sector, Islamabad, 44000, Pakistan.

Insights

A novel bacteriophage, LK1, was isolated and characterized for its potential to combat multidrug-resistant Citrobacter freundii. This phage shows promise as a non-toxic agent for controlling infections in healthcare settings.

Area of Science:

  • Microbiology
  • Virology
  • Infectious Diseases

Background:

  • Citrobacter freundii is a growing nosocomial pathogen with increasing multidrug resistance.
  • Controlling C. freundii infections is challenging due to its persistence in healthcare environments.
  • Bacteriophage therapy offers a potential alternative for managing bacterial infections.

Purpose of the Study:

  • To isolate and characterize a virulent bacteriophage targeting Citrobacter freundii.
  • To evaluate the efficacy of the isolated bacteriophage as a potential therapeutic agent.

Main Methods:

  • Isolation of bacteriophage LK1 from sewage water.
  • Transmission Electron Microscopy (TEM) for morphology.
  • Restriction analysis for genome identification.
  • SDS-PAGE for proteomic analysis.
  • Growth experiments to determine latent period and burst size.
  • pH and thermal stability assays.
  • Host range determination.

Main Results:

  • Bacteriophage LK1, belonging to the Podoviridae family, was isolated and characterized.
  • LK1 possesses a dsDNA genome (20-23 kb) and specific protein components.
  • Optimal adsorption was observed with CaCl2; latent period was 24 min with a burst size of 801 particles/cell.
  • Phage LK1 demonstrated stability within a pH range of 5.0-6.0 and lost viability above 65°C.
  • LK1 showed efficient lysis of Citrobacter freundii but a narrow host range.

Conclusions:

  • Bacteriophage LK1 is a virulent phage effective against Citrobacter freundii.
  • LK1 demonstrates potential as a non-toxic sanitizer for controlling C. freundii in various environments.
  • Further research into phage therapy for multidrug-resistant bacteria is warranted.

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