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Published on: July 21, 2023
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.
Abstract:
Citrobacter freundii is a worldwide emerging nosocomial pathogen with escalating incidence of multidrug resistance. Citrobacter freundii exists in natural environment, especially in health care settings and is difficult to eradicate. Phage therapy is considered as an alternative way of controlling bacterial infections and contaminations. In this study, we have described isolation and characterization of a virulent bacteriophage LK1 capable of specifically infecting Citrobacter freundii. A virulent bacteriophage LK1, specific for Citrobacter freundii was isolated from sewage water sample. TEM showed that phage Lk1 has an icosahedral head 70 nm in diameter and short tail of 17 nm, and can be classified as a member of the Podoviridae family. Restriction analysis indicated that phage LK1 was a dsDNA virus with an approximate genome size of 20-23 kb. Proteomic pattern generated by SDS PAGE using purified LK1 phage particles, revealed three major and six minor protein bands with molecular weight ranging from 25 to 80 kDa. Adsorption rate of LK1 relative to the host bacterium was also determined which showed significant improvement in adsorption with the addition of CaCl2 . In a single step growth experiment, LK1 exhibited a latent period of 24 min and burst size of 801 particle/cell. Moreover, pH and thermal stability of phage LK1 demonstrated a pH range of 5.0-6.0 and phage viability decreased to 0% at 65 °C. When LK1 was used to infect six other clinically isolated pathogenic strains, it showed relatively narrow host range. LK1 was capable of eliciting efficient lysis of Citrobacter freundii, revealing its potential as a non-toxic sanitizer for controlling Citrobacter freundii infection and contamination in both hospital and other public environments.
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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