Comparative analysis of effectiveness for phage cocktail development against multiple Salmonella serovars and its

Jhonatan Macedo Ribeiro1, Giovana Nicolete Pereira1, Itamar Durli Junior2

  • 1Laboratory of Basic and Applied Bacteriology, State University of Londrina, Londrina, PR, Brazil.

Scientific Reports
|August 11, 2023
PubMed

Insights

Bacteriophages show promise in controlling multidrug-resistant bacteria and biofilms. Standardized methods are needed to assess phage efficacy for developing effective phage cocktails against foodborne pathogens.

Area of Science:

  • Microbiology
  • Bacteriology
  • Food Science

Background:

  • Foodborne diseases caused by multidrug-resistant (MDR) bacteria and biofilms pose significant global challenges.
  • Bacteriophages (phages) offer a promising alternative to antibiotics for controlling MDR bacteria in food production.
  • Effective phage cocktail development requires precise assessment of phage lytic activity and host range.

Purpose of the Study:

  • To evaluate and compare different methods for assessing bacteriophage lytic activity.
  • To determine the efficacy of a phage cocktail against Salmonella biofilms.
  • To investigate the potential of phages in controlling bacterial biofilms.

Main Methods:

  • Spot Test Assays, Efficiency of Plating (EOP), and liquid culture infection assays were used to evaluate phage activity.
  • A phage cocktail was developed and tested against 36 Salmonella isolates.
  • Confocal laser scanning microscopy was employed to visualize biofilm inhibition.

Main Results:

  • Efficiency of Plating (EOP) may underestimate phage lytic activity compared to liquid culture assays.
  • The developed phage cocktail effectively controlled or removed biofilms from 66% of Salmonella isolates.
  • Phages inhibited and controlled Salmonella biofilm maturation, even in isolates with low EOP values.

Conclusions:

  • Standardized and integrated assessment strategies are crucial for accurate phage cocktail design.
  • Bacteriophages demonstrate significant potential in controlling MDR bacteria and their biofilms in food systems.
  • Liquid culture infection assays provide a more precise method for studying phage interactions and designing cocktails.