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Updated: Jul 6, 2025

Isolation of Salmonella typhimurium-containing Phagosomes from Macrophages
Published on: October 25, 2017
Phage-antibiotic synergism against Salmonella typhi isolated from stool samples of typhoid patients
Saqib Ali1, Muhammad Aamir Aslam1, Rabia Kanwar1
1Institute of Microbiology, University of Agriculture Faisalabad, Faisalabad, 38000, Pakistan.
Background:
Typhoid fever is a fatal disease in humans that is caused by Salmonella typhi. S. typhi infections need immediate antibiotic therapy, and their extensive use has led to multidrug-resistant (MDR) pathogens. The use of bacteriophages is becoming a new way to treat these resistant bacteria. This research was directed to bacteriophage isolation against S. typhi and to determine phage-antibiotic synergism.
Aims:
To isolate bacteriophages targeting S. typhi, the causative agent of typhoid fever, and investigate their potential synergistic effects when combined with antibiotics.
Study Design:
A cross-sectional study.
Methods:
The Widal test was positive; twenty diarrheal stool samples were taken, and for confirmation of S. typhi, different biochemical tests were performed. The disc-diffusion technique was used to determine antimicrobial resistance, and the double agar overlay method was used for bacteriophage isolation from sewage water against S. typhi. To test antibiotic-phage synergism, the S. typhi bacteria was treated by phages together with varying antibiotic concentrations.
Results:
Eleven samples were positive for S. typhi with black colonies on SS-agar. These were catalase and MR positive with alkali butt on TSI. Clear plaques were observed after the agar overlay. Isolated phages were stable at various pH and temperature levels. Synergism was observed on agar plate. The zone was enlarged when phages were combined with bacterial lawn culture and ciprofloxacin disk. Bacterial growth inhibition had a significant p-value of 0.03 in titration plates, with the phage-ciprofloxacin combination being more effective than the phage and antibiotic alone.
Conclusion:
The study highlights the synergistic effects of isolated bacteriophages with antibiotics, which are not only effective against S. typhi infection but also decrease antibiotic resistance.
Insights
Bacteriophages targeting Salmonella typhi, the cause of typhoid fever, were isolated. Combining these phages with antibiotics like ciprofloxacin showed synergistic effects, reducing multidrug-resistant bacterial growth.
Area of Science:
- Microbiology
- Bacteriology
- Antimicrobial Resistance
Background:
- Typhoid fever, caused by Salmonella typhi, requires antibiotic treatment, but multidrug-resistant (MDR) strains are a growing concern.
- Bacteriophages offer a potential alternative therapy against resistant bacteria.
- This study aimed to isolate bacteriophages effective against S. typhi and assess their synergistic potential with antibiotics.
Purpose of the Study:
- To isolate bacteriophages specifically targeting Salmonella typhi.
- To evaluate the synergistic effects of isolated bacteriophages in combination with conventional antibiotics against S. typhi.
- To explore novel therapeutic strategies for combating antibiotic-resistant typhoid fever.
Main Methods:
- Isolation of bacteriophages from sewage water targeting S. typhi using the double agar overlay method.
- Confirmation of S. typhi isolates from clinical samples using biochemical tests.
- Assessment of antimicrobial resistance via disc-diffusion and evaluation of phage-antibiotic synergism on agar plates.
Main Results:
- Eleven S. typhi isolates were identified from stool samples.
- Isolated bacteriophages demonstrated stability across various pH and temperature conditions.
- Significant synergistic effects were observed when phages were combined with ciprofloxacin, leading to enhanced bacterial growth inhibition (p=0.03).
Conclusions:
- The study successfully isolated bacteriophages with lytic activity against S. typhi.
- A significant synergistic effect was demonstrated between isolated bacteriophages and ciprofloxacin.
- This phage-antibiotic synergy presents a promising approach to combatting multidrug-resistant S. typhi infections and reducing overall antibiotic resistance.
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