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Updated: Mar 22, 2026

Author Spotlight: Investigating Bacteriophage-Induced Immune Responses in Gnotobiotic Mice
Published on: January 26, 2024
Morphologically Distinct Escherichia coli Bacteriophages Differ in Their Efficacy and Ability to Stimulate Cytokine
Mohammadali Khan Mirzaei1, Yeneneh Haileselassie1, Marit Navis1
1Department of Molecular Biosciences, The Wenner-Gren Institute, Stockholm University Stockholm, Sweden.
Abstract:
Due to a global increase in the range and number of infections caused by multi-resistant bacteria, phage therapy is currently experiencing a resurgence of interest. However, there are a number of well-known concerns over the use of phages to treat bacterial infections. In order to address concerns over safety and the poorly understood pharmacokinetics of phages and their associated cocktails, immunological characterization is required. In the current investigation, the immunogenicity of four distinct phages (taken from the main families that comprise the Caudovirales order) and their interaction with donor derived peripheral blood mononuclear cells and immortalized cell lines (HT-29 and Caco-2 intestinal epithelial cells) were investigated using standard immunological techniques. When exposed to high phage concentrations (10(9) PFU/well), cytokine driven inflammatory responses were induced from all cell types. Although phages appeared to inhibit the growth of intestinal epithelial cell lines, they also appear to be non-cytotoxic. Despite co-incubation with different cell types, phages maintained a high killing efficiency, reducing extended-spectrum beta-lactamase-producing Escherichia coli numbers by 1-4 log10 compared to untreated controls. When provided with a suitable bacterial host, phages were also able to actively reproduce in the presence of human cells resulting in an approximately 2 log10 increase in phage titer compared to the initial inoculum. Through an increased understanding of the complex pharmacokinetics of phages, it may be possible to address some of the safety concerns surrounding phage preparations prior to creating new therapeutic strategies.
Insights
Phage therapy shows promise for treating multi-resistant bacteria. This study investigated phage immunogenicity and safety, finding phages are non-cytotoxic and retain high bacterial killing efficiency, supporting their therapeutic potential.
Area of Science:
- Microbiology
- Immunology
- Bacteriophage Therapy
Background:
- Phage therapy is gaining interest for treating multi-drug resistant bacterial infections.
- Concerns regarding phage safety and pharmacokinetics necessitate immunological characterization.
Purpose of the Study:
- To investigate the immunogenicity of four Caudovirales phages.
- To assess phage interaction with human peripheral blood mononuclear cells and intestinal epithelial cell lines (HT-29, Caco-2).
- To evaluate phage efficacy and behavior in the presence of human cells.
Main Methods:
- Standard immunological techniques were used to assess phage-host interactions.
- Cytokine-driven inflammatory responses were measured upon phage exposure.
- Bacterial killing efficiency and phage reproduction were quantified.
Main Results:
- Phages induced inflammatory responses at high concentrations but were non-cytotoxic to intestinal cell lines.
- Phages maintained high efficacy, reducing extended-spectrum beta-lactamase-producing Escherichia coli by 1-4 log10.
- Phages reproduced in the presence of human cells, increasing titer by approximately 2 log10.
Conclusions:
- Phages demonstrate potential for therapeutic use due to retained efficacy and non-cytotoxicity.
- Understanding phage pharmacokinetics and immunogenicity is crucial for addressing safety concerns.
- Further research can advance phage preparations for novel therapeutic strategies.
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