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Updated: Jun 16, 2026

Bacteriophage Removal from Infected Salmonella Cultures
Published on: June 28, 2024
When bacteriophages encounter macrophages during their journey through the human body
Martyna Cieślik1, Magdalena Gębicka2, Michał Wójcicki1
1Bacteriophage Laboratory, Department of Phage Therapy, Hirszfeld Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, Wroclaw, Poland.
Abstract:
The increasing problem of antibiotic resistance is one of the most significant threats to global public health, contributing to higher mortality rates, prolonged hospitalizations, and rising healthcare costs. As a response to this challenge, phage therapy - based on the use of bacteriophages (phages), viruses that selectively infect and lyse bacteria - has emerged as a promising alternative. In recent years, increasing interest in phage therapy has been observed in both preclinical and clinical research. Accordingly, increasing attention is being directed toward investigating potential interactions between phages and mammalian cells. Bacteriophages, like other exogenous particles introduced into the human body, are subject to innate and adaptive immune mechanisms. This review places particular emphasis on interactions between phages and macrophages. On the one hand, their significant participation in the clearance of therapeutic phages is described, which may reduce the effectiveness of antibacterial treatment; nevertheless, this mechanism is considered to be an indirect way of autotolerance of intestinal phages. From another perspective, bacteriophages, as nucleoprotein molecules, can induce various immunomodulation mechanisms, which may find clinical applications in the future. Their involvement in macrophage polarization, induction of the secretion of pro- and anti-inflammatory cytokines, and modulation of phagocytic functions are briefly discussed. Apart from their therapeutic importance, studying the interactions of phages with eukaryotic cells, such as immunocompetent cells including macrophages, may also help explain their indisputable role in maintaining homeostasis as integral components of the human microbiota.
Insights
Antibiotic resistance is a major global health threat. Bacteriophages (phages), viruses that kill bacteria, are a promising alternative therapy, with ongoing research into their interactions with the human immune system, particularly macrophages.
Area of Science:
- Microbiology
- Immunology
- Public Health
Background:
- Antibiotic resistance poses a significant global health threat, increasing mortality and healthcare costs.
- Bacteriophage (phage) therapy is an emerging alternative to antibiotics, utilizing viruses that infect and lyse bacteria.
- Understanding phage-host interactions is crucial for optimizing phage therapy efficacy and safety.
Purpose of the Study:
- To review the interactions between bacteriophages and mammalian immune cells, with a focus on macrophages.
- To explore the dual role of phages in immune clearance and immunomodulation.
- To discuss the potential clinical applications of phage-mediated immunomodulation and their role in microbial homeostasis.
Main Methods:
- Literature review of preclinical and clinical research on phage-mammalian cell interactions.
- Analysis of studies investigating phage interactions with macrophages.
- Discussion of immunomodulatory mechanisms induced by bacteriophages.
Main Results:
- Macrophages play a key role in clearing therapeutic phages, potentially impacting treatment effectiveness.
- Phages can modulate macrophage functions, including polarization and cytokine secretion.
- Phage-host interactions offer insights into microbial homeostasis and potential therapeutic strategies.
Conclusions:
- Phage therapy holds promise for combating antibiotic resistance.
- Understanding phage-macrophage interactions is essential for developing effective phage-based treatments.
- Phages may have broader applications in immunomodulation and maintaining gut health.
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