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March 21, 2026Antibiotics3 citationsOpen Access

Bacteriophage Therapy Against Shigella spp.: A Precision Antimicrobial Strategy

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GSGiuseppe Guido Maria ScarlataABAndrej BelančićDSD Stimac

Key Points

  • This review explores the rationale and evidence behind using bacteriophage therapy to combat Shigella spp. infections and its implications for gut health.
  • Narrative review of preclinical and clinical evidence
  • Analysis of bacteriophage mechanisms and historical context
  • Evaluation of safety considerations and translational challenges
  • Discussion on microbiota and ecological impacts of shigellosis
  • Bacteriophage therapy shows targeted efficacy against Shigella while preserving beneficial gut microbiota.
  • Early clinical trials indicate favorable safety profiles for Shigella-specific phages.
  • Phage therapy may mitigate gut dysbiosis associated with conventional antibiotic treatments.

Abstract

Shigellosis remains a significant global cause of infectious colitis, increasingly complicated by multidrug-resistant strains and the microbiota-disrupting effects of broad-spectrum antibiotics. Although conventional antimicrobial therapy can reduce symptom duration and bacterial shedding, it also contributes to gut dysbiosis, loss of colonization resistance, and further selection for antimicrobial resistance. These challenges have renewed interest in precision antimicrobial strategies, particularly bacteriophage therapy, which provides strain-level specificity and preserves the gut microbiota. This narrative review evaluates the biological rationale, preclinical and early clinical evidence, safety considerations, and translational challenges associated with bacteriophage therapy targeting Shigella spp. The historical development and mechanistic basis of phage therapy are summarized, with emphasis on the advantages of obligately lytic phages, receptor-specific targeting, self-amplification at infection sites, and activity against both planktonic and biofilm-associated bacteria. Recent microbiota research indicates that shigellosis is closely associated with early and persistent disruption of gut ecology, including depletion of short-chain fatty acids-producing taxa and reduced microbial resilience. Phage-based approaches may reduce pathogen burden while preserving beneficial microbial communities. Evidence from in vitro systems, animal models, human intestinal organoids, and a Phase 1 clinical trial demonstrates targeted efficacy and favorable safety profiles for Shigella-specific phages and phage cocktails. Major barriers to clinical adoption include immune interactions, phage resistance dynamics, genomic safety screening, regulatory classification, and the need for standardized susceptibility testing. Future directions emphasize the development of personalized phage therapy platforms that integrate rapid diagnostics, phage libraries, metagenomics, and artificial intelligence-assisted matching to enable scalable, precision treatment.

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Cite This Study

Scarlata et al. (2026) studied this question.

synapsesocial.com/papers/69be37b96e48c4981c6778c9https://doi.org/10.3390/antibiotics15030317
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