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May 4, 2026Antibiotics2 citationsOpen Access

Quorum Sensing and Quorum Quenching in Pseudomonas aeruginosa and Staphylococcus aureus Infections: Therapeutic Potential, Limitations and Clinical Challenges

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ENEmilia NowakMKMatylda KorgielKPKarolina Pawłuszkiewicz

Key Points

  • This review evaluates quorum quenching as a therapeutic strategy against Pseudomonas aeruginosa and Staphylococcus aureus infections and its associated challenges.
  • Analyzed studies from the last five years focusing on natural compounds, synthetic molecules, and nanoparticles that affect key pathogens.
  • Investigated efficacy in models of lung diseases like cystic fibrosis, chronic wounds, burns, and implant-associated infections.
  • Numerous compounds showed strong in vitro anti-biofilm and anti-virulence activity but face challenges in in vivo validation.
  • Pharmacokinetic issues, toxicity concerns, and risks of microbiome disruption limit QQ's clinical feasibility.

Abstract

Antimicrobial resistance (AMR) represents a major global health threat, largely driven by antibiotic overuse and the protective role of bacterial biofilms. Quorum sensing (QS), a bacterial communication system regulating virulence and biofilm formation, has emerged as a promising therapeutic target. Quorum quenching (QQ), which disrupts QS without directly inhibiting bacterial growth, is considered a potential anti-virulence strategy that may reduce selective pressure for resistance. This review critically evaluates recent advances in QQ research, focusing on its clinical applicability, limitations, and risks. We analyzed studies from the last five years involving natural compounds, synthetic molecules, nanoparticles (NPs), and combination therapies targeting key pathogens such as Pseudomonas aeruginosa and Staphylococcus aureus in models of lung diseases, mainly cystic fibrosis, chronic wounds, burns, and implant-associated infections. While numerous compounds demonstrate significant in vitro anti-biofilm and anti-virulence activity, major challenges remain, including limited in vivo validation, pharmacokinetic constraints, toxicity concerns, microbiome disruption, and the potential development of tolerance or functional resistance. Although QQ offers a promising adjunctive approach to conventional antibiotics, its long-term clinical feasibility requires comprehensive evaluation of evolutionary dynamics, host–microbe interactions, and safety profiles.

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Cite This Study

Nowak et al. (2026) studied this question.

synapsesocial.com/papers/69f837933ed186a739981b86https://doi.org/10.3390/antibiotics15050447
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