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March 3, 20265 citationsOpen Access

Molecular Mechanisms Underlying the Pathogenicity of Pseudomonas aeruginosa

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AKAngelika KrūmiņaARAigars ReinisAJAgneta Jeske

Key Points

  • The aim is to analyze the complex mechanisms that contribute to the pathogenicity of Pseudomonas aeruginosa.
  • Comprehensive literature review of recent peer-reviewed studies
  • Focus on virulence regulation, biofilm formation, and nutrient acquisition
  • Analysis of the relationship between antibiotic resistance and pathogenicity
  • Virulence expression is dynamic and influenced by environmental signals
  • Biofilm formation is crucial for bacterial persistence and tolerance to antibiotics
  • Antibiotic resistance mechanisms enhance bacterial fitness and survival within the host

Abstract

Background and Objectives: Pseudomonas aeruginosa is a versatile, opportunistic pathogen responsible for a wide spectrum of infections, particularly in immunocompromised patients and those with disrupted epithelial barriers and chronic respiratory conditions. Its clinical significance is amplified by intrinsic and acquired antibiotic resistance, contributing to high mortality rates and treatment challenges. The bacterium’s pathogenic success stems from a multifaceted repertoire of virulence factors, including adhesins, pili, fimbriae, flagella, exopolysaccharides, biofilm-associated proteins, secreted toxins, proteases, lipases, phospholipases, rhamnolipids and redox-active metabolites. These factors are tightly regulated through complex networks, such as quorum sensing and c-di-GMP signaling, enabling dynamic adaptation to host environments and modulation of acute and chronic infection phenotypes. Biofilm formation and nutrient acquisition strategies further support survival in resource-limited conditions and protect against immune clearance and antibiotic pressure. Antibiotic resistance in P. aeruginosa limits therapeutic options. In addition, it may indirectly enhance virulence through modulation of stress responses and quorum sensing. P. aeruginosa’s pathogenicity emerges from the synergy between traditional virulence determinants and adaptive survival strategies, supporting long-term persistence, chronic infection, and resistance to host immunity and therapy. Materials and Methods: This narrative review is based on a comprehensive analysis of recent peer-reviewed literature focusing on virulence regulation, biofilm formation, nutrient acquisition strategies, and the interplay between antibiotic resistance and pathogenicity. Results: The reviewed evidence indicates that virulence expression in P. aeruginosa is highly dynamic and context-dependent, with regulatory networks integrating environmental signals to fine-tune pathogenic responses. A consistent finding across studies is the central role of biofilm-associated adaption in promoting persistence and antimicrobial tolerance. Moreover, the interaction between resistance mechanisms and global regulatory pathways appears to enhance bacterial fitness and long-term survival within the host. Conclusions: A deeper understanding of these interconnected mechanisms may facilitate the development of more effective anti-virulence and therapeutic strategies.

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Cite This Study

Krūmiņa et al. (2026) studied this question.

synapsesocial.com/papers/69a67ed1f353c071a6f0a4dehttps://doi.org/10.3390/medicina62030462
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A comprehensive review of the pathogenic mechanisms of Pseudomonas aeruginosa: synergistic effects of virulence factors, quorum sensing, and biofilm formation2025 · 42 citations
  2. 2Pseudomonas aeruginosa: A Comprehensive Review of Virulence Mechanisms, Molecular Identification, Biofilm Formation, Quorum Sensing, and Antibiotic Resistance2026
  3. 3Pseudomonas aeruginosa: associated pathogenesis, epidemiology, resistance mechanisms, host response and emerging treatment strategies2026
  4. 4Molecular Diversity and Antimicrobial Resistance in Clinical Pseudomonas aeruginosa Isolates Associated with Virulence and Biofilm Formation2026
  5. 5Epidemiology, Virulence Factors and Antibiotic Therapy of Pseudomonas Aeruginosa Infections2024