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Updated: Aug 17, 2026

Replication of the Ordered, Nonredundant Library of Pseudomonas aeruginosa strain PA14 Transposon Insertion Mutants
Published on: May 4, 2018
Treatment and control of severe infections caused by multiresistant Pseudomonas aeruginosa
1Dipartimento di Biologia Molecolare, Sezione di Microbiologia, Università degli Studi di Siena, I-53100 Siena, Italy. rossolini@unisi.it
Abstract:
Pseudomonas aeruginosa is one of the leading causes of nosocomial infections. Severe infections, such as pneumonia or bacteraemia, are associated with high mortality rates and are often difficult to treat, as the repertoire of useful anti-pseudomonal agents is limited (some beta-lactams, fluoroquinolones and aminoglycosides, and the polymyxins as last-resort drugs); moreover, P. aeruginosa exhibits remarkable ability to acquire resistance to these agents. Acquired resistance arises by mutation or acquisition of exogenous resistance determinants and can be mediated by several mechanisms (degrading enzymes, reduced permeability, active efflux and target modification). Overall, resistance rates are on the increase, and may be different in different settings, so that surveillance of P. aeruginosa susceptibility is essential for the definition of empirical regimens. Multidrug resistance is frequent, and clinical isolates resistant to virtually all anti-pseudomonal agents are increasingly being reported. Monotherapy is usually recommended for uncomplicated urinary tract infections, while combination therapy is normally recommended for severe infections, such as bacteraemia and pneumonia, although, at least in some cases, the advantage of combination therapy remains a matter of debate. Antimicrobial use is a risk factor for P. aeruginosa resistance, especially with some agents (fluoroquinolones and carbapenems), and interventions based on antimicrobial rotation and restriction of certain agents can be useful to control the spread of resistance. Similar measures, together with the prudent use of antibiotics and compliance with infection control measures, are essential to preserve the efficacy of the currently available anti-pseudomonal agents, in view of the dearth, in the near future, of new options against multidrug-resistant P. aeruginosa strains.
Insights
Pseudomonas aeruginosa infections are a growing concern due to increasing resistance to antibiotics. Prudent antimicrobial use and infection control are vital to preserve treatment options.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Pseudomonas aeruginosa is a major cause of difficult-to-treat nosocomial infections.
- Limited effective antibiotic options and rapid resistance development pose significant challenges.
- Rising resistance rates necessitate ongoing surveillance and strategic antimicrobial stewardship.
Purpose of the Study:
- To review the mechanisms and epidemiology of Pseudomonas aeruginosa resistance.
- To discuss current treatment strategies and the role of combination therapy.
- To highlight the importance of antimicrobial stewardship in controlling resistance.
Main Methods:
- Literature review of Pseudomonas aeruginosa resistance mechanisms and clinical management.
- Analysis of current trends in antimicrobial susceptibility and resistance.
- Evaluation of strategies for controlling the spread of resistance.
Main Results:
- Pseudomonas aeruginosa exhibits diverse resistance mechanisms, including enzyme degradation, reduced permeability, efflux pumps, and target modification.
- Multidrug resistance is frequent, with increasing reports of pan-resistant strains.
- Antimicrobial use is a key driver of resistance, necessitating interventions like antimicrobial rotation.
Conclusions:
- Effective control of Pseudomonas aeruginosa resistance requires a multifaceted approach.
- Antimicrobial stewardship, infection control, and surveillance are crucial for preserving existing therapies.
- The limited pipeline for new anti-pseudomonal agents underscores the urgency of these measures.
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