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Updated: May 19, 2026

Replication of the Ordered, Nonredundant Library of Pseudomonas aeruginosa strain PA14 Transposon Insertion Mutants
Published on: May 4, 2018
[The comparison of selected virulence factors in Pseudomonas aeruginosa catheter isolates]
Katerina Olejnízková1, Veronika Holá
1Mikrobiologický ústav LF a FN u sv. Anny v Brne.
Abstract:
Healthcare quality improvement brings about an increasing number of invasive diagnostic and therapeutic procedures and thus also an increasing number of high-risk patients prone to hospital infections. Pseudomonas aeruginosa is one of the most commonly isolated nosocomial species and the treatment of the infection is often long and problematic, with frequent recurrences. The pathogenesis of Pseudomonas infection is associated with a range of virulence factors. In the present study, 93 catheter isolates of Pseudomonas aeruginosa were screened for the biofilm formation, motility and secretion of selected extracellular products. A high rate of the strains tested were producers of hemolysins, LasB elastase, and pyoverdines (> 70%). The biofilm formation was detected in 80% of isolates and formation of aerated biofilm was present in 90% of isolates with a positive correlation found between the two types of biofilm formation (p = 0.00583; gamma = 0.551). All strains showed swarming motility, 95% of strains showed swimming motility, and 75% of strains showed twitching motility. Among the virulence factors studied, only pyocyanin and pyochelin were produced by a lower proportion of isolates (< 25%). A positive correlation was seen between the production of some extracellular molecules (pyochelin and pyocyanin, pyocyanin and LasB elastase, and LasB elastase and haemolysins), between biofilm formation and formation of aerated biofilm, and between formation of aerated biofilm and pigments (pyoverdine and pyocyanin) production. On the other hand, a negative correlation was found between biofilm production and LasB elastase production and between the production of biofilm under immersion and pigments (pyoverdine and pyocyanin) production. All correlations are significant at the level p = 0.05, with the correlation coefficient gamma > 0.50.
Insights
Pseudomonas aeruginosa, a common hospital pathogen, frequently forms biofilms and exhibits motility. Virulence factors like hemolysins and pyoverdines are common, though pyocyanin and pyochelin are less frequent.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Hospital-Acquired Infections
Background:
- Healthcare advancements increase invasive procedures, leading to more high-risk patients susceptible to hospital infections.
- Pseudomonas aeruginosa is a prevalent nosocomial pathogen, often causing persistent and recurrent infections due to its virulence factors.
Purpose of the Study:
- To investigate the prevalence of biofilm formation, motility, and extracellular virulence factors in Pseudomonas aeruginosa catheter isolates.
- To explore correlations between these virulence factors and biofilm production.
Main Methods:
- Screening of 93 Pseudomonas aeruginosa catheter isolates.
- Assessment of biofilm formation (standard and aerated), motility (swarming, swimming, twitching), and secretion of hemolysins, LasB elastase, pyoverdines, pyocyanin, and pyochelin.
- Statistical analysis of correlations between virulence factors and biofilm formation.
Main Results:
- High rates of hemolysin, LasB elastase, and pyoverdine production (>70%).
- Biofilm formation detected in 80% of isolates, with aerated biofilm in 90% (positive correlation).
- All strains showed swarming motility; 95% swimming, 75% twitching. Pyocyanin and pyochelin production was low (<25%).
- Significant positive correlations found between certain virulence factors and biofilm formation, and negative correlations between others.
Conclusions:
- Pseudomonas aeruginosa catheter isolates possess diverse virulence factors and exhibit significant biofilm-forming capabilities.
- Motility and biofilm formation are common, suggesting their importance in pathogenesis.
- Specific virulence factors show complex correlations with biofilm production, highlighting potential therapeutic targets.
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