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Published on: May 4, 2018
Correlation between phenotypic virulence traits and antibiotic resistance in Pseudomonas aeruginosa clinical isolates
Osama Nassar1, Said E Desouky1, Gamal M El-Sherbiny1
1Department of Botany and Microbiology, Faculty of Science, Al-Azhar University, 11884, Cairo, Egypt.
Abstract:
Pseudomonas aeruginosa is a ubiquitous pathogen capable of infecting virtually all tissues and its one of the standout amongst the most hazardous microorganisms of high morbidity and mortality rates especially in debilitated patients with few successful antibiotic choices available. This pathogen regulating most virulence traits by that so-called quorum sensing (QS), a cell to cell communication system. the present study was intended to phenotypically evaluate the activity of specific virulence traits (including swarming and swimming motility, protease, pyocyanin, and biofilm production) in Pseudomonas aeruginosa clinical isolates and assess the statistical correlation between these traits and antibiotic resistance. One hundred and thirteen bacterial isolates were obtained from different clinical samples and identified as P. aeruginosa, among them, 73.4% have the ability to forming biofilm with different degrees; 59.2% were able to produce pyocyanin pigment while all isolates having the ability to make swarming and swimming motility and able to produce protease enzyme with different degrees. The isolates that produce the higher levels of the virulence traits were identified by both biochemical using Vitek2 automated system and genetically via 16s rRNA gene analysis. The statistical analysis results indicate that a positive significant correlation was found between biofilm formation and other studied virulence traits except for protease (r = 0.584: 0.324, P < 0.05) while a non-significant correlation was found between biofilm formation and protease activity (r = 0.105, P ˃ 0.05). Swimming and swarming motility have a positive significant correlation with other studied virulence traits (r = 0.613: 0.297, P < 0.05) except for protease. Pyocyanin pigment production have a positive significant correlation with other studied virulence traits (r = 0.33: 0.297, P < 0.05) except for protease. on the other hand, negative significant correlations were found between biofilm formation, swimming; and swarming motility, Pyocyanin pigment production, and the susceptibility of antibiotics (r = -0.512: -0.281, P < 0.05). Detection of such correlations in P. aeruginosa is useful for study the behavior of this pathogen and may be provide a new target for the treatment of MDR infections.
Insights
Pseudomonas aeruginosa virulence factors like biofilm, motility, and pyocyanin are interconnected and negatively correlate with antibiotic susceptibility. Understanding these links offers potential new targets for treating multidrug-resistant infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Bacterial Pathogenesis
Background:
- Pseudomonas aeruginosa is a significant opportunistic pathogen causing severe infections with limited treatment options.
- Quorum sensing (QS) regulates key virulence factors in P. aeruginosa, contributing to its pathogenicity.
- Understanding the interplay of virulence traits and antibiotic resistance is crucial for effective therapeutic strategies.
Purpose of the Study:
- To phenotypically evaluate virulence traits in P. aeruginosa clinical isolates.
- To assess the statistical correlation between virulence factors (motility, protease, pyocyanin, biofilm) and antibiotic resistance.
- To identify potential therapeutic targets for multidrug-resistant (MDR) P. aeruginosa infections.
Main Methods:
- Phenotypic evaluation of swarming motility, swimming motility, protease production, pyocyanin production, and biofilm formation in 113 P. aeruginosa clinical isolates.
- Identification of isolates using Vitek2 automated system and 16s rRNA gene sequencing.
- Statistical correlation analysis between virulence traits and antibiotic resistance patterns.
Main Results:
- All isolates exhibited motility and protease production; 73.4% formed biofilms, and 59.2% produced pyocyanin.
- Significant positive correlations were observed between biofilm, motility, and pyocyanin production (excluding protease).
- Negative significant correlations were found between biofilm, motility, pyocyanin production, and antibiotic susceptibility, indicating increased resistance.
Conclusions:
- Virulence traits in P. aeruginosa are significantly correlated, suggesting coordinated regulation.
- Increased expression of biofilm, motility, and pyocyanin is associated with higher antibiotic resistance.
- Targeting these interconnected virulence factors may offer novel strategies against MDR P. aeruginosa infections.
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