International Journal of Molecular Sciences (Jan 2023)

Comparison of Virulence-Factor-Encoding Genes and Genotype Distribution amongst Clinical <i>Pseudomonas aeruginosa</i> Strains

  • Tomasz Bogiel,
  • Dagmara Depka,
  • Stanisław Kruszewski,
  • Adrianna Rutkowska,
  • Piotr Kanarek,
  • Mateusz Rzepka,
  • Jorge H. Leitão,
  • Aleksander Deptuła,
  • Eugenia Gospodarek-Komkowska

DOI
https://doi.org/10.3390/ijms24021269
Journal volume & issue
Vol. 24, no. 2
p. 1269

Abstract

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Pseudomonas aeruginosa is an opportunistic pathogen encoding several virulence factors in its genome, which is well-known for its ability to cause severe and life-threatening infections, particularly among cystic fibrosis patients. The organism is also a major cause of nosocomial infections, mainly affecting patients with immune deficiencies and burn wounds, ventilator-assisted patients, and patients affected by other malignancies. The extensively reported emergence of multidrug-resistant (MDR) P. aeruginosa strains poses additional challenges to the management of infections. The aim of this study was to compare the incidence rates of selected virulence-factor-encoding genes and the genotype distribution amongst clinical multidrug-sensitive (MDS) and MDR P. aeruginosa strains. The study involved 74 MDS and 57 MDR P. aeruginosa strains and the following virulence-factor-encoding genes: lasB, plC H, plC N, exoU, nan1, pilA, and pilB. The genotype distribution, with respect to the antimicrobial susceptibility profiles of the strains, was also analyzed. The lasB and plC N genes were present amongst several P. aeruginosa strains, including all the MDR P. aeruginosa, suggesting that their presence might be used as a marker for diagnostic purposes. A wide variety of genotype distributions were observed among the investigated isolates, with the MDS and MDR strains exhibiting, respectively, 18 and 9 distinct profiles. A higher prevalence of genes determining the virulence factors in the MDR strains was observed in this study, but more research is needed on the prevalence and expression levels of these genes in additional MDR strains.

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