Interaction of Bacterial Phenazines with Colistimethate in Bronchial Epithelial Cells

Valeri V Mossine1,2, Deborah L Chance3,4, James K Waters2

  • 1Department of Biochemistry, University of Missouri, Columbia, Missouri, USA MossineV@missouri.edu.

Insights

Polymyxin antibiotics combined with Pseudomonas aeruginosa toxins show enhanced cytotoxicity in airway cells. This interaction necessitates further safety evaluations for colistin-methanesulfonate sodium and exploration of protective agents.

Area of Science:

  • Pharmacology
  • Toxicology
  • Microbiology

Background:

  • Polymyxins are crucial for treating multidrug-resistant bacterial infections.
  • These antibiotics have known kidney, nervous system, and airway toxicities.
  • The cytotoxic interaction between polymyxins and bacterial virulence factors remains unassessed.

Purpose of the Study:

  • To evaluate the combined cytotoxicity of polymyxin antibiotics and Pseudomonas aeruginosa phenazine toxins.
  • To assess the impact of these combinations on human airway cell lines.
  • To investigate potential protective strategies against observed cytotoxic effects.

Main Methods:

  • Tested combinations of four phenazine toxins (PYO, 1-HP, PCA, PCN) with two polymyxins (colistin-methanesulfonate sodium [CMS], polymyxin B).
  • Utilized three human airway cell lines (BEAS-2B, HBE-1, CFT-1).
  • Assessed cytotoxicity via mitochondrial metabolic, transcriptional/translational, and Nrf2 stress response activities.

Main Results:

  • Phenazines PYO and 1-HP were cytotoxic at clinically relevant concentrations, increasing oxidative stress.
  • CMS demonstrated significant cytotoxicity in BEAS-2B cells (ED50 = 180 μM).
  • A synergistic cytotoxic enhancement was observed for the PYO-CMS combination across all cell lines (CI=0.27 in BEAS-2B).

Conclusions:

  • The combination of PYO and CMS exhibits synergistic cytotoxicity in human airway cells.
  • CMS safety requires further evaluation, particularly concerning its interactions with bacterial virulence factors.
  • N-acetylcysteine and iron chelators showed potential in mitigating CMS and PYO-CMS induced cytotoxicity.

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