Photodynamic inactivation of multidrug-resistant Staphylococcus aureus by chlorin e6 and red light (λ=670nm)

Katrin Winkler1, Carole Simon2, Melanie Finke1

  • 1Institute of Medical Microbiology and Hygiene, Saarland University, Germany.

Insights

Photodynamic therapy (PDT) using chlorin e6 (Ce6) and red light effectively inactivated multidrug-resistant Staphylococcus aureus (MDR-SA) in vitro and in ex vivo corneal models. This approach shows promise for treating resistant bacterial keratitis.

Area of Science:

  • Ophthalmology
  • Microbiology
  • Photomedicine

Background:

  • Multidrug-resistant Staphylococcus aureus (MDR-SA) causes difficult-to-treat bacterial keratitis.
  • Photodynamic therapy (PDT) is an emerging treatment for microbial infections.

Purpose of the Study:

  • To evaluate the efficacy of PDT using chlorin e6 (Ce6) and red light against clinical MDR-SA isolates.
  • To investigate the role of Staphylococcus aureus pigment production in PDT resistance.
  • To assess Ce6 penetration and efficacy in ex vivo porcine corneas.

Main Methods:

  • Testing 12 clinical MDR-SA isolates and a laboratory strain against photodynamic inactivation (PDI) with Ce6 (128μM) and red light (670nm).
  • Assessing the susceptibility of a crtM mutant deficient in pigment production.
  • Evaluating Ce6 gel (0.5%) diffusion and accumulation in porcine corneal stroma.

Main Results:

  • All MDR-SA isolates showed a 5-log10 reduction in viable cells after PDT with Ce6 and red light.
  • A crtM mutant was more susceptible to PDI, indicating staphyloxanthin pigment confers resistance.
  • Ce6 effectively diffused into porcine corneal stroma at concentrations sufficient for bacterial inactivation.

Conclusions:

  • PDT with Ce6 and red light demonstrates potent in vitro bactericidal activity against MDR-SA.
  • Staphyloxanthin production influences S. aureus resistance to PDT.
  • Ce6 penetrates corneal tissue, suggesting PDT's potential for treating bacterial keratitis.

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