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Published on: March 24, 2022
Photodynamic Therapy Is Effective Against Candida auris Biofilms
Priyanka S Bapat1,2, Clarissa J Nobile1,3
1Department of Molecular and Cell Biology, School of Natural Sciences, University of California Merced, Merced, CA, United States.
Abstract:
Fungal infections are increasing in prevalence worldwide. The paucity of available antifungal drug classes, combined with the increased occurrence of multidrug resistance in fungi, has led to new clinical challenges in the treatment of fungal infections. Candida auris is a recently emerged multidrug resistant human fungal pathogen that has become a worldwide public health threat. C. auris clinical isolates are often resistant to one or more antifungal drug classes, and thus, there is a high unmet medical need for the development of new therapeutic strategies effective against C. auris. Additionally, C. auris possesses several virulence traits, including the ability to form biofilms, further contributing to its drug resistance, and complicating the treatment of C. auris infections. Here we assessed red, green, and blue visible lights alone and in combination with photosensitizing compounds for their efficacies against C. auris biofilms. We found that (1) blue light inhibited and disrupted C. auris biofilms on its own and that the addition of photosensitizing compounds improved its antibiofilm potential; (2) red light inhibited and disrupted C. auris biofilms, but only in combination with photosensitizing compounds; and (3) green light inhibited C. auris biofilms in combination with photosensitizing compounds, but had no effects on disrupting C. auris biofilms. Taken together, our findings suggest that photodynamic therapy could be an effective non-drug therapeutic strategy against multidrug resistant C. auris biofilm infections.
Insights
Photodynamic therapy using visible light shows promise against drug-resistant Candida auris biofilms. Blue light alone or with photosensitizers, and red or green light with photosensitizers, effectively inhibited or disrupted these challenging fungal infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Fungal infections are rising globally, with limited treatment options.
- Multidrug-resistant fungi, like Candida auris, pose a significant public health threat.
- Candida auris biofilms exacerbate drug resistance and treatment difficulties.
Purpose of the Study:
- To evaluate visible light therapies, alone and with photosensitizers, against Candida auris biofilms.
- To explore non-drug strategies for combating multidrug-resistant fungal infections.
Main Methods:
- Testing the efficacy of red, green, and blue visible light.
- Assessing the impact of photosensitizing compounds in combination with light.
- Evaluating effects on Candida auris biofilm inhibition and disruption.
Main Results:
- Blue light inhibited and disrupted biofilms independently; photosensitizers enhanced this effect.
- Red light required photosensitizers to inhibit and disrupt biofilms.
- Green light inhibited biofilms with photosensitizers but did not disrupt them.
Conclusions:
- Photodynamic therapy with visible light is a potential non-drug strategy against Candida auris biofilms.
- Visible light, particularly blue light, offers a promising avenue for treating multidrug-resistant fungal infections.
- Targeting Candida auris biofilms with light-based therapies addresses a critical unmet medical need.

