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Silicon phthalocyanine 4 phototoxicity in Trichophyton rubrum
Minh Lam1, Matthew L Dimaano2, Patricia Oyetakin-White2
1Department of Dermatology, Case Western Reserve University/University Hospitals Case Medical Center, Cleveland, Ohio, USA Case Skin Diseases Research Center, Case Western Reserve University/University Hospitals Case Medical Center, Cleveland, Ohio, USA.
Abstract:
Trichophyton rubrum is the leading pathogen that causes long-lasting skin and nail dermatophyte infections. Currently, topical treatment consists of terbinafine for the skin and ciclopirox for the nails, whereas systemic agents, such as oral terbinafine and itraconazole, are also prescribed. These systemic drugs have severe side effects, including liver toxicity. Topical therapies, however, are sometimes ineffective. This led us to investigate alternative treatment options, such as photodynamic therapy (PDT). Although PDT is traditionally recognized as a therapeutic option for treating a wide range of medical conditions, including age-related macular degeneration and malignant cancers, its antimicrobial properties have also received considerable attention. However, the mechanism(s) underlying the susceptibility of dermatophytic fungi to PDT is relatively unknown. As a noninvasive treatment, PDT uses a photosensitizing drug and light, which, in the presence of oxygen, results in cellular destruction. In this study, we investigated the mechanism of cytotoxicity of PDT in vitro using the silicon phthalocyanine (Pc) 4 [SiPc(OSi(CH3)2(CH2)3N(CH3)2)(OH)] in T. rubrum. Confocal microscopy revealed that Pc 4 binds to cytoplasmic organelles, and upon irradiation, reactive oxygen species (ROS) are generated. The impairment of fungal metabolic activities as measured by an XTT (2,3-bis[2-methoxy-4-nitro-5-sulfophenyl]-2H-tetrazolium-5-carboxyanilide inner salt) assay indicated that 1.0 μM Pc 4 followed by 670 to 675 nm light at 2.0 J/cm(2) reduced the overall cell survival rate, which was substantiated by a dry weight assay. In addition, we found that this therapeutic approach is effective against terbinafine-sensitive (24602) and terbinafine-resistant (MRL666) strains. These data suggest that Pc 4-PDT may have utility as a treatment for dermatophytosis.
Insights
Photodynamic therapy (PDT) using silicon phthalocyanine 4 (Pc 4) effectively combats Trichophyton rubrum, a common cause of fungal skin and nail infections. This innovative treatment shows promise against both terbinafine-sensitive and resistant strains, offering a potential alternative to drugs with severe side effects.
Area of Science:
- Mycology
- Photochemistry
- Dermatology
Background:
- Trichophyton rubrum causes persistent fungal infections, with current treatments like terbinafine and ciclopirox having limitations.
- Systemic antifungal drugs carry risks of severe side effects, such as liver toxicity.
- Topical treatments can be ineffective, necessitating exploration of alternative therapies.
Purpose of the Study:
- To investigate the mechanism of photodynamic therapy (PDT) cytotoxicity against Trichophyton rubrum.
- To evaluate the efficacy of silicon phthalocyanine 4 (Pc 4) mediated PDT in vitro.
- To determine if Pc 4-PDT is effective against terbinafine-resistant strains.
Main Methods:
- In vitro assessment of PDT using silicon phthalocyanine 4 (Pc 4) on T. rubrum.
- Confocal microscopy to observe Pc 4 localization within fungal cells.
- XTT and dry weight assays to quantify fungal cell survival and metabolic activity after PDT.
Main Results:
- Pc 4 localized to cytoplasmic organelles and generated reactive oxygen species (ROS) upon irradiation.
- A specific concentration of Pc 4 (1.0 μM) and light (670-675 nm, 2.0 J/cm²) significantly reduced T. rubrum cell survival.
- The PDT approach demonstrated efficacy against both terbinafine-sensitive and terbinafine-resistant T. rubrum strains.
Conclusions:
- Pc 4-mediated PDT induces cytotoxicity in T. rubrum through ROS generation.
- This PDT method is effective against a broad spectrum of T. rubrum, including resistant strains.
- Pc 4-PDT represents a potential novel therapeutic strategy for treating dermatophytosis.
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