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Author Spotlight: Photodynamic Therapy as a Novel Approach to Induce Petite Colonies in Drug-Resistant Candida for Antifungal Research
Published on: March 29, 2024
Recent Advances in Photodynamic Therapy against Fungal Keratitis
Jia-Horung Hung1,2, Chaw-Ning Lee3,4, Huai-Wen Hsu5
1Institute of Clinical Medicine, College of Medicine, National Cheng Kung University, Tainan 701, Taiwan.
Abstract:
Fungal keratitis is a serious clinical infection on the cornea caused by fungi and is one of the leading causes of blindness in Asian countries. The treatment options are currently limited to a few antifungal agents. With the increasing incidence of drug-resistant infections, many patients fail to respond to antibiotics. Riboflavin-mediated corneal crosslinking (similar to photodynamic therapy (PDT)) for corneal ectasia was approved in the US in the early 2000s. Current evidence suggests that PDT could have the potential to inhibit fungal biofilm formation and overcome drug resistance by using riboflavin and rose bengal as photosensitizers. However, only a few clinical trials have been initiated in anti-fungal keratitis PDT treatment. Moreover, the removal of the corneal epithelium and repeated application of riboflavin and rose bengal are required to improve drug penetration before and during PDT. Thus, an improvement in trans-corneal drug delivery is mandatory for a successful and efficient treatment. In this article, we review the studies published to date using PDT against fungal keratitis and aim to enhance the understanding and awareness of this research area. The potential of modifying photosensitizers using nanotechnology to improve the efficacy of PDT on fungal keratitis is also briefly reviewed.
Insights
Photodynamic therapy (PDT) shows promise for treating fungal keratitis, a leading cause of blindness. Research explores enhancing PDT efficacy through improved drug delivery and nanotechnology for resistant fungal infections.
Area of Science:
- Ophthalmology
- Mycology
- Photomedicine
Background:
- Fungal keratitis is a major cause of blindness, particularly in Asia.
- Limited antifungal agents and rising drug resistance pose treatment challenges.
- Photodynamic therapy (PDT) is explored as an alternative treatment for fungal keratitis.
Purpose of the Study:
- To review current research on PDT for fungal keratitis.
- To highlight the need for improved trans-corneal drug delivery in PDT.
- To explore nanotechnology's potential in enhancing PDT efficacy.
Main Methods:
- Review of published studies on PDT for fungal keratitis.
- Discussion of photosensitizers like riboflavin and rose bengal.
- Exploration of nanotechnology applications for photosensitizers.
Main Results:
- PDT demonstrates potential in inhibiting fungal biofilms and overcoming drug resistance.
- Current PDT protocols require epithelium removal and repeated photosensitizer application.
- Limited clinical trials exist for anti-fungal keratitis PDT.
Conclusions:
- PDT is a promising therapeutic strategy for fungal keratitis.
- Enhanced trans-corneal drug delivery is crucial for effective PDT.
- Nanotechnology may improve photosensitizer efficacy in fungal keratitis treatment.

