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Melanoma resistance to photodynamic therapy: new insights
Ying-Ying Huang1, Daniela Vecchio, Pinar Avci
1Wellman Center for Photomedicine, Massachusetts General Hospital, Boston, MA 02114, USA.
Abstract:
Melanoma is the most dangerous form of skin cancer, with a steeply rising incidence and a poor prognosis in its advanced stages. Melanoma is highly resistant to traditional chemotherapy and radiotherapy, although modern targeted therapies such as BRAF inhibitors are showing some promise. Photodynamic therapy (PDT, the combination of photosensitizing dyes and visible light) has been tested in the treatment of melanoma with some promising results, but melanoma is generally considered to be resistant to it. Optical interference by the highly-pigmented melanin, the antioxidant effect of melanin, the sequestration of photosensitizers inside melanosomes, defects in apoptotic pathways, and the efflux of photosensitizers by ATP-binding cassette transporters have all been implicated in melanoma resistance to PDT. Approaches to overcoming melanoma resistance to PDT include: the discovery of highly active photosensitizers absorbing in the 700-800-nm near infrared spectral region; interventions that can temporarily reduce the amount or pigmentation of the melanin; compounds that can reverse apoptotic defects or inhibit drug-efflux of photosensitizers; and immunotherapy approaches that can take advantage of the ability of PDT to activate the host immune system against the tumor being treated.
Insights
Melanoma is resistant to standard treatments and photodynamic therapy (PDT). New strategies focus on overcoming melanin interference and enhancing PDT efficacy for better melanoma treatment outcomes.
Area of Science:
- Oncology
- Dermatology
- Photomedicine
Background:
- Melanoma is an aggressive skin cancer with rising incidence and poor prognosis.
- It exhibits resistance to conventional therapies like chemotherapy and radiotherapy.
- Photodynamic therapy (PDT) shows limited efficacy in melanoma due to several resistance mechanisms.
Purpose of the Study:
- To explore the challenges and potential strategies for overcoming melanoma resistance to photodynamic therapy (PDT).
- To identify novel approaches for enhancing PDT effectiveness in treating melanoma.
Main Methods:
- Review of existing literature on melanoma resistance mechanisms to PDT.
- Analysis of emerging strategies to enhance PDT efficacy.
- Exploration of photosensitizer development and combination therapies.
Main Results:
- Melanoma resistance to PDT is attributed to melanin's optical and antioxidant properties, photosensitizer sequestration, apoptotic defects, and transporter efflux.
- Promising approaches include developing near-infrared absorbing photosensitizers, reducing melanin interference, targeting apoptotic pathways, and utilizing immunotherapy.
Conclusions:
- Overcoming melanoma's resistance to PDT requires multifaceted strategies.
- Targeted interventions and novel photosensitizers are crucial for improving PDT outcomes in melanoma treatment.
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