Retinoblastoma: might photodynamic therapy be an option?
Ricardo Teixo1, Mafalda Laranjo2,3,4, Ana Margarida Abrantes1,5,6
1Unit of Biophysics, Faculty of Medicine, University of Coimbra, Azinhaga de Santa Comba, Celas, 3000-548, Coimbra, Portugal.
Abstract:
Retinoblastoma is a tumor that mainly affects children under 5 years, all over the world. The origin of these tumors is related with mutations in the RB1 gene, which may result from genetic alterations in cells of the germ line or in retinal somatic cells. In developing countries, the number of retinoblastoma-related deaths is higher due to less access to treatment, unlike what happens in developed countries where survival rates are higher. However, treatments such as chemotherapy and radiotherapy, although quite effective in treating this type of cancer, do not avoid high indices of mortality due to secondary malignances which are quite frequent in these patients. Additionally, treatments such as cryotherapy, thermotherapy, thermochemotherapy, or brachytherapy represent other options for retinoblastoma. When all these approaches fail, enucleation is the last option. Photodynamic therapy might be considered as an alternative, particularly because of its non-mutagenic character. Photodynamic therapy is a treatment modality based on the administration of photosensitizing molecules that only upon irradiation of the tumor with a light source of appropriate wavelength are activated, triggering its antitumor action. This activity may be not only due to direct damage to tumor cells but also due to damage caused to the blood vessels responsible for the vascular supply of the tumor. Over the past decades, several in vitro and in vivo studies were conducted to assess the effectiveness of photodynamic therapy in the treatment of retinoblastoma, and very promising results were achieved.
Insights
Photodynamic therapy shows promise for treating retinoblastoma, a childhood eye cancer. This non-mutagenic approach uses light-activated drugs to target tumor cells and their blood supply, offering a potentially safer alternative.
Area of Science:
- Ophthalmology
- Oncology
- Photomedicine
Background:
- Retinoblastoma is a primary eye cancer affecting young children, often linked to RB1 gene mutations.
- While treatments exist, secondary malignancies and treatment failures necessitate alternative therapeutic strategies.
- Photodynamic therapy (PDT) offers a non-mutagenic approach with potential for direct tumor cell and vasculature damage.
Purpose of the Study:
- To evaluate the efficacy of photodynamic therapy as a treatment for retinoblastoma.
- To explore PDT's non-mutagenic characteristics and its dual mechanism of action against retinoblastoma.
Main Methods:
- Review of in vitro and in vivo studies investigating photodynamic therapy for retinoblastoma.
- Analysis of PDT's mechanism involving photosensitizing agents and targeted light irradiation.
- Assessment of PDT's impact on tumor cells and tumor vascular supply.
Main Results:
- Photodynamic therapy has demonstrated promising results in preclinical and clinical studies for retinoblastoma treatment.
- The non-mutagenic nature of PDT is a significant advantage over traditional therapies.
- PDT's efficacy is attributed to both direct cytotoxicity and anti-angiogenic effects.
Conclusions:
- Photodynamic therapy presents a viable and potentially safer alternative treatment for retinoblastoma.
- Further research and clinical trials are warranted to establish PDT as a standard treatment option.
- PDT's unique mechanism offers hope for improved outcomes in retinoblastoma management.
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