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Increased PDT Efficacy When Associated with Nitroglycerin: A Study on Retinoblastoma Xenografted on Mice
Carole D Thomas1,2,3, Mihaela Lupu1,3,4,5, Florent Poyer1,3,4,5
1Institut Curie, Bât. 112, Centre Universitaire, 91405 Orsay, France.
Purposes:
The aim of the study was to assess the efficacy of a treatment protocol that combines photodynamic therapy (PDT) and nitroglycerin (NG) on human retinoblastoma tumors xenografted on mice. We aimed to increase the PDT efficiency (in our least treatment-responsive retinoblastoma line) with better PS delivery to the tumor generated by NG, which is known to dilate vessels and enhance the permeability and retention of macromolecules in solid tumors.
Methods:
In vivo follow-up of the therapeutic effects was performed by sodium MRI, which directly monitors variations in sodium concentrations non-invasively and can be used to track the tumor response to therapy. NG ointment was applied one hour before PDT. The PDT protocol involves double-tumor targeting, i.e., cellular and vascular. The first PS dose was injected followed by a second one, separated by a 3 h interval. The timelapse allowed the PS molecules to penetrate tumor cells. Ten minutes after the second dose, the PS was red-light-activated.
Results:
In this study, we observed that the PDT effect was enhanced by applying nitroglycerin ointment to the tumor-bearing animal's skin. PDT initiates the bystander effect on retinoblastomas, and NG increases this effect by increasing the intratumoral concentration of PS, which induces a higher production of ROS in the illuminated region and thus increases the propagation of the cell death signal deeper into the tumor (bystander effect).
Insights
Nitroglycerin (NG) enhances photodynamic therapy (PDT) efficacy for retinoblastoma by improving photosensitizer (PS) delivery. This combination therapy boosts the bystander effect, leading to increased tumor cell death.
Area of Science:
- Oncology
- Biomedical Engineering
- Photomedicine
Background:
- Retinoblastoma is a pediatric eye cancer.
- Photodynamic therapy (PDT) is a cancer treatment that uses light to activate a drug.
- Improving PDT efficacy, especially in less responsive tumors, is crucial.
Purpose of the Study:
- To evaluate a combined treatment of PDT and nitroglycerin (NG) for retinoblastoma.
- To enhance photosensitizer (PS) delivery to tumors using NG.
- To assess the impact of NG on PDT-induced bystander effects.
Main Methods:
- Xenografted human retinoblastoma tumors in mice were used.
- Nitroglycerin (NG) ointment was applied topically before PDT.
- PDT involved a double PS dose and red-light activation.
- Tumor response was monitored non-invasively using sodium MRI.
Main Results:
- NG application significantly enhanced the therapeutic effect of PDT.
- NG increased intratumoral PS concentration, leading to higher ROS production.
- The enhanced PDT boosted the bystander effect, increasing tumor cell death propagation.
Conclusions:
- Combining NG with PDT improves treatment outcomes for retinoblastoma.
- NG facilitates better PS delivery and enhances the PDT-induced bystander effect.
- This combination strategy offers a promising approach for treating resistant retinoblastoma.
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