Potential of Nanoparticle‐Based Phototherapies for Future Treatment of Uveal Melanoma

This review aims at exploring nanoparticle-based phototherapies of uveal melanoma (UM), the most common primary intraocular malignancy in adults with an estimated incidence of 5-7 cases per million individuals per year, a disproportionately high metastatic risk and poor prognosis in advanced stages. UM exhibits unique biological and anatomical features, including an immune-privileged ocular microenvironment, the blood-ocular barrier, and high melanin content, contributing to therapeutic complexity. Current treatments, including radiotherapy, surgery, and systemic therapies, achieve local tumor control but remain limited by adverse effects, recurrence, and insufficient efficacy against metastatic disease. Laser-based therapies, including transpupillary thermotherapy and photodynamic therapy, offer minimally invasive alternatives. However, their performance is constrained by limited light penetration, melanin-induced uneven absorption, and incomplete tumor eradication. Recent advances in nanotechnology offer opportunities to overcome these limitations. Nanoparticle-based phototherapies can improve tumor targeting, photosensitizer delivery, and localized activation while reducing off-target effects. Multifunctional nanoplatforms may combine imaging, drug delivery, and synergistic therapies such as immunotherapy or chemotherapy. Although promising preclinical results highlight improved tumor control and antitumor responses, challenges related to safety, biodistribution, and clinical translation remain. This review discusses these challenges and future directions for optimized nanoplatforms to improve disease management and metastasis prevention.

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Publication Details

Journal
Advanced Science
Published
2026-08-31
DOI
https://doi.org/10.1002/advs.77396
Primary Topic
Ocular Oncology and Treatments
Type
article
Field-Weighted Citation Impact
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article

Potential of Nanoparticle‐Based Phototherapies for Future Treatment of Uveal Melanoma

Sean Edward Dunn, Jean‐Olivier Durand, Jérôme Lacombe, Frédérique Cunin et al.
Advanced Science
Ocular Oncology and Treatments
article

Potential of Nanoparticle‐Based Phototherapies for Future Treatment of Uveal Melanoma

Sean Edward Dunn, Jean‐Olivier Durand, Jérôme Lacombe, Frédérique Cunin, Émilie Lambert, Magali Gary‐Bobo, Christophe Nguyen, Frédéric Zenhausern, Justin Moser
article en

Abstract

This review aims at exploring nanoparticle-based phototherapies of uveal melanoma (UM), the most common primary intraocular malignancy in adults with an estimated incidence of 5-7 cases per million individuals per year, a disproportionately high metastatic risk and poor prognosis in advanced stages. UM exhibits unique biological and anatomical features, including an immune-privileged ocular microenvironment, the blood-ocular barrier, and high melanin content, contributing to therapeutic complexity. Current treatments, including radiotherapy, surgery, and systemic therapies, achieve local tumor control but remain limited by adverse effects, recurrence, and insufficient efficacy against metastatic disease. Laser-based therapies, including transpupillary thermotherapy and photodynamic therapy, offer minimally invasive alternatives. However, their performance is constrained by limited light penetration, melanin-induced uneven absorption, and incomplete tumor eradication. Recent advances in nanotechnology offer opportunities to overcome these limitations. Nanoparticle-based phototherapies can improve tumor targeting, photosensitizer delivery, and localized activation while reducing off-target effects. Multifunctional nanoplatforms may combine imaging, drug delivery, and synergistic therapies such as immunotherapy or chemotherapy. Although promising preclinical results highlight improved tumor control and antitumor responses, challenges related to safety, biodistribution, and clinical translation remain. This review discusses these challenges and future directions for optimized nanoplatforms to improve disease management and metastasis prevention.

Advanced Science
École Nationale Supérieure de Chimie de Montpellier (FR), Centre National de la Recherche Scientifique (FR), Université de Montpellier (FR), Arizona Research Center (US), HonorHealth (US), Institut des Biomolécules Max Mousseron (FR)
Openalex Percentile: Top 8%
Ocular Oncology and Treatments
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