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Precision Oncology in Ocular Melanoma: Integrating Molecular and Liquid Biopsy Biomarkers
Snježana Kaštelan1, Fanka Gilevska2, Zora Tomić3
1Clinical Hospital Dubrava, Department of Ophthalmology, School of Medicine, University of Zagreb, 10000 Zagreb, Croatia.
Abstract:
Ocular melanomas, comprising uveal melanoma (UM) and conjunctival melanoma (CoM), represent the most common primary intraocular and ocular surface malignancies in adults. Although rare compared with cutaneous melanoma, they exhibit unique molecular landscapes that provide critical opportunities for biomarker-driven precision medicine. In UM, recurrent mutations in GNAQ and GNA11, together with alterations in BAP1, SF3B1, and EIF1AX, have emerged as key prognostic biomarkers that stratify metastatic risk and guide surveillance strategies. Conversely, in CoM, the mutational spectrum overlaps with cutaneous melanoma, with frequent alterations in BRAF, NRAS, NF1, and KIT, offering actionable targets for personalised treatment. Beyond genomics, epigenetic signatures, microRNAs, and protein-based markers provide further insights into tumour progression, microenvironmental remodelling, and immune evasion. In parallel, liquid biopsy has emerged as a minimally invasive approach for real-time disease monitoring. Analyses of circulating tumour DNA (ctDNA), circulating tumour cells (CTCs), and exosome-derived microRNAs demonstrate increasing potential for early detection of minimal residual disease, prognostic assessment, and evaluation of treatment response. However, the clinical integration of these biomarkers remains limited by tumour heterogeneity, technical variability, and the lack of unified translational frameworks. This review synthesises current knowledge of molecular and liquid biopsy biomarkers in ocular melanoma, highlighting their relevance for diagnosis, prognosis, and treatment personalisation. The integration of established tissue-based molecular markers with novel liquid biopsy technologies will enable a unique framework for biomarker-guided precision oncology and risk-adapted surveillance in uveal and conjunctival melanoma, offering insight into strategies for early detection, therapeutic monitoring, and personalised clinical management.
Insights
Ocular melanomas (UM and CoM) have unique molecular markers for precision medicine. Liquid biopsies offer new ways to monitor disease and personalize treatment for these rare cancers.
Area of Science:
- Ophthalmology and Oncology
- Molecular Diagnostics
- Precision Medicine
Background:
- Ocular melanomas, including uveal melanoma (UM) and conjunctival melanoma (CoM), are the most common adult intraocular and ocular surface malignancies.
- These rare cancers possess distinct molecular profiles, crucial for developing targeted therapies and personalized treatment strategies.
Purpose of the Study:
- To review current knowledge on molecular and liquid biopsy biomarkers in ocular melanoma.
- To highlight the relevance of these biomarkers for diagnosis, prognosis, and personalized treatment.
- To explore the potential of integrating tissue-based and liquid biopsy markers for precision oncology.
Main Methods:
- Review of current literature on molecular alterations in UM and CoM.
- Analysis of genomic (GNAQ, GNA11, BAP1, SF3B1, EIF1AX, BRAF, NRAS, NF1, KIT) and non-genomic (epigenetics, microRNAs, proteins) biomarkers.
- Evaluation of liquid biopsy techniques (ctDNA, CTCs, exosomal microRNAs) for disease monitoring.
Main Results:
- UM is characterized by GNAQ/GNA11 mutations and BAP1/SF3B1 alterations, aiding risk stratification.
- CoM shares mutations with cutaneous melanoma (BRAF, NRAS, etc.), providing therapeutic targets.
- Liquid biopsies show promise for early detection, prognosis, and treatment response assessment, though clinical integration faces challenges.
Conclusions:
- Molecular and liquid biopsy biomarkers are essential for advancing precision medicine in ocular melanoma.
- Integrating tissue and liquid biomarkers offers a framework for biomarker-guided oncology and risk-adapted surveillance.
- Further research is needed to overcome challenges and fully implement these biomarkers for improved patient management.
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