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Updated: Sep 29, 2025

Implantation and Evaluation of Melanoma in the Murine Choroid via Optical Coherence Tomography
Published on: December 2, 2022
Identification of New Vulnerabilities in Conjunctival Melanoma Using Image-Based High Content Drug Screening
Katya Nardou1, Michael Nicolas1, Fabien Kuttler2
1Jules-Gonin Eye Hospital, University of Lausanne, 1004 Lausanne, Switzerland.
Abstract:
Recent evidence suggests that numerous similarities exist between the genomic landscapes of both conjunctival and cutaneous melanoma. Since alterations of several components of the MAP kinases, PI3K/mTOR, and cell cycle pathways have been reported in conjunctival melanoma, we decided to assess the sensitivity of conjunctival melanoma to targeted inhibition mostly of kinase inhibitors. A high content drug screening assay based on automated fluorescence microscopy was performed in three conjunctival melanoma cell lines with different genomic backgrounds with 489 kinase inhibitors and 53 other inhibitors. IC50 and apoptosis induction were respectively assessed for 53 and 48 compounds. The genomic background influenced the response to MAK and PI3K/mTOR inhibition, more specifically cell lines with BRAF mutations were more sensitive to BRAF/MEK inhibition, while CRMM2 bearing the NRAS mutation was more sensitive to PI3k/mTOR inhibition. All cell lines demonstrated sensitivity to cell cycle inhibition, being more pronounced in CRMM2, especially with polo-like inhibitors. Our data also revealed new vulnerabilities to Hsp90 and Src inhibition. This study demonstrates that the genomic background partially influences the response to targeted therapy and uncovers a large panel of potential vulnerabilities in conjunctival melanoma that may expand available options for the management of this tumor.
Insights
Conjunctival melanoma shows sensitivity to targeted therapies, with drug response influenced by specific gene mutations. This research identifies new vulnerabilities, potentially improving treatment options for this rare eye cancer.
Area of Science:
- Oncology
- Genomics
- Pharmacology
Background:
- Conjunctival melanoma shares genomic similarities with cutaneous melanoma.
- Alterations in MAP kinase, PI3K/mTOR, and cell cycle pathways are reported in conjunctival melanoma.
Purpose of the Study:
- To assess conjunctival melanoma sensitivity to targeted kinase inhibitors.
- To explore the influence of genomic background on drug response.
Main Methods:
- High content drug screening using automated fluorescence microscopy.
- Testing 489 kinase inhibitors and 53 other inhibitors across three conjunctival melanoma cell lines.
- Assessing IC50 and apoptosis induction for selected compounds.
Main Results:
- Genomic background impacts response to MAP kinase (MAK) and PI3K/mTOR inhibition.
- BRAF-mutated cell lines are sensitive to BRAF/MEK inhibition; NRAS-mutated CRMM2 is sensitive to PI3K/mTOR inhibition.
- All cell lines show sensitivity to cell cycle inhibition, particularly CRMM2 with polo-like inhibitors. New vulnerabilities to Hsp90 and Src inhibition were identified.
Conclusions:
- Genomic background partially influences targeted therapy response in conjunctival melanoma.
- Identified numerous potential drug vulnerabilities that could expand treatment options.

