Related Experiment Video
Updated: Jul 21, 2025

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Metabolic modelling-based in silico drug target prediction identifies six novel repurposable drugs for melanoma
Tamara Bintener1, Maria Pires Pacheco1, Demetra Philippidou1
1Department of Life Sciences and Medicine, University of Luxembourg, Belvaux, Luxembourg.
Abstract:
Despite high initial response rates to targeted kinase inhibitors, the majority of patients suffering from metastatic melanoma present with high relapse rates, demanding for alternative therapeutic options. We have previously developed a drug repurposing workflow to identify metabolic drug targets that, if depleted, inhibit the growth of cancer cells without harming healthy tissues. In the current study, we have applied a refined version of the workflow to specifically predict both, common essential genes across various cancer types, and melanoma-specific essential genes that could potentially be used as drug targets for melanoma treatment. The in silico single gene deletion step was adapted to simulate the knock-out of all targets of a drug on an objective function such as growth or energy balance. Based on publicly available, and in-house, large-scale transcriptomic data metabolic models for melanoma were reconstructed enabling the prediction of 28 candidate drugs and estimating their respective efficacy. Twelve highly efficacious drugs with low half-maximal inhibitory concentration values for the treatment of other cancers, which are not yet approved for melanoma treatment, were used for in vitro validation using melanoma cell lines. Combination of the top 4 out of 6 promising candidate drugs with BRAF or MEK inhibitors, partially showed synergistic growth inhibition compared to individual BRAF/MEK inhibition. Hence, the repurposing of drugs may enable an increase in therapeutic options e.g., for non-responders or upon acquired resistance to conventional melanoma treatments.
Insights
Drug repurposing identifies novel metabolic targets for metastatic melanoma treatment. This approach predicts effective drugs, offering new options for patients resistant to current therapies.
Area of Science:
- Computational biology
- Oncology
- Pharmacology
Background:
- Metastatic melanoma has high relapse rates despite targeted kinase inhibitors.
- Alternative therapeutic strategies are crucial for improving patient outcomes.
- Drug repurposing offers a pathway to identify novel cancer treatments.
Purpose of the Study:
- To refine a drug repurposing workflow for identifying essential genes in melanoma.
- To predict common and melanoma-specific essential genes as potential drug targets.
- To identify and validate candidate drugs for melanoma treatment.
Main Methods:
- Reconstruction of metabolic models for melanoma using transcriptomic data.
- In silico simulation of gene knock-outs to assess drug target essentiality.
- In vitro validation of predicted drugs in melanoma cell lines.
- Combination therapy testing with BRAF/MEK inhibitors.
Main Results:
- Prediction of 28 candidate drugs, with 12 selected for in vitro validation.
- Identification of 6 promising drugs with low half-maximal inhibitory concentrations.
- Partial synergistic growth inhibition observed when combining top drugs with BRAF/MEK inhibitors.
Conclusions:
- Drug repurposing is a viable strategy to expand therapeutic options for metastatic melanoma.
- Identified drugs may benefit non-responders or those with acquired resistance.
- This approach provides a foundation for developing new melanoma treatments.

