High-throughput drug screening in advanced pre-clinical 3D melanoma models identifies potential first-line therapies

Cristian Angeli1, Demetra Philippidou1, Eliane Klein1

  • 1Department of Life Sciences and Medicine, University of Luxembourg, Belvaux, L-4367, Luxembourg.

Abstract

Insights

Novel therapies Daunorubicin HCl and Pyrvinium Pamoate show promise for NRAS-mutant melanoma. These drugs are effective even in MEK inhibitor-resistant melanoma, offering new hope for patients with limited treatment options.

Area of Science:

  • Oncology
  • Pharmacology
  • Biomedical Engineering

Background:

  • Limited treatment options exist for NRAS-mutant melanoma, with over 50% of patients experiencing rapid disease progression on current therapies.
  • Developing effective targeted therapies is challenging due to a lack of preclinical models that accurately represent the tumor microenvironment and intrinsic resistance mechanisms in NRAS-mutant melanoma.

Purpose of the Study:

  • To identify novel therapeutic agents for NRAS-mutant melanoma using advanced preclinical models.
  • To evaluate the efficacy of identified compounds in models mimicking the tumor microenvironment and metastatic sites.

Main Methods:

  • High-throughput screening of over 1,300 compounds in 3D NRAS-mutant melanoma spheroids.
  • Drug-response curve analysis and validation in 3D in vitro models (spheroid and hydrogel systems) simulating skin, lung, and liver metastases.
  • In vivo validation using zebrafish xenograft models.

Main Results:

  • Seventeen candidate compounds were identified, with Daunorubicin HCl (DH) and Pyrvinium Pamoate (PP) showing potent anti-melanoma activity.
  • Pyrvinium Pamoate demonstrated superior cytotoxicity compared to Trametinib and inhibited AKT signaling and invasive behavior.
  • Both DH and PP were effective in NRAS-mutant and BRAFwt/NRASwt melanoma cell lines resistant to MEK inhibitors (Trametinib).

Conclusions:

  • Daunorubicin HCl and Pyrvinium Pamoate show potential as first-line therapies for NRAS-mutant melanoma.
  • These compounds are also effective against MEK inhibitor-resistant melanoma, supporting drug repurposing strategies.
  • Physiologically relevant preclinical models are crucial for identifying effective melanoma therapies.