Planar neural organoids as an advanced in vitro model to study patient-derived melanoma metastasis

Joydeb Majumder1, Elizabeth E Torr1, Peter F Favreau2

  • 1Department of Orthopedics and Rehabilitation, University of Wisconsin-Madison, Madison, WI, 53705, USA.

Scientific Reports
|July 3, 2026
PubMed

Insights

This study introduces a novel 3D organoid model for studying melanoma brain metastasis. The human organoid system offers a more accurate in vitro platform than traditional 2D cultures for cancer research.

Area of Science:

  • Oncology
  • Biomedical Engineering
  • Stem Cell Biology

Background:

  • Metastasis is the primary cause of cancer-related mortality.
  • Current models like 2D cultures and animal studies have limitations in mimicking human physiology.
  • Human organoid models offer a promising 3D environment for studying complex cellular interactions.

Purpose of the Study:

  • To engineer an in vitro melanoma metastasis model using patient-derived cells and human organoids.
  • To investigate melanoma cell growth and evaluate anti-cancer drug efficacy within this 3D model.
  • To establish a more physiologically relevant platform for studying metastatic cancers.

Main Methods:

  • Utilized patient-derived melanoma cells.
  • Developed a 3D model using human-induced pluripotent stem cells (iPSCs)-derived planar neural organoids (PNOs).
  • Investigated melanoma cell metastasis and drug response in the PNO system.

Main Results:

  • The 3D PNO system demonstrated superior performance compared to conventional 2D cultures for modeling melanoma brain metastases.
  • The engineered model effectively simulated metastatic cancer processes in a near-physiological environment.
  • The study validated the potential of PNOs for evaluating anti-cancer drug treatments.

Conclusions:

  • The 3D PNO system represents a significant advancement over 2D cultures for studying melanoma brain metastasis.
  • This organoid model provides a valuable tool for understanding and developing therapies for poorly understood metastatic cancers.
  • The PNO platform facilitates in vitro research under more realistic physiological conditions.

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