Sarcoma Spheroids and Organoids-Promising Tools in the Era of Personalized Medicine

Gianluca Colella1, Flavio Fazioli2, Michele Gallo3

  • 1Division of Orthopedic Surgery, Department of Human Health, Federico II University of Naples, 80133 Naples, Italy. glc.colella@gmail.com.

Insights

Three-dimensional (3D) cell cultures, including spheroids and organoids, offer patient-specific models for rare sarcoma research. These advanced in vitro models aid in personalized cancer medicine and predicting treatment responses.

Area of Science:

  • Oncology
  • Biomedical Engineering
  • Cancer Research

Background:

  • Personalized medicine is revolutionizing cancer treatment by considering tumor-specific molecular and genetic variations.
  • Sarcomas, a diverse group of rare cancers, present treatment challenges due to their heterogeneity and low incidence.
  • Traditional 2D cell cultures have limitations in replicating the complex tumor microenvironment.

Purpose of the Study:

  • To review recent advancements and future directions of spheroid and organoid in vitro models for rare sarcomas.
  • To explore the potential of these 3D models in investigating sarcoma molecular biology and predicting clinical outcomes.
  • To highlight how these models can facilitate personalized sarcoma treatment strategies.

Main Methods:

  • Utilizing three-dimensional (3D) cell culture techniques, including spheroids and organoids, derived from patient tumor cells or biopsies.
  • Analyzing the ability of these models to reflect tumor heterogeneity, architecture, and cell-extracellular matrix interactions.
  • Evaluating their utility in drug testing, studying metastasis, and dormancy mechanisms.

Main Results:

  • 3D cell cultures provide patient-specific in vitro models that better mimic native solid tumors than 2D cultures.
  • These models can bridge the gap between preclinical research and clinical application for rare cancers like sarcomas.
  • Spheroid and organoid models show promise for personalized drug screening and understanding tumor biology.

Conclusions:

  • Spheroid and organoid models represent a significant advancement for studying rare sarcomas.
  • These patient-specific 3D cultures are crucial tools for advancing personalized sarcoma treatment.
  • Future improvements, such as incorporating vasculature and the immune system, will further enhance their predictive power.

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