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Quantifying Antibody-Dependent Cellular Cytotoxicity in a Tumor Spheroid Model: Application for Drug Discovery
Published on: April 26, 2024
Experimental anti-tumor therapy in 3-D: spheroids--old hat or new challenge?
Juergen Friedrich1, Reinhard Ebner, Leoni A Kunz-Schughart
1Institute of Pathology, University of Regensburg, Germany.
Purpose:
To give a state-of-the-art overview on the promise of three-dimensional (3-D) culture systems for anticancer drug development, with particular emphasis on multicellular tumor spheroids (MCTS).
Results And Conclusions:
Cell-based assays have become an integral component in many stages of routine anti-tumor drug testing. However, they are almost always based on homogenous monolayer or suspension cultures and thus represent a rather artificial cellular environment. 3-D cultures--such as the well established spheroid culture system--better reflect the in vivo behavior of cells in tumor tissues and are increasingly recognized as valuable advanced tools for evaluating the efficacy of therapeutic intervention. The present article summarizes past and current applications and particularly discusses technological challenges, required improvements and recent progress with the use of the spheroid model in experimental therapeutics, as a basis for sophisticated drug/therapy screening. A brief overview is given focusing on the nomenclature of spherical 3-D cultures, their potential to mimic many aspects of the pathophysiological situation in tumors, and currently available protocols for culturing and analysis. A list of spheroid-forming epithelial cancer cell lines of different origin is provided and the recent trend to use spheroids for testing combination treatment strategies is highlighted. Finally, various spheroid co-culture approaches are presented that have been established to study heterologous cell interactions in solid tumors and thereby are able to reflect the cellular tumor environment with increasing accuracy. The intriguing observation that in order to retain certain tumor initiating cell properties, some primary tumor cell populations must be maintained exclusively in 3-D culture is mentioned, adding a new but fascinating challenge for future therapeutic campaigns.
Insights
Three-dimensional (3-D) culture systems, particularly multicellular tumor spheroids (MCTS), offer a more realistic model for anticancer drug development than traditional cell cultures. These advanced models better mimic in vivo tumor behavior, improving drug efficacy evaluation.
Area of Science:
- Oncology
- Biotechnology
- Drug Development
Background:
- Traditional cell-based assays for anti-tumor drug testing often use artificial environments like monolayer cultures.
- These conventional methods do not accurately reflect the complex in vivo tumor microenvironment.
Purpose of the Study:
- To provide a comprehensive overview of three-dimensional (3-D) culture systems in anticancer drug development.
- To highlight the potential and applications of multicellular tumor spheroids (MCTS) as advanced drug screening tools.
Main Methods:
- Review of current literature on 3-D spheroid culture systems for drug development.
- Discussion of protocols for spheroid culturing, analysis, and co-culture approaches.
- Compilation of a list of spheroid-forming cancer cell lines.
Main Results:
- 3-D spheroid cultures better mimic in vivo tumor pathophysiology compared to 2-D cultures.
- Spheroid models are increasingly used for evaluating therapeutic interventions and combination treatments.
- Co-culture spheroid approaches enhance the accuracy of reflecting cellular tumor heterogeneity.
Conclusions:
- Multicellular tumor spheroids represent a significant advancement for preclinical anticancer drug screening.
- Further technological improvements are needed to overcome challenges in spheroid-based drug development.
- 3-D culture systems may be essential for maintaining specific tumor-initiating cell properties, posing future therapeutic challenges.

