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Updated: Oct 27, 2025

Monitoring Cancer Cell Invasion and T-Cell Cytotoxicity in 3D Culture
Published on: June 23, 2020
Three-Dimensional Culture Models to Study Innate Anti-Tumor Immune Response: Advantages and Disadvantages
Alessandro Poggi1, Federico Villa1, Jordi Leonardo Castrillo Fernadez1
1Molecular Oncology and Angiogenesis Unit, IRCCS Ospedale Policlinico San Martino, 16132 Genoa, Italy.
Abstract:
Several approaches have shown that the immune response against tumors strongly affects patients' clinical outcome. Thus, the study of anti-tumor immunity is critical to understand and potentiate the mechanisms underlying the elimination of tumor cells. Natural killer (NK) cells are members of innate immunity and represent powerful anti-tumor effectors, able to eliminate tumor cells without a previous sensitization. Thus, the study of their involvement in anti-tumor responses is critical for clinical translation. This analysis has been performed in vitro, co-incubating NK with tumor cells and quantifying the cytotoxic activity of NK cells. In vivo confirmation has been applied to overcome the limits of in vitro testing, however, the innate immunity of mice and humans is different, leading to discrepancies. Different activating receptors on NK cells and counter-ligands on tumor cells are involved in the antitumor response, and innate immunity is strictly dependent on the specific microenvironment where it takes place. Thus, three-dimensional (3D) culture systems, where NK and tumor cells can interact in a tissue-like architecture, have been created. For example, tumor cell spheroids and primary organoids derived from several tumor types, have been used so far to analyze innate immune response, replacing animal models. Herein, we briefly introduce NK cells and analyze and discuss in detail the properties of 3D tumor culture systems and their use for the study of tumor cell interactions with NK cells.
Insights
Natural killer (NK) cells are crucial for eliminating tumor cells. Three-dimensional (3D) culture systems offer a more accurate way to study NK cell anti-tumor activity compared to traditional methods.
Area of Science:
- Immunology
- Cancer Biology
- Cell Biology
Background:
- Anti-tumor immunity significantly impacts patient outcomes.
- Natural killer (NK) cells are key innate immune effectors with potent anti-tumor capabilities.
- Understanding NK cell anti-tumor responses is vital for clinical applications.
Purpose of the Study:
- To introduce Natural Killer (NK) cells.
- To analyze the properties of three-dimensional (3D) tumor culture systems.
- To discuss the utility of 3D systems for studying NK cell-tumor cell interactions.
Main Methods:
- In vitro co-incubation of NK cells and tumor cells to quantify cytotoxicity.
- In vivo studies to validate in vitro findings, noting species-specific immune differences.
- Development and application of 3D culture systems (spheroids, organoids) to mimic tissue architecture for immune cell interaction studies.
Main Results:
- Traditional in vitro and in vivo models have limitations due to species differences and lack of microenvironmental context.
- Three-dimensional (3D) culture systems provide a more physiologically relevant platform for studying NK cell-tumor cell interactions.
- 3D models like spheroids and organoids can replace animal models for analyzing innate immune responses against tumors.
Conclusions:
- NK cell activity is critical for anti-tumor immunity.
- Three-dimensional (3D) tumor models represent an advanced approach to studying innate immune responses.
- 3D culture systems enhance the understanding of NK cell-mediated tumor cell elimination in a microenvironment-relevant context.

