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Updated: Aug 29, 2025

A Human Glioblastoma Organotypic Slice Culture Model for Study of Tumor Cell Migration and Patient-specific Effects of Anti-Invasive Drugs
Published on: July 20, 2017
Patient-derived head and neck tumor slice cultures: a versatile tool to study oncolytic virus action
Annette Runge1, Melissa Mayr2, Theresa Schwaiger2
1Department of Otorhinolaryngology, Head and Neck Surgery, Medical University of Innsbruck, Innsbruck, Austria.
Abstract:
Head and neck cancer etiology and architecture is quite diverse and complex, impeding the prediction whether a patient could respond to a particular cancer immunotherapy or combination treatment. A concomitantly arising caveat is obviously the translation from pre-clinical, cell based in vitro systems as well as syngeneic murine tumor models towards the heterogeneous architecture of the human tumor ecosystems. To bridge this gap, we have established and employed a patient-derived HNSCC (head and neck squamous cell carcinoma) slice culturing system to assess immunomodulatory effects as well as permissivity and oncolytic virus (OV) action. The heterogeneous contexture of the human tumor ecosystem including tumor cells, cancer-associated fibroblasts and immune cells was preserved in our HNSCC slice culturing approach. Importantly, the immune cell compartment remained to be functional and cytotoxic T-cells could be activated by immunostimulatory antibodies. In addition, we uncovered that a high proportion of the patient-derived HNSCC slice cultures were susceptible to the OV VSV-GP. More specifically, VSV-GP infects a broad spectrum of tumor-associated lineages including epithelial and stromal cells and can induce apoptosis. In sum, this human tumor ex vivo platform might complement pre-clinical studies to eventually propel cancer immune-related drug discovery and ease the translation to the clinics.
Insights
This study introduces a patient-derived head and neck squamous cell carcinoma (HNSCC) slice culture system. This platform accurately models human tumors to test immunotherapies and oncolytic viruses, improving cancer drug discovery.
Area of Science:
- Oncology
- Immunology
- Virology
Background:
- Head and neck cancer (HNSCC) presents diverse etiologies, complicating treatment response prediction.
- Translating findings from preclinical models to human tumor ecosystems remains a challenge.
Purpose of the Study:
- To establish and utilize a patient-derived HNSCC slice culture system.
- To assess immunomodulatory effects and oncolytic virus (OV) action within a human tumor context.
Main Methods:
- Developed a patient-derived HNSCC slice culturing system.
- Preserved the heterogeneous architecture of human tumor ecosystems, including tumor cells, fibroblasts, and immune cells.
- Evaluated the functionality of the immune cell compartment and T-cell activation.
Main Results:
- The HNSCC slice culture system maintained the heterogeneous tumor microenvironment.
- Immune cells remained functional, with cytotoxic T-cells activated by immunostimulatory antibodies.
- A significant proportion of HNSCC slice cultures were susceptible to the oncolytic virus VSV-GP, which induced apoptosis in tumor-associated lineages.
Conclusions:
- The patient-derived HNSCC slice culture platform effectively models human tumor ecosystems ex vivo.
- This platform can assess immunomodulatory effects and oncolytic virus efficacy.
- It holds potential to bridge the gap between preclinical research and clinical translation for cancer drug discovery.

