Tumor Cell Suspension

Tumor cell suspension is a preparation of tumor cells dispersed as individual cells or small clusters in a liquid medium, enabling controlled analysis of cancer cell properties. It is typically generated by mechanically and/or enzymatically dissociating tumor tissue, then maintaining the cells in an appropriate buffered culture medium to preserve viability and reduce aggregation. In neuroscience research, suspensions from brain tumors such as gliomas support cell counting, viability assessment, flow cytometry, molecular profiling, and culture-based studies of tumor heterogeneity. They also provide a standardized starting material for investigating interactions between tumor cells and neural or glial cells, evaluating treatments, and modeling processes relevant to tumor growth and invasion.

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JoVE EoE - Neuronal Culture Techniques

Generating an Organoid Culture from a Brain Tumor Cell Suspension

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2025

This video describes the preparation and cultivation of brain tumor organoids from single-cell suspension. Using a laminin-rich extracellular matrix as a scaffold and culture media for nutrients, cells are facilitated to multiply and self-organize within the organoid. Consequently, ex vivo organoids are generated, mimicking cellular diversity and the microenvironment of brain tumors.

Tumor Enzymatic Digestion: A Procedure to Generate Tumor Cell Suspension from Patient-derived Xenograft Cancer Mouse Models

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2023

This video describes the procedure to obtain tumor cell suspension from patient-derived xenograft or PDX cancer mouse models. Small animal models provide an expeditious, reproducible, and adaptable platform to study tumor progression and different metastatic...

Research

JoVE Journal - Cancer Research
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Tractable In Vivo Reprogramming of Tumor Cells to Type 1 Conventional Dendritic Cell-like Cells

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2025

This protocol describes the in vivo reprogramming of mouse cancer cells into type 1 dendritic-like cells within the tumor microenvironment through enforced expression of the transcription factors PU.1, IRF8, and BATF3.

Long-term Orthotopic Transplantation of Tumor Cells into Zebrafish Embryos: An Efficient Method to Deliver Tumor Cells into the Fourth Ventricle of Zebrafish Embryos for Long-term Analysis of Tumor Cell Behavior

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2025

This video demonstrates the orthotopic transplantation of zebrafish brain tumor cells into the fourth ventricle of an immunocompetent zebrafish embryo. This procedure allows for the long-term study of tumor cell invasion and behavior.

Isolation and Culture Expansion of Tumor-specific Endothelial Cells

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Cited by 20 •

2015

We report a reliable method to isolate and culture primary tumor-specific endothelial cells from genetically engineered mouse models.

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