Tumor Model Generation

Tumor model generation is the development of laboratory systems that reproduce key features of cancer, enabling researchers to study disease biology under controlled conditions. Models are created by growing cancer cells in culture, organizing them into three-dimensional organoids, or introducing tumor cells or cancer-associated genetic changes into living organisms, where interactions with surrounding tissues, blood vessels, and immune cells can be examined. These models support investigation of tumor initiation, growth, invasion, metastasis, and treatment response. By linking molecular mechanisms to observable disease behavior, tumor model generation strengthens cancer research and helps evaluate therapeutic strategies before clinical testing.

Tumor Model Generation - Related Videos

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JoVE EoE - Neuropathology

Generation of a Three-Dimensional Spheroid Model of Tumor Cell Invasion

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2025

Source: Guyon, J., et al. A 3D Spheroid Model for Glioblastoma. J. Vis. Exp. (2020)The video demonstrates the generation of a three-dimensional spheroid model of tumor cell invasion. Spheroids are formed from human brain tumor cells and embedded in a collagen matrix. The tumor cells at the spheroid periphery adopt an invasive phenotype, secreting proteases to degrade the collagen and advancing to invade the surrounding matrix.

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...

Orthotopic Homograft Tumor Transplantation: A Technique to Generate Pancreatic Tumor Mouse Models

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2023

The video explains a stepwise surgical method for orthotopic implantation of a tumor fragment from a cancerous donor to the pancreas of a non-cancerous recipient mice for development of pancreatic cancer. Orthotopically implanted PDAC could recapture the tissue microenvironment of human pancreatic cancers than conventional subcutaneous (SC) models more accurately.

Generation of Prostate Cancer Patient Derived Xenograft Models from Circulating Tumor Cells

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Cited by 59 •

2015

This manuscript details a method used to generate prostate cancer patient derived xenografts (PDXs) from circulating tumor cells (CTCs). The generation of PDX models from CTCs provides an alternative experimental model to study prostate cancer; the most commonly diagnosed tumor and a frequent cause of death from cancer in men.

Generating Anti-Angiogenic Tumor-Associated Neutrophils

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2025

This video demonstrates an assay to generate anti-angiogenic tumor-associated neutrophils (TANs). Upon taking a murine melanoma tumor containing pro-angiogenic TANs, the single cells are isolated using fluorescence-activated cell sorting (FACS) and treated with an inhibitor of nicotinamide phosphoribosyl transferase (NAMPT) to reduce the capacity to stimulate angiogenesis.

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