Tumor Quantification

Tumor quantification is the measurement of tumor burden, including lesion size, volume, number, or growth over time, to characterize cancer progression and treatment response. In cancer research, researchers use imaging, histological analysis, or experimental models to identify tumor boundaries, segment abnormal tissue, and calculate standardized measurements; repeated assessments can reveal changes in growth rate or treatment sensitivity. Reliable quantification supports comparisons among samples, subjects, and experimental conditions. It is applied in preclinical drug studies, biomarker evaluation, and therapeutic development, helping researchers determine whether an intervention limits tumor growth and improving the reproducibility of cancer research outcomes.

Tumor Quantification - Related Videos

Research

JoVE Journal - Cancer Research

The Drosophila Imaginal Disc Tumor Model: Visualization and Quantification of Gene Expression and Tumor Invasiveness Using Genetic Mosaics

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Cited by 11 •

2016

This protocol demonstrates how to generate fluorescently marked, genetically defined clonal tumors in the Drosophila eye/antennal imaginal discs (EAD). It describes how to dissect the EAD and brain from the third instar larvae and how to process them to visualize and quantify gene expression changes and tumor invasiveness.

Research

JoVE Journal - Medicine
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Bioluminescence-Based Tumor Quantification Method for Monitoring Tumor Progression and Treatment Effects in Mouse Lymphoma Models

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Cited by 29 •

2016

Bioluminescence imaging is a well-known tool for localizing tumors and metastases, but quantification of these images often requires complex calculations and particular instruments. We describe the easy-to-use luminoscore method, based on precise acquisition conditions, requiring no calculations, and enabling tumor burden and treatment response to be monitored in mouse models.

Quantification of Tumor Cell Adhesion in Lymph Node Cryosections

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2020

Here, we describe a simple and inexpensive method that allows the quantification of adhesive tumor cells to lymph node (LN) cryosections. LN-adherent tumor cells are readily identified by light microscopy and confirmed by a fluorescence-based method, giving an adhesion index that reveals the tumor cell-binding affinity to LN parenchyma.

Visualization, Quantification, and Mapping of Immune Cell Populations in the Tumor Microenvironment

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Cited by 14 •

2020

Here, we describe a simple and accessible strategy for visualizing, quantifying, and mapping immune cells in formalin-fixed paraffin-embedded tumor tissue sections. This methodology combines existing imaging and digital analysis techniques with the purpose of expanding the multiplexing capability and multiparameter analysis of imaging assays.

Tumor Implantation and Injection of a Tumor Vaccine in a Mouse Model

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2025

This video demonstrates a cell-based tumor vaccination assay. A mouse, intradermally injected with B16-F10 melanoma cells for tumor formation, is vaccinated with B16-F10 cells secreting Flt3L cytokine near the developed tumor. The secreted Flt3L from the vaccine promotes the maturation and proliferation of dendritic cells that then present tumor antigens to T cells in lymph nodes, triggering a targeted anti-tumor immune response.

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