Tumor Burden Monitoring

Tumor burden monitoring is the measurement of the amount and distribution of cancer in the body over time, helping researchers and clinicians assess disease status and treatment response. It typically combines serial imaging, such as computed tomography or magnetic resonance imaging, with measurements of tumor dimensions, volume, or disease-associated biomarkers to detect growth, shrinkage, or stability. In cancer research, these assessments support evaluation of therapeutic efficacy, disease progression, and resistance, while enabling comparisons across experimental groups and time points. Standardized monitoring also strengthens preclinical studies and clinical trials by linking changes in tumor burden with biological mechanisms and patient outcomes.

Tumor Burden Monitoring - Related Videos

Research

JoVE EoE - Immune Response

Monitoring Neutrophil Recruitment Dynamics and Bacterial Burden at the Infection Site in a Murine Model

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2025

This video demonstrates in vivo imaging to study the neutrophil recruitment dynamics at an infection site in an immunocompromised, transgenic mouse with GFP-expressing neutrophils. It involves injecting luminescent bacteria to cause an infection. This leads to neutrophil recruitment to the infection site, whose tracking is done by imaging.

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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.

PTM Based Tumor Microenvironment Monitoring: A Method for Tracking Changes in ECM Rigidity Using Tumor Spheroids

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2023

This protocol describes a technique for monitoring extracellular matrix rigidity changes by using particle-tracking microrheology (PTM). This is done by culturing 3D pancreatic tumor spheroids into ECM with embedded fluorescent probes for video particle-tracking and analysis.

Morphological and Physiological Monitoring of Tumor Spheroids Using Optical Coherence Tomography

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2025

Source: Huang, Y. et. al., Longitudinal Morphological and Physiological Monitoring of Three-dimensional Tumor Spheroids Using Optical Coherence Tomography. J. Vis. Exp. (2019)This video demonstrates the use of optical coherence tomography (OCT) to monitor tumor spheroids in a multi-well plate by capturing high-resolution cross-sectional images. By analyzing light reflections from cellular structures, OCT constructs 3D models to assess morphological features like size and shape while also...

An Orthotopic Model of Serous Ovarian Cancer in Immunocompetent Mice for in vivo Tumor Imaging and Monitoring of Tumor Immune Responses

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Cited by 18 •

2010

To study in vivo tumor growth and tumor microenvironment, we used a syngeneic and orthotopic mouse model of ovarian cancer in immunocompetent animals. We transduced a mouse tumor cell line (MOV1) with Katushka fluorescent protein (MOV1KAT) and here we show its orthotopic implantation in ovary and in vivo imaging.

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