Tracer Dye Monitoring

Tracer dye monitoring is the use of visible or fluorescent dyes to follow the movement, distribution, or retention of labeled cells, molecules, or fluids over time, making otherwise difficult biological changes measurable. In cancer research, investigators introduce a dye tracer into a model or sample and use imaging to detect its signal, then compare signal location or intensity across time, tissues, or experimental conditions. This approach can help track tumor-cell migration, assess transport through tumor-associated environments, and evaluate how treatments alter cellular behavior or tissue permeability. By linking spatial patterns with disease progression or therapeutic response, tracer dye monitoring supports quantitative analysis and helps guide the development of more precise cancer models and interventions.

Tracer Dye Monitoring - Related Videos

Research

JoVE EoE - Neuroimaging

Photoacoustic Monitoring of Dye Movement in Cortical Blood Vessels

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2025

Source: Kalva, S. K., et al., Pulsed Laser Diode-Based Desktop Photoacoustic Tomography for Monitoring Wash-In and Wash-Out of Dye in Rat Cortical Vasculature. J. Vis. Exp. (2019)This video demonstrates the procedure for using photoacoustic imaging to observe changes in the cortical vessels of an anesthetized rat. The process includes baseline imaging, dye injection, and analysis of dye absorption and clearance during wash-in and wash-out.

Research

JoVE Journal - Biology
Free Sample

Optimized Staining and Proliferation Modeling Methods for Cell Division Monitoring using Cell Tracking Dyes

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Cited by 45 •

2012

Successful use of cell tracking dyes to monitor immune cell function and proliferation involves several critical steps. We describe methods for: 1) obtaining bright, uniform, reproducible label-ing with membrane dyes; 2) selecting fluorochromes and data acquisition conditions; and 3) choosing a model to quantify cell proliferation based on dye dilution.

Monitoring Changes in Membrane Polarity, Membrane Integrity, and Intracellular Ion Concentrations in Streptococcus pneumoniae Using Fluorescent Dyes

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Cited by 44 •

2014

Unlike that seen for eukaryotes, there is a paucity of studies that detail membrane depolarization and ion concentration changes in bacteria, primarily as their small size makes conventional methods of measurement difficult. Here, we detail protocols for monitoring such events in the significant Gram-positive pathogen Streptococcus pneumoniae utilizing fluorescence techniques.

Tracer Molecule Delivery in the Cisterna Magna: A Method to Deliver Fluorescent Tracer Molecules via Direct Cannulation of the Cisterna Magna in Pig

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2025

This video describes the protocol for tracer molecule delivery via direct cannulation of the cisterna magna in a pig brain. This method helps visualize the distribution of cerebrospinal fluid in the glymphatic system.

Visualizing Hyporheic Flow Through Bedforms Using Dye Experiments and Simulation

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Cited by 4 •

2015

This manuscript describes how to create regular bedforms in a flume, visualize flow through the bedforms, and use computer simulations to simulate the hyporheic flow. The computer simulations compare well with the experimental observations. This coupled simulation and experiment is well-suited for both research and educational purposes.

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