Cell Tracers

Cell tracers are labels or reporter systems used to identify, follow, and measure cells over time, making cellular behavior visible in biological research. They work by introducing a detectable marker, such as a fluorescent dye, genetically encoded reporter, or particle, that remains within a cell or produces a signal under defined conditions; researchers then detect it using microscopy, flow cytometry, or related methods. Cell tracers help reveal cell migration, proliferation, lineage relationships, survival, and interactions within tissues or disease models. These measurements support studies of development, immune responses, cancer progression, drug effects, and tissue regeneration.

Cell Tracers - Related Videos

Research

JoVE EoE - Large Animal Models

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.

Research

JoVE Journal - Neuroscience
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Implantation of Miniosmotic Pumps and Delivery of Tract Tracers to Study Brain Reorganization in Pathophysiological Conditions

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Cited by 10 •

2016

In order to study brain reorganization under pathological conditions we used miniosmotic pumps for direct protein delivery into the brain circumventing the blood brain barrier. Tract tracers are then injected to study alterations in brain connectivity under the influence of the protein.

Research

JoVE Journal - Medicine
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Automated Radiochemical Synthesis of [18F]3F4AP: A Novel PET Tracer for Imaging Demyelinating Diseases

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Cited by 6 •

2017

We demonstrate the semi-automated radiochemical synthesis of [18F]3F4AP and quality control procedures.

Intramuscular Injections Along the Motor End Plates to Shuttle Tracers Directly into Rat Motor Neurons

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2025

Source: Mohan, R., et al. Intramuscular Injections Along the Motor End Plates: A Minimally Invasive Approach to Shuttle Tracers Directly into Motor Neurons. J. Vis. Exp. (2015)This video demonstrates the targeted delivery of a fluorescent neuronal tracer into motor neurons via intramuscular injection at the motor end plates (MEPs). It outlines the steps involved in preparing the rat, injecting the tracer, and assessing labeled motor neurons for neurotherapeutic potential.

Intramuscular Injections Along the Motor End Plates: A Minimally Invasive Approach to Shuttle Tracers Directly into Motor Neurons

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Cited by 20 •

2015

The efficacy of intramuscular uptake and retrograde transport of molecules to corresponding motor neurons depends on the location of the injection sites with respect to the motor end plates (MEPs). Here, we describe how to locate MEPs on skeletal muscles to optimise retrograde transport of tracers into motor neurons.

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