Fluorescent Target Cells

Fluorescent target cells are cells labeled with fluorescent markers so researchers can identify, track, and measure their interactions with immune effector cells. When exposed to excitation light, the fluorophore emits detectable light, allowing target cells to be distinguished from unlabeled lymphocytes and enabling changes in cell number, morphology, or membrane integrity to be assessed by microscopy or flow cytometry. In immunology and infection research, these labeled targets support cytotoxicity assays that evaluate natural killer cell or cytotoxic T-cell activity, monitor pathogen-infected cells, and compare immune responses across experimental conditions. The approach provides a sensitive, quantitative readout of cell-mediated killing and target-cell fate.

Fluorescent Target Cells - Related Videos

Research

JoVE Journal - Immunology and Infection

The Use of Fluorescent Target Arrays for Assessment of T Cell Responses In vivo

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Cited by 12 •

2014

The ability to monitor T cell responses in detail in vivo is important for the development of our understanding of the immune response. Here we describe the use of fluorescent target arrays (FTAs) in an in vivo T cell assay that assesses >250 parameters simultaneously by flow cytometry.

Research

JoVE Journal - Biology
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Workflow Using a Cryogenic Coincident Fluorescence, Electron, and Ion Beam Microscope for Targeted Milling of Cells

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Cited by 2 •

2025

This workflow enables lamella production targeting fluorescently labeled biological structures that are small (<1 μm in axial extent) and rare (1 copy per cell) using a cryogenic tri-coincident imaging platform. This platform integrates fluorescence microscopy, focused ion beam milling, and scanning electron microscopy at a single focal position and enables simultaneous fluorescence microscopy while milling.

In Vitro Imaging and Quantification of the Drug Targeting Efficiency of Fluorescently Labeled GnRH Analogues

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Cited by 1 •

2017

Selectively labeled fluorescent GnRH-I, -II and -III derivatives are reliable tools for tracking and quantifying their cellular uptake. This manuscript introduces experiments to visualize, quantify and compare the uptake efficiency of these GnRH conjugates in various cell lines.

Molecular Imaging to Target Transplanted Muscle Progenitor Cells

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Cited by 3 •

2013

A non-invasive means to evaluate the success of myoblast transplantation is described. The method takes advantage of a unified fusion reporter gene composed of genes whose expression can be imaged with different imaging modalities. Here, we make use of a fluc reporter gene sequence to target cells via bioluminescence imaging.

Research

JoVE Journal - Neuroscience
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Retrograde Fluorescent Labeling Allows for Targeted Extracellular Single-unit Recording from Identified Neurons In vivo

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Cited by 14 •

2013

Retrograde transport of fluorescent dye labels a sub-population of neurons based on anatomical projection. Labeled axons can be visually targeted in vivo, permitting extracellular recording from identified axons. This technique facilitates recording when neurons cannot be labeled through genetic manipulation or are difficult to isolate using 'blind' in vivo approaches.

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