Gfp-labeled T Cells

GFP-labeled T cells are T lymphocytes engineered to produce green fluorescent protein (GFP), allowing researchers to visualize and track them in biological systems. Typically, scientists introduce a GFP-encoding gene into T cells using a viral vector or other gene-delivery method, after which cellular expression of GFP produces green fluorescence under suitable illumination. This labeling enables studies of T-cell development, migration, activation, and interactions with infected or cancerous cells using fluorescence microscopy, flow cytometry, or live-animal imaging. GFP-labeled T cells therefore provide a powerful tool for connecting immune-cell behavior with tissue location and disease progression in experimental biology.

Gfp-labeled T Cells - Related Videos

Research

JoVE Journal - Biology
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Live Imaging of GFP-labeled Proteins in Drosophila Oocytes

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Cited by 5 •

2013

A protocol for live imaging of GFP-tagged proteins or autofluorescent structures in individual Drosophila oocytes is described.

Research

JoVE EoE - Colorectal Cancer

CRC Organoid Cell Labeling: A Method to Generate GFP Lentivirus-transduced Colorectal Cancer Organoid Cells

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2023

This video describes the technique of generating CRC organoids transduced by GFP lentiviral particles for enabling fluorescent imaging. These GFP labeled organoids, when placed in animal models, help to study tumor invasion and metastasis.

Tracking Cells in GFP-transgenic Zebrafish Using the Photoconvertible PSmOrange System

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Cited by 2 •

2016

We established the photoconvertible PSmOrange system as a powerful, straight-forward and cost inexpensive tool for in vivo cell tracking in GFP transgenic backgrounds. This protocol describes its application in the zebrafish model system.

Dual Labeling of Neural Crest Cells and Blood Vessels Within Chicken Embryos Using ChickGFP Neural Tube Grafting and Carbocyanine Dye DiI Injection

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Cited by 11 •

2015

Here we report dual labeling of neural crest cells and blood vessels using chickGFP neural tube intraspecies grafting combined with intra-vascular DiI injection. This experimental technique allows us to simultaneously visualize and study development of the NCC-derived (enteric) nervous system and the vascular system, during organogenesis.

Research

JoVE Journal - Neuroscience
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Electrophysiological Characterization of GFP-Expressing Cell Populations in the Intact Retina

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Cited by 5 •

2011

This article depicts the recording of individual cells from fluorescently tagged neuronal populations in the intact mouse retina. By using two-photon infrared excitation transgenetically labeled cells were targeted for patch-clamp recording to study their light responses, receptive field properties, and morphology.

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